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Synchronization system with Zero-Crossing Peak Detection algorithm for power system applications

机译:具有零交叉峰值检测算法的同步系统,用于电力系统应用

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This paper presents a new synchronization system that can be used to extract real time information such as the amplitude, phase and frequency of the fundamental component from an input power signal. The synchronization system is based on a zero-crossing (ZC) and peak-detection (PD) algorithm. Among its advantages, the Zero-Crossing Peak Detection (ZCPD) system performs well in the presence of input signal distortion with THD values as high as 50%, tracks positive and negative frequency ramps as high as 250Hz/sec and has a transient recovery time of two to four fundamental cycles. The ZCPD system is able to recover and re-synchronize from transient disturbances such as amplitude sags and swells (0.2pu - 1.8pu), positive and negative phase steps (±60°) and signal interruptions spanning from a few cycles to several seconds. This article details the key design features of the synchronization system and experimental results that bring into focus the performance of the ZCPD system.
机译:本文提出了一种新的同步系统,该系统可用于从输入功率信号中提取实时信息,例如基本分量的幅度,相位和频率。同步系统基于零交叉(ZC)和峰值检测(PD)算法。在其优势中,零交叉峰值检测(ZCPD)系统在输入信号失真(THD值高达50%)的情况下表现良好,跟踪正负频率斜率高达250Hz / sec,并具有瞬态恢复时间2至4个基本周期。 ZCPD系统能够从瞬态扰动中恢复并重新同步,这些瞬变扰动包括幅度骤降和骤升(0.2pu-1.8pu),正负相位步长(±60 °)以及从几个周期到几秒钟。本文详细介绍了同步系统的关键设计功能和使ZCPD系统的性能成为重点的实验结果。

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