通过可编程电阻的触觉旋钮与数字音频效果进行交互

Y. D. Pra, F. Fontana, S. Papetti
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引用次数: 1

摘要

现场音乐表演和音乐制作通常涉及在声音产生、处理和混音过程中对几个参数的操作。在硬件布局中,这些参数通常使用旋钮、滑块和按钮来控制。当这些布局被虚拟化时,使用物理(例如MIDI)控制器可以使交互更容易,并减少与声音操作相关的认知负荷。添加触觉反馈可以通过促进对参数的性质(连续/离散)和值的检测来进一步改善这种交互。为此,我们实现了一种具有可编程旋转阻力的无止回旋钮控制器原型,能够呈现各种触觉效果。10名被试评估了触觉反馈在目标匹配任务中提供视觉反馈或视觉-触觉反馈的有效性;实验结果显示,在触觉反馈存在的情况下,误差明显降低。最后,将旋钮配置为用Python编写的实时音频效果软件的多参数控制器,模拟EMS VCS3上的压控滤波器。讨论了声音算法与触觉旋钮的集成,以及响应控制动作的各种触觉反馈效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interacting with Digital Audio Effects Through a Haptic Knob with Programmable Resistance
Live music performances and music production often involve the manipulation of several parameters during sound generation, processing, and mixing. In hardware layouts, those parameters are usually controlled using knobs, sliders and buttons. When these layouts are virtualized, the use of physical (e.g. MIDI) controllers can make interaction easier and reduce the cognitive load associated to sound manipulation. The addition of haptic feedback can further improve such interaction by facilitating the detection of the nature (continuous / discrete) and value of a parameter. To this end, we have realized an endless-knob controller prototype with programmable resistance to rotation, able to render various haptic effects. Ten subjects assessed the effectiveness of the provided haptic feedback in a target-matching task where either visual-only or visual-haptic feedback was provided; the experiment reported significantly lower errors in presence of haptic feedback. Finally, the knob was configured as a multi-parametric controller for a real-time audio effect software written in Python, simulating the voltage-controlled filter aboard the EMS VCS3. The integration of the sound algorithm and the haptic knob is discussed, together with various haptic feedback effects in response to control actions.
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