Showing posts with label Kyma. Show all posts
Showing posts with label Kyma. Show all posts

Friday, September 27, 2019

OUT NOW: Kyma Ambiences vol.2


Kyma Ambiences vol.2 contains 100 abstract and evolving ambiences created with our beloved Kyma sound design workstation.
Due to the increasing demand of spatialized content for game and VR/AR project, this inspiring collection has been entirely designed as a spherical representation of sound natively in 3rd Order Ambisonics by generating all the Sounds in Kyma and mastering them in Pro Tools through a custom analog setup.



Create a truly immersive and dystopian atmosphere with the 2nd volume of the classic Kyma Ambiences sound effects library.

FIND OUT MORE

Wednesday, September 04, 2019

Kyma Ambisonic Toolkit

NeverEngine Labs presents KAT, the first realtime #Ambisonic synthesis library for the Kyma sound design language - it's been a pleasure working with Cristian Vogel and Anders Tveit on the toolkit development!

What is Ambisonics? 

 

Ambisonics is a method for recording, mixing and playing back a 360-degree sphere of sound coming from different directions around a center point. This center point is where the listener’s sweet spot is located while playing back. Ambisonics can create a smooth, stable and continuous sphere of sound, complete with elevation, where sounds are easily represented as coming from above, below, in front or behind the user. Ambisonics is “speaker-agnostic.” It can be decoded to any speaker array or headphones, without being restricted by the limitations of any specific playback system. 

en.wikipedia.org/wiki/Ambisonics

Tuesday, August 23, 2016

OUT NOW: Imagined Spaces – IR Library

A creative collection of carefully synthesised Impulse Responses.

I'm proud to present Imagined Spaces, a new REmatrix library, the result of an extensive research in collaboration with MoReVox and Overloud. Imagined Spaces blurs the line between filtering and reverberation. Sound designers, sound editors, mixing engineers, composers and anyone who paints with sound will enjoy the surprising stuff included in the library, from strange but realistic locations to alien and odd ones.
Lots of IRs have been developed in Kyma sound design environment with synthesis/processing algorithms in the frequency and time domain, like waveshaping, frequency and time scaling, iterative convolution (spectra recombination of different IRs), among the others.
To create reverbs rich in diffuse field, white and pink noise has been treated with radical equalisation curves. Subsequently, Pro Tools has been abused for pitch and time alteration, dynamic filtering or capturing the sonic characteristics of custom plug-in chains to obtain eccentric ambiences with extremely different durations.
Imagined Spaces is conceived as a key tool not only to “paint" your tracks with air, depth and new perspectives, but also to expand and transform the original material into new ones.
With this advanced sound design collection, you can add life to dry and poor sample or original recordings. If you’re looking for tactile effects, Imagined Spaces is the spark you need to boost your imagination: you’ll easily get a density never obtained before with classic convolution and algorithm reverbs.

Tuesday, July 01, 2014

From Organs to Organs — KISS2014: Organic Sound

From organs (biological) to organs (musical), this year’s Kyma International Sound Symposium (#KISS2014), to be held in Lübeck Germany on 25-28 September 2014, will explore multiple meanings of the phrase “organic sound” through technical talks, live performances, and hands-on workshops. 


Events will kick off with the unveiling of a major new release of the Kyma software and feature technical/philosophical sessions on topics ranging from voice processing, to sonification of organic chemicals and the Internet, to organic growth and decay, to how to build your own performance controller and use it to control Kyma via OSC, to presentations by individual composer/performers detailing how they utilize Kyma in their live performances and installations. 


Check out the lineup of presenters, composers, performers and Kyma experts here: http://kiss2014.symbolicsound.com/presenters-and-performers 

Discounts are available for students and for anyone registering before 1 August 2014. 

For travel and lodging information, please visit: http://kiss2014.symbolicsound.com/travel-and-lodging 

More information 

Thursday, November 01, 2012

Sonic Screens 2012 - full lineup


Electroacoustic music concert 
an event by U.S.O. Project (Matteo Milani, Federico Placidi) in collaboration with O’ and Die Schachtel 

Premieres: 
Agostino Di Scipio
"Two Sound Pieces with Repertoire String Music"
for any number of bowed string instruments and live electronics


Andrea Valle
"Dispacci dal fronte interno"
for Violin, Cello, spatialized electronics and printers


Federico Placidi
"TimeCapsule"
for Violin, Cello and live electronics


Performed by: 
Èdua Amarilla Zádory - Violin
Ana Topalovic - Violoncello

Sound Direction: 
Matteo Milani

Live Sets: 
Thoranna Bjornsdottir aka Trouble
Massimiliano Viel

O’ | via pastrengo 12 Milan | Italy
Saturday, December 1st - from 8:00 to 22:30 p.m. 

Door 5 euro

Monday, September 17, 2012

Mirror_Mirror | Sound Installation


Concept and software design by Federico Placidi
Hardware design by Matteo Milani
Woodworker: Fabio Testa
Produced by U.S.O.Project, 2012


Where: [.BOX] Videoart project space, Via Federico Confalonieri 11, Milan
When: Thursday, September 27, 2012 | 6:30 until 21:30 PM
Free admission

The concept of multiverse was first introduced in the so-called “many-worlds interpretation” (MWI) of quantum mechanics by Hugh Everett III in his PHD thesis, "The Theory of the Universal Wavefunction". His model was thought as an alternative to the renowned theory called “Copenaghen interpretation”, developed by Niels Bohr and Werner Heisenberg.

The MWI interpretation postulates that every quantum measurement process (at Planck’s scale) creates, as a consequence, a division of the observed Universe into multiple parallel universes - as many as the possible outcomes of the measurements are.

In different formulations of this concept, all the universes - which form the Multiverse - are structurally identical, and they can coexist at different states even if they possess the same physical laws and fundamental constants.

We need to take into account that those universes are non-communicating (there cannot be any information exchange between them).

In an episode of the famous TV series “Doctor Who” - the episode was Doomsday, written by Russell T. Davies - the Doctor finds himself in the situation to make a difficult and dramatic choice: separating from the person who probably loved him the most, by “exiling” her in a parallel universe to guarantee her safety and survival.

It is worth mentioning some parts of the dialogue from the original script of the episode:


Rose comes to a halt in the middle of the beach and stands there, waiting. A short way to her left, the Doctor fades out of thin air. Rose turns to him. He's slightly translucent.

ROSE

Where are you?

THE DOCTOR


(his voice sounds distant)

Inside the TARDIS.

INT. TARDIS

The Doctor is, in reality, standing by the TARDIS console facing straight ahead.

THE DOCTOR (CONT'D)


There's one tiny little gap in the universe left, just about to close. And it takes a lot of power to send this projection, I'm in orbit around a super nova.

(laughs softly)

I'm burning up a sun just to say goodbye.

Sure enough, the TARDIS is spinning around a beautiful super nova.

EXT. BAD WOLF BAY


ROSE


(shaking her head)

You look like a ghost.

THE DOCTOR

Hold on...

He takes his sonic screwdriver out of his pocket.

INT. TARDIS

He points the sonic screwdriver at the console and somehow this strengthens his projection.

EXT. BAD WOLF BAY


The Doctor now looks as solid as if he were really there. Rose walks over to him and raises a hand to touch his face.

ROSE

Can I t--?

THE DOCTOR


(regretfully)

I'm still just an image. No touch.

ROSE

(voice trembling)

Can't you come through properly?

THE DOCTOR

The whole thing would fracture. Two universes would collapse.

The scene partially violates the no-information-transit prohibition between the two universes, but the subterfuge used in the story (the two characters cannot touch, only see each other), somehow preserves the assumption presented by the MWI, only conceding a small but necessary poetic licence.

In the same episode, there is a very touching scene, where the two characters (Rose and the Doctor), right after their isolation in two different universes, are in front of one another separated only by a simple white wall.

