DocumentCode :
3466994
Title :
Synchronization system with Zero-Crossing Peak Detection algorithm for power system applications
Author :
Amanci, Adrian Z. ; Dawson, Francis P.
Author_Institution :
Univ. of Toronto, Toronto, ON, Canada
fYear :
2010
fDate :
21-24 June 2010
Firstpage :
2984
Lastpage :
2991
Abstract :
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.
Keywords :
harmonic distortion; power supply quality; synchronisation; THD; ZCPD system; amplitude sags; amplitude swells; peak-detection algorithm; power system applications; real time information extraction; signal distortion; synchronization system; zero-crossing algorithm; zero-crossing peak detection algorithm; Active filters; Data mining; Detection algorithms; Discrete Fourier transforms; Distortion; Distributed control; Frequency synchronization; Phase locked loops; Power system transients; Power systems; fast transient recovery; low estimation error; synchronization system;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics Conference (IPEC), 2010 International
Conference_Location :
Sapporo
Print_ISBN :
978-1-4244-5394-8
Type :
conf
DOI :
10.1109/IPEC.2010.5543716
Filename :
5543716
Link To Document :
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