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All-Pass-Filter-Based PLL Systems: Linear Modeling, Analysis, and Comparative Evaluation

机译:基于全通滤波器的PLL系统:线性建模,分析和比较评估

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摘要

All-pass filter (APF) passes all frequency components of a signal without altering their amplitude, but changes their phase. This feature has made the APF a versatile building block in different signal processing applications. The focus of this article is on APF-based phase-locked loops (PLLs), where the APF is required for creating a 90 degrees phase shift at the fundamental frequency. Such a phase shift is needed for generating a fictitious orthogonal signal in single-phase applications and rejecting the grid voltage imbalance in three-phase systems. To the best of authors' knowledge, none of the APF-based PLLs have an accurate model yet. This gap in knowledge makes the analysis of these synchronization systems and identifying their advantages/disadvantages compared to state-of-the-art structures complicated. The main objective of this article is to bridge this knowledge gap.
机译:全通滤波器(APF)使信号的所有频率分量通过而不改变其幅度,但改变其相位。这一功能使APF成为了不同信号处理应用中的通用构建基块。本文的重点是基于APF的锁相环(PLL),在这里需要APF才能在基频上产生90度的相移。为了在单相应用中生成虚拟正交信号并消除三相系统中的电网电压不平衡,需要这种相移。据作者所知,尚无基于APF的PLL具有准确的模型。与现有技术结构相比,知识上的差距使得对这些同步系统进行分析并确定其优缺点。本文的主要目的是弥合这种知识鸿沟。

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