Making Grains Tangible: Microtouch for Microsound

Staas de Jong
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引用次数: 1

Abstract

This paper proposes a new research direction for the large family of instrumental musical interfaces where sound is generated using digital granular synthesis, and where interaction and control involve the (fine) operation of stiff, flat contact surfaces. First, within a historical context, a general absence of, and clear need for, tangible output that is dynamically instantiated by the grain-generating process itself is identified. Second, to fill this gap, a concrete general approach is proposed based on the careful construction of non-vibratory and vibratory force pulses, in a one-to-one relationship with sonic grains. An informal pilot psychophysics experiment initiating the approach was conducted, which took into account the two main cases for applying forces to the human skin: perpendicular, and lateral. Initial results indicate that the force pulse approach can enable perceivably multidimensional, tangible display of the ongoing grain-generating process. Moreover, it was found that this can be made to meaningfully happen (in real time) in the same timescale of basic sonic grain generation. This is not a trivial property, and provides an important and positive fundament for further developing this type of enhanced display. It also leads to the exciting prospect of making arbitrary sonic grains actual physical manipulanda.
使谷物有形:Microtouch for Microsound
本文提出了一个新的研究方向,用于大型器乐界面,其中声音是使用数字颗粒合成产生的,其中交互和控制涉及刚性,平坦接触面的(精细)操作。首先,在历史背景下,确定了粮食生产过程本身动态实例化的有形产出的普遍缺失和明确需求。其次,为了填补这一空白,提出了一种具体的通用方法,该方法基于与声波颗粒一对一关系的非振动和振动力脉冲的精心构建。一项非正式的试点心理物理学实验启动了该方法,该实验考虑了对人体皮肤施加力的两种主要情况:垂直和侧向。初步结果表明,力脉冲方法可以实现对正在进行的颗粒生成过程的可感知的多维,有形的显示。此外,发现这可以在基本声波颗粒产生的同一时间尺度上有意义地(实时地)发生。这不是一个微不足道的特性,并为进一步开发这种类型的增强型显示提供了重要和积极的基础。它还带来了令人兴奋的前景,使任意声波颗粒成为实际的物理操纵。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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