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Adaptive Compensation Strategy For The Tracking/Rejection of Signals with Time-Varying Frequency in Digital Repetitive Control Systems

机译:在数字重复控制系统中具有时变频率跟踪/拒绝信号的自适应补偿策略

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Digital repetitive control is a technique which allows to track periodic references and/or reject periodic disturbances. Repetitive controllers are usually designed assuming a fixed frequency for the signals to be tracked/rejected, its main drawback being a dramatic performance decay when this frequency varies. A usual approach to overcome the problem consists of an adaptive change of the sampling time according to the reference/disturbance period variation. However, this sampling period adaptation implies parametric changes affecting the closed-loop system behavior, that may compromise the system stability. This article presents a design strategy which allows to compensate for the parametric changes caused by sampling period adjustment. Stability of the digital repetitive controller working under time-varying sampling period is analyzed. Theoretical developments are illustrated with experimental results.
机译:数字重复控制是一种允许跟踪周期性参考和/或拒绝周期性干扰的技术。通常设计重复控制器假设用于跟踪/拒绝的信号的固定频率,当该频率变化时,其主要缺点是戏剧性的性能衰减。克服问题的通常方法包括根据参考/干扰周期变异的采样时间的自适应变化。然而,这种采样周期适应意味着影响闭环系统行为的参数变化,这可能会损害系统稳定性。本文介绍了一种设计策略,允许补偿采样周期调整引起的参数变化。分析了在时变采样周期下工作的数字重复控制器的稳定性。理论发展用实验结果说明。

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