This border, imaginary and symbolic, which divides not only two places in the same space-time continuum, rather two whole universes, gave us an idea.

We wanted to offer that experience as an installation. We wanted to allow the audience to listen to whatever is “on the other side”, beyond that wall, and we wanted all this to happen in real time.

That’s how Mirror_Mirror was born.

The installation is organized inside a space.

What does this mean?

The space in itself, when it isn’t filled with matter (empty), is in reality permeated by low energy levels continually fluctuating.

These fluctuations in the void, have a particular significance on a quantistic level (we refer to the Planck scale, so at infinitesimally small dimensions).

In quantum mechanics, these fluctuations represent temporary shifts in the energy state of the void space, according to the Heisenberg Uncertainty Principle.

This means that the Conservation of energy principle can be violated for very brief periods of time (the lower the energy, the longer the fluctuation can persist.)

This energy can decade and take the shape of pairs of particles and antiparticles (which then annihilate each other).

In substance, the amount of average energy on a larger scale remains constant. Nothing is created, nothing is destroyed.

“There is a fact, or if you wish, a law, governing all natural phenomena that are known to date. There is no known exception to this law—it is exact so far as we know. The law is called the conservation of energy. It states that there is a certain quantity, which we call energy, that does not change in the manifold changes which nature undergoes. That is a most abstract idea, because it is a mathematical principle; it says that there is a numerical quantity which does not change when something happens. It is not a description of a mechanism, or anything concrete; it is just a strange fact that we can calculate some number and when we finish watching nature go through her tricks and calculate the number again, it is the same.” - R.Feynman

It was in our interest to draw an analogy in the sound domain, allowing the audience to directly experience this phenomenon.

As a consequence, we created an application able to “sonify” ideal energetic fluctuations (generating pressure waves, structures and emerging behaviours), starting from the lower energy level available, which is the background noise.

Thanks to the Kyma software implementation, and the use of microphones, it was possible to “measure” background noise and , through a series of negative feedback operations, enable the instrument to create “something”, using all the information available in our space/universe to create temporary energetic fluctuations (statistic variations of the density of sonic quantums’ “packets”), without violating the Conservation of energy principle - in fact, the average energy quantity, altogether, remains the same.

We’ve thus arrived to the gravitational center (here we have no more fluctuations, only numerous certainties, due to the dimensions and mass of the object) of the opera, which is represented by a wooden artifact, symbolically revisiting the white wall we came across in Doctor Who, which divides our universe from another possible universe.

Which one it is, the visitor will have to find out for himself.

By placing a stethoscope on the wooden surface. the observer will be able to “measure”, with various levels of definition, the sounds coming from another probable universe out of phase with ours.

In fact, as identical as it will seem, it strangely does not share the same temporal parameter.

From quantum mechanic and its Multi-Worlds interpretation, we know that every measurement operation will produce a further division of the universe.

So, it is possible that in the end, there will be as many universes as the present observers.

And, paying a little attention, it will be possible once again to listen to the voices of Rose and the Doctor, as if they are suspended in a temporal loop, to remind us that maybe, the current physics laws, could not be the same in every place and every time.

Federico Placidi, Matteo Milani
>>U.S.O.Project

Sunday, September 09, 2012

New Album 'Unsorted Tales' Just Released!


Composed by U.S.O. Project - Unidentified Sound Object
SYN-007 © 2012 Synesthesia Recordings
Mastered @ Green Movie, Milan (Italy) by Matteo Milani & Federico Placidi

Performers:
Edoardo Carlo Natoli - Violin
Federico Placidi - Violoncello & Flute

TRACKLIST:

1) F'Shima (13.49)
2) Gretel's New Clothes (19.46)
3) Psalm 21 (22.15)

RELEASE INFO:

Artist: U.S.O. Project - Unidentified Sound Object
Title: Unsorted Tales Cat.No: SYN-007
File under: Experimental/Electronic
Format: Digital
Release date: 9.2012


F'Shima 



It's night.
There are no precise coordinates, nor recognizable signs that can lead us back to a familiar place.
And yet those sounds remind us, almost pathetically, of a summer night scene, to which we listened countless times.
But that’s not what this is.
The slow and articulated flow of pulsating energy gradually takes a structure, enabling us to be part of something very different.
The flow surrounds us, passes through us.
We can’t see it, nor touch it, but every particle interferes with our body, with our biological substrate. Far away, a storm is coming, perhaps.
It’s neither natural, nor inoffensive. It deceives us with the variety of its harmony of timbres.
The structure suddenly changes, reorganizing itself while turning us into something new.
A breach made of light. It’s oscillating.
Then, silence.
The air stagnates, suspended and motionless.
An electrical impulse.
One more. Others follow, one after another, fainter and more distant.
(Sounds), like petals made of ash.

F'Shima was designed and built around a series of recordings of electromagnetic fields generated by various electronic devices (Hard Drives, iPad, iPhone, Portable Game Consoles ...), recordings made ​​by using old analog phone-captors. The source material, sometimes fully recognizable, sometimes radically altered, has been digitally processed using the Kyma Sound Design environment.


Gretel's New Clothes 



"Nibble, nibble, gnaw,
Who is nibbling at my little house?"
The children answered: "The wind, the wind,
The heaven-born wind."

Gretel's New Clothes is, in a way, an acousmatic reinvention of the famous fairytale by the Brothers Grimm. It is in the form of a Rondò. 
There is no attempt to literally retrace the story, rather to suggest it in a subtle way, through the use of strongly characterized sound materials (footsteps in the woods, the wind, the "sounds" of the night...) which are then dialogically processed during the final Violin and Cello improvisation. 

“They walked the whole night and all the next day too from morning till evening, but they did not get out of the forest, and were very hungry, for they had nothing to eat... And as they were so weary that their legs would carry them no longer, they lay down beneath a tree and fell asleep.” 


Psalm 21



“...Your hand will find out all your enemies;
your right hand will find out those who hate you.
You will make them as a blazing oven
when you appear.
The Lord will swallow them up in his wrath,
and fire will consume them.”

Psalm21 is not a religious work. There is no implication of a celebratory or ritual nature. The dominant and recurring element during the composition of the piece, is the relationship between creation (as a constantly evolving act), creator (of which we ignore existence and features) and creature (as a self-conscious subject that reflects on his nature). These three elements are the driving force around which the work unfolds.

[Available on CD Baby Music Store]
[Digital booklet: Unsorted_Tales.pdf]

Monday, August 27, 2012

An interview with Hamilton Sterling

by Matteo Milani - U.S.O. Project, 2012 

I am happy to continue our series of interviews with Hamilton Sterling - sound designer, supervising sound editor, effects editor, and mixer who has worked on The Dark Knight, War of the Worlds, and Master and Commander: The Far Side of the World, as well as many independent films. He recently cut sound effects on MIB3 and The Host, and worked on Terrence Malick’s To the Wonder, and The Tree of Life. Hamilton was the supervising sound editor, sound designer, and re-recording mixer on Tomorrow You’re Gone by David Jacobson, and has edited sound on the films of P.T. Anderson, Christopher Guest, Andrew Dominick, and Steven Spielberg. To date he has worked on over seventy-nine feature films. 


Recording a Demolition Derby (photo: Michael Dressel)


Matteo Milani: Thanks for your time Hamilton! First of all, could you tell me a bit about your education and musical background?

Hamilton Sterling: I come from a musical family. My mother and aunt sang four, five, and six part harmony by ear. They performed as the Silhouettes on KDKA radio in Pittsburgh, Pennsylvania in the 1930’s. Both were very encouraging of my early musical interests. My aunt, who worked at the local newspaper, often brought home fascinating music: György Ligeti, George Crumb, music from all over the world. I heard the soundtrack to Fellini Satyricon before I ever saw the film. My mother was a jazz fan, and when I was a boy, would take me to listen to local groups. 

