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A Nonadaptive Window-Based PLL for Single-Phase Applications

机译:一种非自适应基于窗口的PLL,用于单相应用

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摘要

The rectangular window filter, typically known as the moving average filter (MAF), is a quasi-ideal low-pass filter that has found wide application in designing advanced single-phase phase-locked loops (PLLs). Most often, the MAF is employed as an in-loop filter within the control loop of the single-phase PLL. The in-loop MAF, however, causes a large phase delay and, hence, makes the PLL dynamic response slow. Recently, using MAFs as a prefilter/quadrature signal generator (QSG) before the PLL input has been suggested. As the MAFs are outside the PLL control loop, the problem of slow dynamic response is avoided. Nevertheless, the PLL implementation complexity considerably increases as MAFs are frequency-adaptive and, therefore, they require an additional frequency detector for estimating the grid frequency. To reduce the implementation complexity while maintaining a good performance, using a nonadaptive MAF-based QSG with some error compensators is suggested in this letter. The effectiveness of the resultant PLL, which is briefly called the nonadaptive MAF-based PLL, is verified using experimental results.
机译:矩形窗口滤波器,通常称为移动平均滤波器(MAF),是一种准理想的低通滤波器,已在设计高级单相锁相环(PLL)中得到了广泛的应用。最常见的是,MAF用作单相PLL控制环路内的环路滤波器。但是,环路MAF会引起较大的相位延迟,因此会使PLL动态响应变慢。最近,已建议在锁相环输入之前将MAF用作前置滤波器/正交信号发生器(QSG)。由于MAF在PLL控制环路之外,因此避免了动态响应慢的问题。然而,由于MAF具有频率适应性,因此PLL的实现复杂度大大增加,因此,它们需要一个额外的频率检测器来估算电网频率。为了降低实现的复杂性,同时保持良好的性能,在这封信中建议使用带一些误差补偿器的基于非自适应MAF的QSG。使用实验结果验证了所得PLL(简称为基于自适应MAF的PLL)的有效性。

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