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Wavelet-Based Power System Stabilizer
DOI:10.1109/TIE.2015.2454482.png)
Abstract
En 中文
This paper proposes a wavelet-based power system stabilizer (WPSS) by using both the scaling coefficient energy and the wavelet coefficient energy with border distortions of a one-cycle sliding window. The boundary scaling coefficient energy is used for real-time extraction and compensation of electromechanical oscillations in the synchronous generator, whereas the boundary wavelet coefficient energy is used for the real-time detection of electrical oscillations and for tripping the WPSS at the fault inception time. The performance of the proposed WPSS was assessed in an experimental power system laboratory setup and compared with a conventional power system stabilizer.
Keywords:
Electrical oscillations
electromechanical oscillations
power system stabilizer (PSS)
synchronous generator
wavelet transform
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IF:
7.2
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1.8W
Citations:
9.8W