In high school I played electric bass in the jazz band and upright bass in orchestra. The musician’s union put together an all-star big band for high school students in which I played, and I also performed in the Allstate Orchestra, becoming principal bassist my senior year. I played my first jazz gig when I was sixteen years old, and entered Arizona State University on a four-year music scholarship, graduating with a BA in jazz and classical performance. 

From a social context, I also benefited from the cold war belief that the arts held importance, and that America had to out-compete the former Soviet Union in creative endeavors. Music education in elementary school and high school was excellent and generously funded. Unfortunately, for the arts and young artists, those days are gone. 


MM: Does your experience as a musician help you in your career in film sound? 

HS: I think a sense of rhythm, melody, and harmony is essential in being able to make interesting sound for film. Recent studies show that human beings are wired for music. In studing jazz, the adage of “learn the music theory, then forget it” allows the right brain freedom to improvise from knowledge. I’ve come to feel that cutting and layering sounds is a slow-motion version of improvisation. 


MM: How did you enter the movie industry? 

HS: Alongside my musical activity, I became obsessed with films. Stanley Kubrick’s 2001: A Space Odyssey became the impulse for much of my early creative life. I saw the film for the first time when I was ten years old. It brought to me an interest in modern classical music, archeology, cosmology, astronomy, AI, cinematography, and special effects. It also appealed to my budding existentialism. That any one object of art could do so much was, to a young mind, amazing. 

It may seem hard to believe, but public television at that time played films by Antonioni, Godard, Fellini, Losey, and Bergman, and the art house cinemas were still going strong. I began making short films in the summer vacations between school from the money I made playing music. When I came to Los Angeles in the early 1980s, sound seemed a natural fit. I began by editing documentaries, Warren Miller ski films, industrial films, until I got my first sound effects editing work on Alan Rudolph’s Trouble in Mind. 


MM: Choosing the right sound(s) to picture. An art form? 

HS: Because sound editing began as a technical blue-collar job, many people had the impression that what we did was nothing special – “A monkey could do it” was the often-heard refrain. Here in America, we never developed a militant artistic union, an aesthetic of labor, if you like. Of course, because many of the corporate films being made today are empty of artistic merit, to say nothing of merited thought, it’s no wonder that art and labor are still dirty words. Choosing the right sound is an artistic, and surprising moral endevour. Thinking back on choosing sounds for films I did twenty-five years ago, if you had a scene in a rough cityscape, one might choose a black voice yelling in the street. The effect of that implying threat (at least to a certain part of the population). And that is a choice that can subtly further social injustice. I’m not saying that an artist should proscribe their work, but one has to very conscious of one’s choices, because in mass entertainments, those choices may reach millions of people, and they have consequences. 


MM: You've frequently shared your nominations with Richard King, Christopher Flick and Michael W. Mitchell. How do you guys collaborate on projects? 

HS: When I worked for Richard King, I did sound design and sound effects editing. Occasionally, I did sound effects recording. The frog rain in Magnolia was re-recorded against the reflections of a cliff in the Angeles National Forest. We set up two speakers facing away from the microphones, and slowly rotated the speakers toward mic, giving the playback the effect of distant frogs falling toward us. Eric Potter and I also put a speaker in a pickup truck to record a playback of previously sampled frog elements. Eric put the truck in neutral and steered into the quiet, distant valley. The sound was incredibly bizarre, and I ruined the heads and tails of multiple takes by laughing. It’s always fun to get out into the world to record, and Richard loves to record. 

Chris Flick did all the programming and cutting of the foley, and we conferred with him on elements that effects needed help with. As to the sound effects editing, Michael Mitchell and I did a lot of heavy lifting. Richard cuts sound effects as well, and in this day and age, I admire him for it. 


MM: Would you like to explain your role when working with the other members of the sound editorial?  

HS: When I’m not supervising, I try to communicate very specifically with the supervisor and my fellow editors: what are the stage delivery requirements, the predub breakdowns, or whether there will even be predubs, who is doing what in terms of special design. Hopefully, the supervisor has been able to spot the film with the director. If there is little in the way of specific information, I get a sense of the aesthetics of the director from what’s on the screen. If what you see is a pack of cliches, you know what to expect. If there are few cliches, you have reason for hope. At the end of the day, your work is only as good as the director’s vision, and their courage to take risks. 


On the Cary Grant stage at Sony on Morning (photo: Leland Orser)


MM: What are the musical tools you use to boost your sound designing workflow? 

HS: A number of years ago I purchased a Kyma sound design system from Symbolic Sound. It is very useful in producing unique sounds. It’s always inspiring. I also use my old Kurzweil K2000 as a midi controller, a Haken Continumm fingerboard, and a PC2R. In studio I use Millennia mic preamps. For field recording I use Schoeps mics and Sound Devices mixers as well as different contact, ribbon, and dynamic mics to gather my sounds. My bass is fitted with a midi pickup that I also use through an Axon to trigger my samples. 


MM: Sound processing: can you give us a description of your studio gear? 

HS: I use Pro Tools HD3, Genelec 5.1 speakers with a MultiMax monitor, and many plug-ins. For picture I project HD through a Decklink card to a nine-foot screen. Aside from Kyma, Haken Continuum Fingerboard, Kurzweil, and Axon, I have on occasion used Beat Detective in Pro Tools to place rhythmic structure onto multiple effects, and Melodyne to re-engineer animal vocals. I just started using Battery as a sampler. Altiverb, Pitch ‘N Time, Lowender, and GRM tools are staples. 


MM: Can you reveal to us a "making of" of a very special sound effect(s) or a sound sequence? 

HS: I’m very proud of the storm sequence in Master and Commander: The Far Side of the World. Making the scene dynamic given the similarity of frequencies both in the water and the wind was an interesting problem. First I began by cataloguing the ocean sounds into frequency ranges from low to high. I catalogued the wind in a similar way. At the time, Warner Bros. had terrible editorial rooms that had not been updated since the 1950s. Not only was there no surround system, but there was no wall treatment of any kind. Anyone who has had to edit endless water and ocean effects knows that in a box-like room with hard surfaces, audio hallucinations in the white noise of the waves can produce boat engines that aren’t there and other weird effects. So I brought sound blankets from home and hammered them into the walls. I scavenged an extra pair of speakers from an adjoining room and built myself a primitive surround system. I cut the sequence in 5.1 tracks that would mirror the mixing console and internally panned and level-set everything. Because the water visual effects were actual layered shots of waves, they changed constantly. But the first time I cut the sequence, I really liked the rhythms I had found. As the sequence changed, I was determined to keep this poetic kind of rhythm, so instead of just cutting up the tracks in conforming them, I took the time to find new rhythms and create the sequence anew each time it changed. I was very tough minded in this approach. Fortunately, I was given the time to do this – something that is unique to this day. I then cut the hard effects in the same 5.1 style and processed the siren’s call of the wind in the rigging through Kyma. When the edit went to the stage in this form, the mixers worked on it for a couple of days, trying to tame it. Much to their kindness, they told me they decided to put it all back the way I had originally laid it out because it had a life to it that their smoothing of the rough edges took away. That’s the way the sequence was released. 


MM: What do you regard as your most important credits in your career thus far? 

HS: The Tree of Life and The Assassination of Jesse James by the Coward Robert Ford are my two favorite films. They’re closest to the feelings I felt as a young man introduced to the great European cinema: thoughtful, unsentimental, mysterious. They capture something of eternity. 


MM: How do you get involved with the movie “The Tree of Life”? What kind of approach did you take on foley? 

HS: I have known the sound supervisor, Craig Berkey, for many years. Erik Adahl had hired me on Transformers: Revenge of the Fallen, and mentioned me to Craig. We fell back together again, which is the way of the film business. Andy Malcolm of Footsteps Studios walked the foley. Realism and proper perspective (using multiple mics) is very important. Because Mr. Malick often uses non-synchronous production takes, foley is used to ground the characters within the scene. It becomes another part of his pallet. When it is absent, that too becomes a color. 


