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Optimal control of the motion of a multilink system in a resistive medium

机译:电阻介质中多链路系统运动的最佳控制

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摘要

The optimal control of the motion of a system consisting of a main body and one or two links joined to it by cylindrical joints in a resistive medium is investigated. The resistance force of the medium acting on the moving body is assumed to depend on their velocity. The control is accomplished through high-frequency angular oscillations of the links. The equations of motion are analysed, and the mean velocity of translational motion of the system is estimated under certain assumptions. Optimal control problems are formulated and solved, and the laws of control of the oscillations of the links for which the maximum mean velocity of motion is obtained are found as a result. The data obtained are in qualitative agreement with observations of the swimming offish and animals. The results of this study can be used in developing mobile robots that move in a liquid.
机译:研究了一个系统的运动的最佳控制,该系统由一个主体以及一个或两个通过圆柱形接头在电阻介质中与之相连的链节组成。假定作用在移动体上的介质的阻力取决于其速度。通过链节的高频角振荡来实现控制。分析了运动方程,并在某些假设下估算了系统的平移运动的平均速度。制定并解决了最佳控制问题,从而找到了获得最大平均运动速度的链节振荡的控制律。获得的数据与鱼类和动物游泳的观察在质量上一致。这项研究的结果可用于开发在液体中移动的移动机器人。

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