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基于调谐质量阻尼器的机器鱼无源减摇水舱优化。

Optimization of a passive roll absorber for robotic fish based on tune mass damper.

机构信息

The Laboratory of Cognition and Decision Intelligence for Complex Systems, Institute of Automation, CAS, Beijing 100190, People's Republic of China.

School of Artificial Intelligence, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

Bioinspir Biomim. 2024 Nov 25;20(1). doi: 10.1088/1748-3190/ad920c.

Abstract

The robotic fish utilizes a bio-inspired undulatory propulsion system to achieve high swimming performance. However, significant roll motion has been observed at the head when the tail oscillates at certain frequencies, adversely affecting both perception accuracy and propulsion efficiency. In this paper, the roll torque acting on the robotic fish is theoretically analyzed and decomposed into gravitational, inertial, and hydrodynamic components. Resonance is identified as a key factor amplifying the roll response. To mitigate this roll and enhance stability, a passive roll absorber based on tuned mass damper is designed. A simplified rolling structure is dynamically modeled to optimize absorber parameters. Experiments are conducted to quantify the roll torque experienced by the robotic fish, with the effectiveness of the absorber verified on both the simplified model and the robotic fish. Results show that the maximum roll angle of the simplified system under harmonic load decreases from 98° to29∘, representing a reduction of over 70%, while a 25.1% reduction is achieved on the robotic fish.

摘要

机器鱼利用仿生波动推进系统来实现高效的游泳性能。然而,当鱼尾在特定频率下摆动时,观察到鱼头会出现显著的滚动运动,这会对感知精度和推进效率产生不利影响。在本文中,对作用在机器鱼上的滚动扭矩进行了理论分析,并将其分解为重力、惯性和水动力分量。共振被确定为放大滚动响应的关键因素。为了减轻这种滚动并提高稳定性,设计了一种基于调谐质量阻尼器的被动滚动吸收器。对简化的滚动结构进行了动力学建模,以优化吸收器参数。进行了实验来量化机器鱼所经历的滚动扭矩,并在简化模型和机器鱼上验证了吸收器的有效性。结果表明,在谐波负载下简化系统的最大滚动角度从 98°减小到 29∘,减少了超过 70%,而在机器鱼上则减少了 25.1%。

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