MM: Can you describe how some of those sounds were accomplished? 

HS: Andy originally used his house as a foley studio. It’s out in the middle of the Canadian wilderness – forty-five minutes from Toronto. The stairs really creak, he never sweeps his kitchen. It’s all real. (Just kidding about the kitchen.) Now he has a fabulous studio a stone’s throw from his house, so you get the best of both. 


MM: How was the communication with the director and the rest of the team? 

HS: I was only on stage for a few hours during our first temp mix. But I was struck by Mr. Malick’s graciousness. I truely admire his work, and have since I first saw Days of Heaven as a youth. 


MM: To mix "in the box" in sound editorial before the final dub: what are its pros and cons? 

HS: Unfortunately, schedules now seem to only allow the sound effects to be mixed in-the-box. Even on the most well-financed films, mixing in-the-box is now common. On Knight and Day (James Mangold), we pre-mixed all of the sound effects and ambiences into 5.1 groups and kept them virtual. We had a couple of weeks to adjust these pre-mixes on the mixing stage, as the console on the Cary Grant stage at Sony could mirror Pro Tools. But the number of tracks and the constant changes necessitated having to continually re-mix added elements in-the-box. I recently did some work on MIB3, and at least for the temp mix, the effects were pre-mixed in-the-box, then taken to the stage for final adjustment. Keeping a somewhat traditional separation of elements is helpful for conforming, as well as giving the sound effects mixer creative input. If you set your editing room up correctly, it can work out quite well. Of course, sound editors are not being paid as mixers, so there are ways in which this situation is financially disadvantageous. But it is creatively rewarding. For independent films, the future is here. With the track counts of the new Pro Tools HDX cards, traditionnal mixing facilities will have an increasingly difficult time staying afloat. Unfortunately, many fine mixers will as well. 


MM: A networked environment: can you describe the importance of a client/server architecture in sound post production for a feature film? 

HS: It’s great to have. On Knight and Day we were editing at another facility before we moved to Sony for the mix. Sony has a nice server system for moving your work to and from colleagues as well as mixing stages. Structuring the folder architecture on the server is extremely important. Knowing exactly what elements have come from the mixing stage, what needs to be updated, what needs to be mixed, may seem simple, but with multiple versions, competing creative interests, and huge amounts of data, organization and terminology is paramount. 


MM: Sound effects editing for multichannel-surround: what are you spazialization techniques? 

HS: I edit for the 5.1 pre-mixes. When I do have to spread an effect, I’ll use a little delay, reverb, or the Waves PS22. I’ve recently begun using the Schoeps free DMS plug-in for three channel field recording that decodes to 5.0 surround. I love the Schoeps plug-in. Now I record all my sounds on three channels and decode to 5.0. Even simple sounds, like a light switch, pick up the character of the room. It’s a facinating way of creating a feeling, using these simple multi-channel sounds. If the simple sound creates an interesting space, I’ll work backward, and using Altiverb, try to get the rest of the sounds of the scene into that same environment. Of course if it doesn’t work, you still have the mono or MS stereo recording. 


MM: You made a film in the late ‘90s. Did you do your own sound? 

HS: I supervised it and cut, but I had a number of wonderful friends from the sound editing and mixing worlds who helped me to complete it. Because of current events, I decided to prepare a new version of the film, Faith of Our Fathers, for Blu-ray and DVD, and re-construct the sound for 5.1. As I began to re-assemble all the elements, I realized that we who started in the business in the mid-1980s lived through a radical transition in our work. At the time magnetic film was all there was. But by the time I shot Faith of Our Fathers in 1991, the digital world was just beginning. Faith was originally shot on 16mm film with a 1:1.85 ground glass for theatrical blow-up to 35mm. All the dailies were 16mm. I had obtained from a friend, one of the first Sony D10 Pro DAT recorders in the country. It was strictly grey-market. I thought I could mix and record the production sound to one channel and put a 60 cycle pilot tone on the other so that when transfering to magnetic stock (both 16mm and later 35mm) the transfer machine (“dubber” we called it) would stay in sync. So, over a long period of time, friends and I sunk and coded the 16mm dailies. I cut the picture, and when it was time to prepare the track for 35mm mixing in 1995, I used a 16mm to 35mm synchronizer to phase the new 35mm dialogue to the 16mm worktrack. The dialogue was cut on mag. The backgrounds were a combination of 24 track two-inch and DA-88s (the bane of all mixers at the time). And most of the sound effects were cut on an early version of Pro Tools which were then transfered to DA88. When I decided to do my 5.1 re-mix, I had 35mm mag to transfer to Pro Tools, DA88s (I still have one of those boat anchors which work!), and DATS with original production and music. When I think that the process involved 16mm mag, 35mm mag, Pro Tools, 24 Track, DAT, and DA88s, it becomes evident that the transition from analog to digital was quite messy. The other shocking thing is that I was able to finance my film on a sound editor’s salary (which is the reason it took so long to complete). 


MM: What are your thoughts on the boundaries between music and sound design?

HS: Having recently released Migration, I can tell you that creating a 5.1 programmatic musical soundscape is a wonderful artistic process. Combining a purely aural narrative with the abstraction of music and processed effects blurs the creative experience. I don’t mean just adding a sound effect to a music track, I mean creating the entire living thing as one artistic statement. There is a universe of possibility in the soundscape form, and because of my musical life, the addition of ambiences and effects to create emotion is a fullfillment of who I am. Other examples of soundscapes that I like can be found in the plays of Romeo Castellucci’s Socìetas Raffaello Sanzio and the Wooster Theater Group, both of which I find inspiring. As to the boundaries between music and sound design in film, I would say they have been nearly erased. I just completed the film Tomorrow You’re Gone, with Michelle Monaghan and Stephen Dorff. Kyma was used extensively in creating a very musical soundscape in which to set the traditional effects. 


Recording 5.1 ambience for Tomorrow You're Gone (photo: Cris Lombardi)


MM: About your album releases: do you think that detectable technical processes are an integral aspect of the composition’s overall aesthetic? Is it important in this composition that the listener is aware of the technical processes? 

HS: The album Rise and Fall is made mostly of live loop improvisations featuring fretless bass, acoustic bass guitar, and midi-following synths and effects. It grew out of musical feelings, a very simple midi-synth/live stereo mix chain, and the need to not multi-track, or manipulate the live performance. In that respect, technical qualities like midi delay, or tracking annomilies by the Axon pitch controller, were of secondary importance to the spontanious capture of the music. No meta statement should be implied from these technically primative recordings, other than they were all done with as little post-production as possible. As for Migration, the soundscape album I created with Grammy-winning musician Jimmy Haslip, that is a piece that was conceived and composed for surround. It’s feelings and scope are purposely cinematic. 


MM: What's the most important tip you've ever received regarding sound? 

HS: Often on big films, the amount of audio ideas brought to the process can be overwhelming. Sitting on the mixing stage listening to Steven Spielberg, Michael Kahn, and John Williams discuss how best to tell the story of a scene on War of the Worlds, I was struck by their equanimity toward music and sound effects. For them, it is all about story. Their years together have created a language around this idea. What tells the story in a particular moment, and what elements do you have available to do that? An agreement on what the story is allowed them to know what to emphasize on the track. Other filmmakers see story differently, or dissect story as myth and power, and therefore take a very different approach. I love the sound of Jean-Luc Godard’s films because it is a featured element in the argument. Film Socialisme begins with a line-up tone that moves from speaker to speaker around a 5.1 mix. It introduces his dialectic between sound and picture within the contemporary structure of multi-track films. It’s brilliant and very funny. 


MM: What is the most important topic you would want to talk about to make post sound better? 

