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Power factor correction and harmonic compensation using second-order odd-harmonic repetitive control

机译:使用二阶奇次谐波重复控制的功率因数校正和谐波补偿

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Repetitive control has proven to be an efficient control technique in power factor correction by active filtering. Unfortunately, this technique shows a dramatic performance decay when the network frequency is not exactly known or it varies with time. In order to overcome the varying/uncertain frequency problem, a robust high-order repetitive control strategy can be used; however, most internal models obtained by these approaches are unstable. Although this fact does not compromise the closed-loop stability, practical problems can arise during the implementation. This study proposes and studies a stable second-order odd-harmonic repetitive control system, presents a stability analysis of high-order internal models and describes the performance degradation of the standard repetitive control in terms of the active filter (AF) application. In this way, an experimental validation has been carried out implementing the proposed internal model in a shunt AF current controller. As a result, this high-order controller allows dealing with the grid frequency variations without using adaptive schemes.
机译:事实证明,重复控制是一种通过有源滤波校正功率因数的有效控制技术。不幸的是,这种技术在网络频率未知或随时间变化时会表现出戏剧性的性能下降。为了克服变化/不确定的频率问题,可以使用鲁棒的高阶重复控制策略。但是,通过这些方法获得的大多数内部模型是不稳定的。尽管这一事实并不影响闭环稳定性,但在实施过程中可能会出现实际问题。这项研究提出并研究了一个稳定的二阶奇次谐波重复控制系统,提出了一个高阶内部模型的稳定性分析,并描述了基于有源滤波器(AF)应用的标准重复控制的性能下降。通过这种方式,已经进行了实验验证,以在并联AF电流控制器中实现建议的内部模型。结果,该高阶控制器允许处理电网频率变化而无需使用自适应方案。

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