机电划船机导纳控制

Shola Otitoju, H. Richter, A. J. Bogert
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引用次数: 3

摘要

本文研究了一种机电划船机及其控制系统的概念设计。这个概念包括一个直流电动机,一个齿轮传动装置,一个滚筒和一个拉线。采用四阶机械导纳对商用划船机的力-速度特性进行建模,并采用配置法从实际运动数据中辨识出其参数。导纳控制器与纽曼提出的自然导纳控制有关,是自然导纳控制的延伸。本文所设计的控制器能够实现机电系统在其机械(用户)端口的任意目标导纳,只要该导纳是严格合适的。用配点法确定了四阶机械导纳,与实测数据吻合较好。随后将确定的导纳作为机电控制系统的目标导纳。在实时实验中,使用了一个按比例大小的原型对控制器进行了测试。通过模拟目标导纳对实验力分布的响应,验证了目标导纳的实现。得到的速度与实验记录的速度非常接近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Admittance control for an electromechanical rowing machine
The paper considers a conceptual design for an electromechanical rowing machine and its control system. The concept includes a DC motor, a gear transmission, a drum and a pull cable. The force-velocity characteristic of a commercial rowing machine was modeled by a fourth-order mechanical admittance, and its parameters were identified from actual exercise data by a collocation method. The admittance controller is related to, and an extension of the natural admittance control proposed by Newman. The controller of this paper is able to achieve any desired target admittance for the electromechanical system at its mechanical (user) port, as long as the admittance is strictly proper. A fourth-order mechanical admittance was identified by the collocation method, with very good agreement to the data. The identified admittance was subsequently used as the target admittance of the electromechanical control system. A scale-size prototype was used to test the controller in a realtime experiment. Achievement of the target admittance was verified by simulating its response to the force profile of the experiment. The resulting velocity was in close agreement to that recorded from the experiment.
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