HS: Forcing USA corporations, either by massive tax penalties or heavy import tariffs, to hire the workers in their own country. Too many of our sound jobs are being outsourced. Germany has good unions, pays its workers well, and has an export rate second to none. The old saw that in-country labor produces products that can’t compete is obviously not true: Germany has a 7% trade surplus. The sad truth is that USA corporate profit is at an all time high, CEO salaries are at an all time high, and too many people are unemployed. Corporate contempt for basic decency is the primary problem at this moment in history. It will eventually change, one way or another. 


MM: Do you have any advice for anyone who is interested in a career in the sound dept? 

HS: With the technology of audio, music, and picture in an ever-increasing cascade toward the infinitely complex, having the time to learn the programs, plug-ins, hardware, softward, picture formats, and optimal work-flow process, is itself becomming a full-time job. Having the mental space to discover why you want to do it, and what doing it even means, to you and to society, is something that young people should consider. This work used to be the wild west. Most of it, for the time being, now sits inside the corporate world. That is not a world that should be perpetuated. So then it becomes about making art, with no potentially viable means of making a living. Last quarter Migration streamed 2500 times and made 3 cents. So is this a risk you are willing to take? Do you see the world differently, and have something to say about it? If so – and now I’ll paraphrase Stanley Kubrick’s advice to young filmmakers – “Get a camera, as soon as you can, and start making films.”... or music, or soundscapes, or installation art. If you are meant to work on a handful of great films in your career, somehow, with luck, you will make it happen. 


MM: Silence is mentioned a lot when discussing sound. What was your approach in its usage? 

HS: As John Cage pointed out, silence is never truly silent. But one must be silent in order to listen. 


Sunday, February 05, 2012

Introducing: Ana Topalovic & Èdua Amarilla Zádory

U.S.O. Project is pleased to announce its collaboration for Sonic Screens 2012 with Ana Topalovic & Èdua Amarilla Zádory. 
They will be also involved by playing the two selected scores during the evening Concert that will take place in Milan later this November. 


Ana Topalovic 


As an all-around cellist, Ana is an active member of the musical scene, performing as a soloist, chamber and crossover musician. Besides standard cello repertoire Ana’s concert programs also include less known works which she is very fond of promoting as well as her own arrangements and transcriptions for solo cello and other formations. A very important part of her artistic work is the engagement with the modern music. Ana performed throughout Europe, Americas and Asia as a soloist and with various ensembles (Oltenia Filharmonic Orchestra, Vienna String Duo, Trio Incognito, Ensemble Hombroich, Pierrot Lunaire Ensemble Wien, Burst Trio, Vienna Celloduo, Palestra Trio a. o.). She recorded and broadcasted solo works, chamber music and musicals for RBB, ORF, RTS, TVR and TV Metropolis. Ana Topalovic plays on cello made by R. and A. Gagliano in 1815. She lives and teaches in Vienna, Austria.


Èdua Amarilla Zádory


“Édua Amarilla” Zádory, which means „glistening moonrise“ in Hungarian, was born in 1974, in the southern Hungarian town of Kecskemét. Her professional life in Vienna has been marked by numerous concert engagements. Whether performing solos in the Golden Hall of the Wiener Musikverein, serving as lead chair of the Vienna Chamber Orchestra, or playing alongside the other members of her „young“ Hungaria Piano Trio, Édua’s expressive and beautiful music expertly fuses Hungarian soul with the traditional Viennese sound. As of September 2012, Edua holds the status of Guest professor at the All-Quds University college of Music in Jerusalem. Édua Amarilla Zádory plays a masterpiece of a violin dating from 1801 and crafted by Joseph and Antonio Gagliano.

[www.anatopalovic.com]
[www.eduazadory.net]

Tuesday, December 27, 2011

Call for Works: Sonic Screens 2012

 

U.S.O. Project is pleased to announce that the 2012 edition of Sonic Screens will be focused entirely to the electro-acoustic music praxis.

Specifically, candidates should produce a composition for instruments and real-time signal processing (live electronics).

Two works will be selected to be played during the concert.

The requirements are as follows:
  1. The piece must be composed for Violin and Cello as a duo. Scores for solo violin or cello will not be taken into account. 
  2.  The Score (in .pdf format) must be graphical and not in traditional notation. 
  3. The interpretational and playing instructions should be made ​​clear, in order for the players to follow them even without the presence of the composer. 
  4. The electronic processing must be developed and implemented using Max/MSP or Kyma (*). The multichannel format for the spatial diffusion must be up to 6.0 (2.0 and 4.0 works are still eligible). 
  5. The type of interaction should follow the "ecosystemic" paradigm and should be as autonomous as possible (no pedals or sensors are allowed). 
  6. The work should not exceed a total duration of 12 minutes
The evaluation criteria will focus on originality and effectiveness of the interplay between the electronic and instrumental parts.

The deadline for all submissions is set for 30th June, 2012.

Interested composers and sound artists should send the material (Score + Patch) within this date.

The two selected works will be presented during the evening of Sonic Screens in Milan.

The event will be recorded for digital distribution (on Synesthesia Recordings netlabel).

The names of the musicians who will perform the selected scores will be announced in March.

U.S.O. Project, composer Daniele Corsi and the musicians chosen to perform during the concert will form the reading panel which will evaluate the submitted works.

The selected works will be announced in September 2012.

For more information or clarifications, please contact us at our e-mail:

submissions at synesthesiarecordings dot com


(*) Clarification:
We can only accepts patches made with Kyma or Max/MSP due to the fact that we are not able to provide financial support for the two selected composers. To avoid any technical issues, we had chosen the platforms we already use in our daily work, with which we are very familiar. If the selected composers can confirm their presence for the evening concert at their own expenses, then any piece of software/hardware can be used to perform live electronics. Thank you for your comprehension. 

Thursday, July 28, 2011

Hologram Room - vol.1 [USO001]

24-bit/48kHz Royalty-free Sound Design Collection


Hologram Room - vol.1 by usoproject

Hologram Room is the first bundle of the abstract Sound Design Collection produced by sound designers and composers Matteo Milani and Federico Placidi (aka U.S.O. Project).

These two gigabytes of “ready to use” original sound elements are designed to help you sweetening and enhancing your sound production. The whole library is organized in eight main folders: Active Drones, Alarms, Blips, Buttons, Communications, Ignitions, Telemetries, Transitions. It provides a selection of out of this world drones and ambiences, futuristic sound effects and electronic tools.

We have been spending hours composing, editing, mixing these categories in Symbolic Sound Corporation Kyma and Avid Pro Tools. All of the audio files have been embedded with metadata for detailed and accurate searches in your asset management software.

A note about the mastering: the library has not been peak normalized, but loudness normalized, based on the recommendation by the European Broadcast Union. What does it mean? During the audition of your samples, they will have the same loudness level when played through monitors.

This work has been made possible by the aid of LevelOne, a program developed by Grimm Audio.
EBU TECHNICAL provides all kinds of information about the EBU R128 loudness recommendation. The official R128 documents and guidelines can be found online, as well as introduction papers and videos.


Here is what you get in "Hologram Room - vol.1":
  • Folders:
    • Active Drones (81 items)
    • Alarms (26 items)
    • Blips (52 items)
    • Buttons (62 items)
    • Communications (18 items)
    • Ignitions (34 items)
    • Telemetries (35 items)
    • Transitions (123 items)
  • Tab-delimited file (.txt)
  • Excel spreadsheet (.xls)
  • License Agreement (.pdf)
  • Artwork (.jpg)

Audio Format: Broadcast Wave Files (.wav)
Sample Rate: 48 kHz
Bit Depth: 24-bit
Size: 1.87 GB
Download size is 1.23 GB (compressed .rar archive)

Available on www.unidentifiedsoundobject.com

Monday, May 09, 2011

Out now: U.S.O. Project - Functions (binaural)


[Free Download]

Between 1967 and 1969 Gottfried Michael Koenig devoted himself to compose electronic music, producing a series of works entitled Funktionen.
The instrument that inspired and made ​​possible these compositions was the Variable Function Generator, designed by Stan Tempelaars at the Institute of Sonology, Utrecht.
Koenig used the VFG not only to produce the basic sounds (waveforms), but employed it as a modulator and control instrument in order to dynamically manipulate the elaboration processes which were carried out on materials (ring modulation, volume curves, filtering and reverberation).
The idea behind the experiment was to entirely produce the sound material and its structural implementation using only the VFG (this led to the creation of Funktion Grün, Funktion Gelb, Funktion Orange, Funktion Rot).

