Application of Musical Computing to Creating a Dynamic Reconfigurable Multilayered Chamber Orchestra Composition.

With increasing virtualization and the recognition that today's virtual computers are faster than hardware computers of 10 years ago, modes of computation are now limited only by the imagination. Pulsed Melodic Affective Processing (PMAP) is an unconventional computation protocol that makes affectiv...

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Publicado en:Leonardo Music Journal Vol. 29; pp. 55 - 62
Autor principal: Kirke, Alexis
Formato: Artículo
Publicado: MIT Press Dec2019
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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        au: Kirke, Alexis
        affil: Alexis Kirke (composer, researcher), University of Plymouth, Interdisciplinary Centre for Computer Music Research, Room 003, Hepworth Building, Drake Circus, U.K.
      su:
        Computer input-output equipment
        Computers
        Quantum computers
        Orchestra
        Stock exchanges
        Affective computing
        Adaptive computing systems
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          Computer input-output equipment
          Computers
          Quantum computers
          Orchestra
          Stock exchanges
          Affective computing
          Adaptive computing systems
      ab: With increasing virtualization and the recognition that today's virtual computers are faster than hardware computers of 10 years ago, modes of computation are now limited only by the imagination. Pulsed Melodic Affective Processing (PMAP) is an unconventional computation protocol that makes affective computation more human-friendly by making it audible. Data sounds like the emotion it carries. PMAP has been demonstrated in nonmusical applications, e.g. quantum computer entanglement and stock market trading. This article presents a musical application and demonstration of PMAP: a dynamic reconfigurable score for acoustic orchestral performance, in which the orchestra acts as a PMAP half-adder to add two numbers.
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    language: English
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