基于MRAS的双刚性轴直流电机负载分担控制系统设计

N. D. Cuong, H. Puta
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引用次数: 6

摘要

本文研究了由两个直流电动机驱动的共同负载驱动系统中刚性轴的特性。期望是使两个电机电枢电流匹配,表明成功的负载共享。采用模型参考自适应系统(MRAS)的新思想,设计了两台电机具有相同转速-转矩特性的控制系统。设计可以这样实现,在直流电机相同的情况下,两个电机可以贡献相同数量的总负载,或者在两个电机不相同的情况下,部分贡献总负载并按比例贡献其标称转矩。仿真和实验结果均证实了所提出的控制结构具有精度高、鲁棒性好、易于调优和实现的特点。从电机电流严格跟随主电机电流,两者之间的最大误差始终小于5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of MRAS based control systems for load sharing of two DC motors with a common stiff shaft
In this paper, the behavior of a stiff shaft in a drive system consisting of two DC motors driving a common load is investigated. The expectation is to get both motor armature currents to match, indicating successful load sharing. The new idea of using Model Reference Adaptive Systems (MRAS) approach has been applied to design a control system such that two motors are identical in speed-torque characteristics. The design can be achieved in such a way that the two motors can contribute the same amount to the total load in the case that the DC motors are identical, or contribute partly to the total load and proportionally to their nominal torques in the case that the two motors are not identical. Both simulation and experimental results confirm the precise and robust performance and the ease of tuning and implementation, featured by the proposed control structure. The slave motor current strictly follows the master motor current with a maximum error between them is always smaller than 5%.
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