For a detailed analysis of Gottfried Michael Koenig’s Funktionen, please see the document on his official website:

Analytical Descriptions (1971) [Download]

The works presented in U.S.O. Project’s Functions explicitly refer to a series of works that with an extraordinary vision Koenig realized in those years.
The main challenge was both philological and aesthetical. The idea was to create an automated composition by exploiting the computing power of modern computers and by a sufficiently widespread and flexible software in order to re-program the original algorithms.
The Patches used in the prototyping of the generative software environment were assembled using a specially written program that provided in text format - using serial procedures - how the various modules should be combined with each other - i.e.:

Mel / empty / reverb
Basis / ring+mod / Empty
Pulses / empty / reverb
Basis / mod / filter-reverb
Mel / ring / filter
Pulses / ring+mod / reverb
Basis / empty / filter
Mel / ring / filter-reverb
Pulses / mod / Empty
Basis / ring+mod / Empty
Mel / ring / filter-reverb
Pulses / mod / reverb
Mel / empty / filter


Once we had identified the blocks, they were displayed in the form of flow charts - i.e.:


The various Patches were then implemented as Abstraction in Max/MSP:


In order to manage all the modules in parallel, plus the sends to the reverberation units and so forth, we constructed a matrix, that automatically reconfigures itself according to strict procedures based on serial techniques:


The implemented automata procedures have in fact "created" the composition itself.
In the end, the multichannel final master was obtained with Kyma/Pacarana’s surround Objects.
As you can deduce from a listening comparing the work of Koenig and U.S.O. Project, there are many differences, both in the aesthetic and formal domain.
It was clear to us since the beginning that we didn’t want to repeat Koenig’s compositional experiment in every detail, but to build - and then understand - something new produced using the same modus operandi that convinced him to make those works. At the same time we wanted to preserve an historical legacy with those works (something that is easily recognizable especially in the first piece). It was also interesting to us to empirically verify the effectiveness and efficiency of the procedures in terms of timbre and formal development using the serial approach.

The actual distributed version is rendered using U.S.O. Project’s custom binaural techniques for headphone listening only.

Beyond any reference to Koenig’s original works, Functions is a spontaneous self-reflection about the different states of sound matter and the exploitation of its possible configurations, shaped and imagined through a dialogical process between the machine and its operator.

Matteo Milani, Federico Placidi

[Functions Press Release - pdf]

Sunday, May 01, 2011

An interview with Otto Laske

by Federico Placidi and Matteo Milani - U.S.O. Project, May 2011

Otto Laske is a composer internationally known for his work in computer-assisted score and sound composition. In the 1980’s, he co-founded and co-directed the New England Computer Arts Association, NEWCOMP, together with Curtis Roads (1981-1991). In 1999, his 25-year long work as a cognitive musicologist was introduced to, and explained to, a larger public in Jerry Tabor’s 1999 Otto Laske: Navigating New Musical Horizons (Contributions to the Study of Music and Dance). The book contains a comprehensive bibliography of Otto’s compositions, poems, and musicological writings.

Otto Laske has always been seen as an innovator, both in theory and composition. After a career in music, he became a knowledge engineer in the 1980s and a psychologist in the 1990s. Since 1999, in addition to his compositional work, he has practiced as a developmental coach and management consultant based on a methodology created by him, called the Constructive Developmental Framework (www.interdevelopmentals.org). This methodology for assessing individual’s developmental potential shares certain global structures with Laske’s cognitive musicology of the 1970s and 1980s, in that it is multi-dimensional, dialectic, and based on empirical research.

[Barry Truax with Curtis Roads and Otto Laske, Cambridge, MA, 1989 - courtesy Barry Truax]

" [...] a theory of music has to understand not musical results but rather the mental processes that lead to such results." - Otto Laske

"Looking back at 43 years of making electronic music, it's clear to me that ever since I began composing in 1964, the development of music technology strongly shaped my compositional ideas. The artistic task seemed to be to show that new technologies can indeed produce "art." At the same time, these technologies brought forth new compositional ideas not elaborated before. In short, a stark interdependency of compositional thinking and technological possibilities prevailed. When listening to my various compositional adventures today there is, for me, a certainty aesthetic unity that binds all of my pieces together. It will be up to historians (once they have become knowledgeable about the technology underlying these pieces) to judge them from a more balanced perspective than is perhaps possible today." - Otto Laske, January 2010


Computer Software Based Composition

My background is in both philosophy and music, not to speak of poetry. I studied with Adorno in Frankfurt: a philosopher and composer who shaped my thinking for a decade (1956-1966) and also helped me to emigrate to the U.S. in 1966 in order to study computer music. He also made me aware of the Darmstadt Music Festival, at which I met Stockhausen, Gottfried Michael Koenig, Ligeti and Boulez, among others. The first time I went to Darmstadt was the 1963: I was especially taken with Stockhausen as a teacher and with Pierre Boulez' notion of orchestration virtuelle, by which he meant that a professional composition contains elements that are not immediately obvious or even hidden, but have to be there to make a rich composition come to life. This notion of Boulez’s has accompanied me all my life, and not only in music, as much as P. Klee’s Das Bildernische Denken.

My main musical mentor, although not as a teacher of composition, is Gottfried Michael Koenig. I met Koenig in 1964 when he first presented Project 1 to colleagues. While his program was unfamiliar to me, I had previously studied with a German composition teacher (Konrad Lechner) who was very influenced by medieval music, as well as the works by Webern and Stravinsky. He had taught me something called micro-counterpoint by which he meant minutely working-out selected musical elements (such as, e.g., 10 rhythms, tones, or tone colors) and bringing them into the form of a cantus firmus on which to base a larger composition, under the intense influence of the ear.

When I listened to Koenig in his lecture at that time, I understood him to be talking about parametric counterpoint, counterpoint of parameters like pitch, duration, instrument color, register, volume and so forth, as Lechner had done. The difference was his use of computers for composition. What captivated my interest in computers was not the hardware, but the idea that compositions could be designed on the basis of contrapuntal ideas so that different parameter streams (lists) could be merged to create new sounds, either in ideal time (through notation), or in real time (electronically). In all of the computer programs of the sixties, such as those by Xenakis and Mathews, what interested me was expanding my contrapuntal, multi-dimensional way of working.

When I sit down to compose music using a program like Project 1 or Kyma, I find of central interest the feedback loop between the frozen and the living knowledge that is engaged: the frozen knowledge embodied by the computer software, whether it is knowledge of an instrument, waveforms, envelopes or knowledge about deforming and sequencing visual images, and the living knowledge in the composer’s mind. In my writings, including in Computer Music Journal, I always emphasized that a computer used in music (including its interface with the user) should have as much intelligence as possible, including the ability to learn from the user. I was always disappointed that this has been made possible to date by programmers only to a small extent. My notion regarding this was to permit the composer to build new “task environments”, a kind of artistic homesteads in which s(he) could re-use fruitful ideas and presets, or even understand his/her compositional process better.

I think that the new concepts engendered by computers are valid in many artistic fields. When I work with my painting program today, or make animations accompanied by music, I find much greater openness to the idea of having the computer program “know its user”. It seems to me that the visual programs I am using have a higher-level intelligence than present music programs, or so it seems to me. (I am not a live performer of music, where much of the available computer intelligence seems to be located these days.)

