Attracting Law Based Discrete Multi-Periodic Repetitive Control

Lingwei Wu, P. Mei, Z. Lin, Na Su
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Abstract

This paper presents a discrete multi-periodic repetitive control design approach for the problem of a general multi-periodic disturbance rejection. Both the nonlinear-saturation function and the measure of multi-periodic disturbance rejection are suggested to form an attracting law (AL), and by which an multi-periodic repetitive controller is developed. The multi-periodic disturbances are rejected, and the perfect tracking is achieved. In order to characterize the tracking performance, the absolute attractive layer and the steady-state error band are derived. Simulation results are given to verify the effectiveness and superiority of the proposed method.
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基于吸引律的离散多周期重复控制
针对一般多周期干扰抑制问题,提出了一种离散多周期重复控制设计方法。提出了非线性饱和函数和多周期抗扰措施形成吸引律,并据此开发了多周期重复控制器。抑制了多周期干扰,实现了完美的跟踪。为了表征系统的跟踪性能,推导了系统的绝对吸引层和稳态误差带。仿真结果验证了该方法的有效性和优越性。
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