Study on Soft Phase Locked Method to Solving the Synchronization Problem of Active Power Filter in Stand-alone Power Grid

Fang Zhuo, Longhui Wu, Zhe Chen, Xianwei Wang, Zhaoan Wang

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3 Citationer (Scopus)
138 Downloads (Pure)

Abstract

Traditional LC filters can't work stably in small rating stand-alone power grid. So active power filter (APF) is becoming an important tool to solve the power quality problem in small rating stand-alone power grid. In most current detection algorithm of APF, it needs a synchronizing signal. Firstly, the influence of the synchronizing signal error on current detection of APF is analyzed in this paper. Voltage distortion, voltage unbalance and frequency fluctuation are frequent and severe in small rating stand-alone power grids, so traditional synchronizing signal obtaining method--phase locking based on zero-cross detection can't work effectively in small rating stand-alone power grid. Then a soft phase locked loop with additional filter is proposed. It can lock the phase angle on to the positive sequence of fundamental voltage accurately and rapidly. It ensures the performance of APF applied in the small rating stand-alone power grid. Moreover, the soft phase locked loop is easy to be implemented in a Digital Signal Processor (DSP). Simulation and experimental results validate that the soft phase locked loop has satisfactory performance.

OriginalsprogEngelsk
TitelProceedings of the 6th International Power Electronics and Motion Control Conference (IPEMC)
ForlagIEEE
Publikationsdato2009
Sider1168-1174
ISBN (Trykt)987-1-4244-3557-9
DOI
StatusUdgivet - 2009
BegivenhedInternational Power Electronics and Motion Control Conference (IPEMC) - Wuhan, Kina
Varighed: 17 maj 200920 maj 2009
Konferencens nummer: 6

Konference

KonferenceInternational Power Electronics and Motion Control Conference (IPEMC)
Nummer6
Land/OmrådeKina
ByWuhan
Periode17/05/200920/05/2009

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