In music, I guess, I am an “old-fashioned” composer, in the sense that I typically work from numerical templates such as produced by Koenig’s Projekt 1. I refer to this way of working as “score synthesis” in contrast to “sound synthesis”, whether I am engaged in instrumental, vocal, or electronic composition. Algorithmic composition really never caught on in the US, except perhaps in Milton Babbitt’s work. As to Koenig’s Project 1, it seems I have remained the only composer who used it also in electronic composition, -- although composers like Barry Truax have, of course, been using “algorithmic composition” all their life, much influenced by Koenig’s work as holds for myself.

Score synthesis was a European idea stemming from Xenakis, Koenig and few others like L. Hiller in the US. My goal as composer over 45 years has been to bring score synthesis (the computation of score parameters) and sound synthesis (the computation of acoustic material based on “reading” score parameters) into balance with each other, giving equal attention to both. This meant that I had to always use at least two different programs (not originally made for working together), one for score synthesis and another for sound synthesis. And considering that the algorithmic paradigm of composition requires bringing together “score” and “sound” (whether in CSound or Kyma), the art of composition for me became that of marrying the right set of instruments to the right score by using my listening.

The Project 1 Experience: Interpretative Composition

In the 1960s and 1970s, there came into being very different compositional programs. Some made it easy to create numerical materials but required intensive interpretation by the composer, while others required elaborate inputs (such as Koenig’s Program 2) and their outputs could only either be accepted or rejected. 

Koenig's Project 1, like Xenakis's ST/10, is of the former kind. It requires very little input and will give the composer a large amount of data to interpret, either for instruments or for electronic sound. I found that the Project 2 type of program didn't suit me as well as Project 1 because I love the freedom of interpreting data, often using the same score for an electronic as well as an instrumental composition (which probably nobody would hear or needs to know). However, I am still curious about the Project 2 type of program and may use it some time in the future after all.

Both programs show me that it is the composer’s mind that creates music, not the sound or the machine, because the composer can obviously use any kind of template, even – as Stockhausen used to say – a telephone book.

I called my work with Project 1 interpretative composition, because I was interpreting data generated by computer software according to guidelines programmed by a composer. I also refer to it as “rule” rather than “model” based composition, meaning that in each new composition I followed a different set of rules, some inherent in the program, others stipulated by me. It is the feedback loop between my own set of rules and the computer’s that interested me. As to the difference between following rules or models, I thought little of artists following others’ or their own compositions as models. I wanted to start from scratch each time, although I of course brought into being my own tradition over many years of composing.

As an abstract thinker, I was also of the persuasion that one should plan compositions “top down”, by stipulating rules for how a score or set of sounds ought to be created, and not bother about details other than in continued rehearsal of listening to the results, -- Berg’s “Durchhören”. It was a matter of what to control when, and not to control everything but to know what controls one could delegate to a computer slave.

Specifics of Koenig’s Project 1

To be specific, in Koenig’s Project 1 (created in 1967 and continuously refined til the 1990s), a composer works with 7 degrees of change for all parameters (such as pitch, entry delay, pitch, register, volume). Degree 1 represents constant change, while degree 7 stands for minimal change (redundancy), with degree 4 standing in for a compromise between the two.

Now imagine the fun to be able to plan, and carry out, a creative process in terms of the different parameters that need to come together to make a new composition! Should entry delay – the delay between subsequent sound entries – vary according to degree of change 1 or 4 or 7? If you chose 7, then what degree of change do other parameters such as pitch or volume need to follow? If you then in addition to using Project 1 stipulated your own interpretations of what “register 4” or “volume 6” is to stand for, you are in a creator’s paradise because you can model your rule stipulations to whatever strikes your fancy, keeping in mind the limits of the medium – instrumental, vocal, or electronic – you are writing in. Each movement of your composition will have it own unique “parametric signature” that is never repeated anywhere in your life’s output. And with regard to electronic music, you might arrive in a studio other than your own – e.g., at the GMEB in Bourges – and hear your score for the first time in your life -- with 2 weeks left to convert it to sound.

By using Project 1, I was able to plan the FORM of my compositions’ – the main esthetic concern of every composer – in the minutest detail by using a global top-down design based on parametric counterpoint. I was not composing with “tones” but at a meta-level, with“parameters” whose streams coalesced to create novel sound. And I could do so not only for sequencing scores (whose length I determined); I could also MERGE (mix) scores to my heart’s content. (This procedure is found in all of my electronic compositions after 1999).

Of course, the computer (luckily) could not help me sequence or merge different “sub-scores”, as I called them. I was challenged to do so by ear, “rehearsing” pieces like a conductor (without ever needing one). The computer couldn’t even guide me in designing instruments (e.g., in Kyma) that would be ideal for playing a particular score. I was free and obliged to do so myself (which shows that “algorithmic composition” is a very misleading term). And so, I often ended up “orchestrating” a particular score based on different sets of instruments (called “orchestras”), and then would mix different sonic renditions of the same score into a final complex result. It is here that I practiced what Boulez had called orchestration virtuelle because many fine details of a composition could easily be generated by superimposing different instruments (tone colors) slightly varied in their onset in time against each other.

Of course in instrumental composition I could only sequence, not mix, scores, although even here I could (theoretically) have decided to orchestrate the string section with one and the brass section with another score. Ultimately, electronic music won out in my production of music. I could easily produce a final score with 18, 24, or 36 voices per sound entry, by overlaying different scores played by different instruments, and I could vary the “parametrical depth” of the sound from second to second. The compositional freedom I enjoyed using Koenig’s Project 1 and Scaletti’s Kyma was limitless. 


I am speaking here of the most recent phase of my work of computer music programs during the first decade of the 21st century. The beginnings of this labor in the 1970s and 1980s were far less idyllic. For one thing, not having access to a computer running Project 1, I would produce my numerical scores manually, by “cutting and pasting” parameter lists from older score printouts I had retained and copied. This allowed me to design new scores in which the 7 degrees of change in Project 1 were quite different from previous scores, whether for instruments, voices, or tape. Then also, there was initially no “translator” for Project 1 scores into the DMX1000 or CSound or Kyma format, so that all of this work had to be done by hand. So it was a breakthrough in the early 21st century when Koenig provided me with a formatting of Project 1 scores that could actually be read by CSound or Kyma, respectively. No longer did one have to wait for a week, as in the 1970s, to hear a short piece one had programmed, by which time one had already forgotten the compositional idea input to the computer a week earlier.

The New England Computer Arts Association (NEWCOMP)

The 1980s were a heady time for “scandaliser le bourgeois” listening to music at Boston Symphony Hall. Curtis Roads was a very good friend of mine at that time, and for nearly a decade we worked together trying to put the focus on the production, rather than the consumption, of music. (It was only at the end of the 1980s that I could finally built my own studio, so that I could experiment with musical ideas any time I pleased, rather than having to travel to Vancouver, Bourges, or Ötwil am See to make a composition.)

I met Curtis (then editor of Computer Music Journal) in 1980 when he came to live in Cambridge, MA. After some talks we decided to form an association of composers, initially for presenting computer music concerts, later expanded to other computer arts, like computer poetry, computer dance and what we then call “visuals”. At that time I was married to a choreographer and I taught her to use Koenig's Project 1 in designing choreographies, which she did using parameter lists for determining “gestural events” for her dancers who collaborated to make a composition.

Curtis and I founded the New England Computer Arts Association in 1981 (which was renamed in 1984 into Computer Arts Association). During the time we worked together, Curtis and I gave about 65 concerts, planning every detail of them. Artists came from around the US to be presented by us. Curtis left NEWCOMP in 1985 and I carried on until 1991 when, not finding a worthy successor, NEWCOMP ceased to exist. We presented concerts not only in Cambridge (Massachusetts), but in also Europe (Warsaw, Stuttgart, Tbilisi). In addition, we sponsored an international computer music competition which became internally known as the NEWCOMP Music Competition.

