机器人打击乐手的机电一体化驱动的音乐表现力

Ning Yang, Richard J. Savery, Raghavasimhan Sankaranarayanan, Lisa Zahray, Gil Weinberg
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引用次数: 5

摘要

音乐表现力对于人类和机器人音乐家来说都是音乐表演的一个重要方面。我们提出了一种新的机电一体化驱动的无刷直流(BLDC)电机在机器人马林巴琴演奏者中的实现,名为Shimon,旨在提高速度,动态范围(响度),并最终感知音乐表现力,与最先进的机器人打击乐器执行器相比。在动态范围的客观测试中,我们发现与基于螺线管的机器人打击乐器相比,我们的实现提供了更宽、更一致的动态范围响应。我们的实现在惊人的速度上也优于螺线管和人类马林巴演奏者。在测量音乐表现力的主观听力测试中,我们的系统表现明显优于基于螺线管的系统,并且在统计上与人类表演者无法区分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechatronics-Driven Musical Expressivity for Robotic Percussionists
Musical expressivity is an important aspect of musical performance for humans as well as robotic musicians. We present a novel mechatronics-driven implementation of Brushless Direct Current (BLDC) motors in a robotic marimba player, named Shimon, designed to improve speed, dynamic range (loudness), and ultimately perceived musical expressivity in comparison to state-of-the-art robotic percussionist actuators. In an objective test of dynamic range, we find that our implementation provides wider and more consistent dynamic range response in comparison with solenoid-based robotic percussionists. Our implementation also outperforms both solenoid and human marimba players in striking speed. In a subjective listening test measuring musical expressivity, our system performs significantly better than a solenoid-based system and is statistically indistinguishable from human performers.
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