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Development of Waseda Flutist Robot WF-4RIV: Implementation of auditory feedback system

机译:WESADA FOUTIST机器人WF-4中的开发:听觉反馈系统的实施

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Up to now, different kinds of musical performance robots (MPRs) and robotic musicians (RMs) have been developed. MPRs are designed to closely reproduce the motor skills displayed by humans in order to play musical instruments. From this approach, MPRs are used as benchmarks to study the human motor control from an engineering point of view and to understand better the human-robot interaction from a musical point of view. In contrast, RMs are conceived as automated mechanisms designed to create new ways of musical expression from a musical engineering point of view. Our research, at Waseda University, has been focused on developing an anthropomorphic flutist robot. Our research aims in studying the human motor control from an engineering point of view, understanding the ways to facilitate the human-robot interaction and proposing new applications for humanoid robot in musical terms. As a result of our research, the Waseda Flutist Robot No.4 Refined IV (WF-4RIV) has been developed. In a previous research, we focused on improving the mechanical system in order to enhance the clarity of the sound. However, we require performing further improvements to the control system in order to enable the robot to autonomously improve the quality of the sound during the flute performance. For this purpose, we proposed to implement an auditory feedback control system on the flutist robot. The proposed system is composed by a music expressive generator, feed-forward air pressure control system and a pitch evaluation module. From the experimental results with the WF-4RIV, we could confirm the improvements on the flute performance.
机译:到目前为止,已经开发出不同种类的音乐表演机器人(MPRS)和机器人音乐家(RMS)。 MPRS旨在密切复制人类展示的运动技能,以便打乐器。从这种方法来看,MPRS用作基准,从工程角度来看,从工程角度来看,了解从音乐角度来看的人机机器人相互作用。相比之下,RMS被认为是自动机制,旨在从音乐工程的角度创造新的音乐表达方式。我们在Waseda大学的研究中,一直专注于开发拟人的飞行员机器人。我们的研究旨在研究人类的电机控制从工程学的角度,了解促进人机互动的方法,并在音乐术语中提出人形机器人的新应用。由于我们的研究,Waseda Flutist机器人No.4 Refined IV(WF-4RIV)已经开发出来。在以前的研究中,我们专注于改善机械系统,以提高声音的清晰度。然而,我们需要进一步改进控制系统,以便在长笛性能期间使机器人能够自主地提高声音的质量。为此目的,我们建议在马桶机器人上实施听觉反馈控制系统。所提出的系统由音乐敏感发电机,前馈气压控制系统和音高评估模块组成。从实验结果与WF-4RIV来看,我们可以证实长笛性能的改善。

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