At that time, both he and I were very sick and tired of the concert music scene in Boston, which was all about consuming music. We felt that what matters was producing, not consuming, music, and so we also presented composition courses for computer music beginners, and symposia for showcasing creative work. Our concert venue was a church in Cambridge, near Harvard University (where during 1992-1995 I would study developmental psychology).

NEWCOMP was a group of about 15 artists and composers which held regular meetings in my house, complete with a President, Vice-President, 2 Artistic Directors, and a Treasurer, -- all volunteers. We invited composer colleagues in the US and Europe – Koenig, Lansky, Ruzicka, and GMEB, and others – to be judges of the works submitted to the competition. NEWCOMP members came together to make the final selection of 3 winners. For ten years, NEWCOMP was the only association in the US that presented regular computer music and mixed computer arts concerts outside of academia. We “schlepped” loudspeakers, advertised, sold tickets, and in this way performed a lot of new music. It was a great pleasure.

Laske's work in Cognitive Musicology

I was always interested in what is knowledge, that is, epistemology. What does it mean to know, how does knowledge develop and work in the world?. As a result, the essential question I posed in my cognitive musicology between 1970 and 1995 (to be published in part in three volumes by Mellen Press by 2013) is "what is musical knowledge"?

As you know, musicologists have formulated hypotheses as to how Beethoven may have composed his string quartets, but they don't have enough data to really establish any sound theories about that. So that was the project that history handed to me. I was tired of the old musicology that I had studied in Frankfurt am Main. In my research after 1970, I was suggesting that, given the existence of computers, the time had come to branch out and study not only musical products – “compositions” – but the mental processes by which living computers brought their works into being. I was especially eager to understand the linkage between the mental process that led to a particular composition – carried out by using computer programs – and the work that resulted: how was musical form actually created? I was convinced that one could never derive the process from an existing work of a dead composer. Even old music was brought to life only through mental processes in the present, and so, in a way, there was no pre-existing music; it all occurred NOW. I also thought that conventional musicologists made too many illicit assumptions, called “interpretations”, that couldn’t be empirically proven and were largely arbitrary; and still think so.

Therefore, when upon Koenig’s (Godsend) invitation I worked in Utrecht between 1970 and 1975, inspired by what he called “composition theory”, I decided to use computer programs to work out empirical theories about how music is thought or “made”, whether in music analysis, conducting, composing, and listening. I rejected notation as a worthwhile medium and started working directly with electronic sound produced by the Institute of Sonology’s PDP-10 computer. Influenced by J. Piaget, the geneticist of knowledge, as well as N. Chomsky’s Transformational Grammar and P. Schaeffer’s Traité des Objets Musicaux, my goal was to understand the musical thinking of children.


" [...] At the Institute of Sonology, Gottfried Michael Koenig and Otto Laske and a host of really excellent teachers were formulating the digital future. That may sound overly dramatic, but they had this wonderful set of analog studios, with a lot of custom made equipment and two and four channel machines for recording it and banks of voltage control equipment that defied description. It was very, very complex. A long way from the Buchla and Moog synthesizers I’d been weened on at UBC. Stan Tempelaars was teaching modern psychoacoustics that he had gotten from Reiner Plomp, which I now realize was pretty cutting edge at the time. Koenig was teaching composition theory but also programming and macro assembly language for the PDP-15, almost as fast as he was learning it himself. And suddenly, for the first time, I found myself with the mini-computer; that’s what they were called, even though they took up one huge wall of a room. But they were single user, not mainframe computers like Max Mathews had. Although the only means of interaction was the teletype terminal, you could have real-time synthesis and interact with it as a composer rather than writing programmes. And I developed this thing called the POD System for interactive composition with synthesis, which was a top down type of approach." - Barry Truax



While in society computers were used to make profit, I looked at the computer as a machine that could strengthen (not replace!) the creative mind, thus working against the grain of technology. I felt artists could finally become independent of the many conventions than bind them in their work and in their performances, and simply satisfy their own criteria for what was “good art” (never mind the conductors who wouldn’t play their work). That was the political background.

Theoretically speaking, I was waking up to Artificial Intelligence as a means to “simulate” creative mental processes. For this reason, when I returned to the US in 1975, I applied for a grant to study with one of the luminaries of A.I., Nobel Prize winner Herbert Simon, at Carnegie-Mellon University, Pittsburgh (himself an excellent cello player). Together with A. Newell, another founder of A.I., Simon had created the first chess computer program that could beat a human player. He had also invented “protocol analysis”, a way of analyzing the intellectual moves of a human computer user engaging with a particular task such as chess and understanding spoken language.

So it was natural to wonder whether a computer program could not also “protocol”, or document, what children did with electronic sound compositionally (as I had been trying to understand in the Utrecht OBSERVER programs built together with B. Truax in FORTRAN), and whether they could not simulate, or at least intellectually support, musical composition, and not only for children. It was an idea that was in the air, so to speak.

As this shows, thinking about composition as a theorist and making music was very closely linked in my work. Not that composition was becoming a “science”, but rather that composers would do well to get out of their studio and sniff the air of science, as many composers began to do (e.g., James Tenney, not to speak of Xenakis and Koenig). I felt the composer needed to know as much as he/she could about computers and composition theory in order to understand his/her own creative process, and become more dynamic and flexible in using new processes rather than following old “models”, even their own.
From documenting children’s work in composition at the Instituut voor Sonologie, Utrecht (1970-75), I proceeded to simulating compositional processes by writing A. I. programs (1975-77) at Carnegie-Mellon. However, to do this was a very large undertaking, and I never managed to obtain the financial funds for working with others on this project which, finally, I had to give up to fully return to composition (1995). EMF is bringing out a 2 CD set “Otto Laske: The Utrecht Years”, which features 9 music pieces I had composed in at the Institute of Sonology over 5 years.

Visual Music

[Lanesville seen by camera - Otto Laske]

My artistic life is far from over. I have often been told that my music is very visual and contains many visual cues. Therefore, in 2009 I began to think: composition is composition, why don’t I extend my compositional work into the visual domain. (I also have written a substantial body of poetry, both in German (1955-1968) and in English (1967-1995)), still unpublished.

In 2008, after having begun work in watercolour and oil, I discovered what today is called visual music through Dennis Miller, a fellow composer living near me, and one of the pioneers of the new medium. (I always meet the right people at the right time, it seems.) Visual Music is a discipline still in its infancy, but has its roots in the 1920's and 1930's, when artists like Oskar Fischinger, Germany, began to experiment with abstract films that were called “absolute film” since they were without narrative and storyline, and rather simply focused on (often geometrical) shapes and colors. The pioneers of visual music had the vision that it was possible, or should be possible, to bring abstract painting in the sense of Kandinsky and Klee to film or video, and link it to music (instrumental music at first, and later electronic music).

In my present work with Studio Artist and Cinema 4D -- the first a program for digital painting and the second for animation -- I have again taken up the practice of using two different programs not initially meant to work with one another. But at least they can “talk” to each other now, which was not the case with early music programs. And so I am gradually learning to go back and forth between these 2 programs, not to mention that I also need to use a sound processor such as Sound Forge, a movie making program such as Vegas Movie Studio, and bring them all together to produce a visual music video.

For the time being, I have produced a gallery of images that will be accessible on www.ottolaske.com in the near future. Even for an experienced composer like myself, learning and using visual programs presents a steep learning curve. I am therefore putting my poetry and music on hold in order to became a digital painter and animator. I have given myself two or three years to learn these programs before I can turn out anything that would satisfy my artistic standards.

Again, the computer is the "leading voice" that challenges me as an artist to bring together music and image after a lifetime of composition. I feel very fortunate to be able to do this at my age (75), additional years permitting.

[works by Otto Laske @ silenteditions.com]
[www.cdemusic.org]