Repetitive controller for periodic disturbance rejection in motor-gear transmission system

G. Sangeetha, J. Jacob
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引用次数: 5

Abstract

In control systems, disturbance or reference inputs invariably include a significant periodic component with a known period. Repetitive controllers are those control elements that strategically reduce or nullify the effect of these repeating signals. In motor gear transmission system, the tooth-to-tooth error manifests as periodic disturbance. Repetitive control has by now proved as an effective control scheme for improving periodic disturbance attenuation performance. This paper aims to formulate the repetitive controller design for the Motor-Gear system as an optimization problem with an LMI (Linear Matrix Inequality) constraint on the free parameter of the bandwidth of the filter and demonstrate the effect of such a controller through MATLAB simulation. The filter is used to cater to the stability requirements of the system with the repetitive controller incorporated with it. The form of the repetitive controller is based on a single parameter determined by the fundamental period of the disturbance. It is demonstrated through the results that the repetitive controller indeed reduces the periodic disturbances. Also as the bandwidth is increased, stability is found to be at stake whereas the disturbance rejection is affected if the bandwidth is reduced.
电机-齿轮传动系统周期性扰动抑制的重复控制器
在控制系统中,干扰或参考输入总是包含一个具有已知周期的重要周期分量。重复控制器是那些策略性地减少或消除这些重复信号影响的控制元素。在电机齿轮传动系统中,齿间误差表现为周期性扰动。重复控制已被证明是提高周期性扰动衰减性能的有效控制方案。本文旨在将电机-齿轮系统的重复控制器设计表述为一个滤波器带宽自由参数受LMI(线性矩阵不等式)约束的优化问题,并通过MATLAB仿真验证该控制器的效果。该滤波器用于满足系统的稳定性要求,其中包含了重复控制器。重复控制器的形式是基于由扰动的基本周期决定的单个参数。结果表明,重复控制器确实能减小周期扰动。此外,当带宽增加时,稳定性会受到威胁,而如果带宽减少,则干扰抑制会受到影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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