基于离散小波变换的低压交流微电网保护

Sameep Sahu, Salauddin Ansari, O. Gupta
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引用次数: 0

摘要

故障电平的变化对微电网的保护提出了重大挑战。本文提出了一种基于小波能量的故障检测保护方案。所有三相的差分电流平方和传递给DWT(离散小波变换)滤波器组。利用信号处理技术(DWT)获得小波系数,并计算提取的小波系数的能量。当小波能量超过阈值时,认为是内部故障,否则认为是外部故障或外部干扰。采用不同故障类型、故障位置、故障电阻、外部故障和非故障条件(电容和负载切换)等参数对微电网的性能进行了估计。在MATLAB/Simulink环境下对微电网进行建模。并将该差动保护方案与小波能量保护方案进行了比较。所提出的小波能量保护方案在6 ms内检测出故障,为低压交流微电网故障检测提供了可靠的结果。仿真结果表明,基于小波能量的方案可以增强对微电网的保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protection of low voltage AC microgrid using discrete wavelet transform
To protect microgrids the variation in fault level poses a significant challenge. In this paper, a wavelet energy-based protection scheme is proposed to detect the fault. The sum of the squared differential current in all three phases is passed to DWT (discrete wavelet transform) filter bank. The wavelet coefficients are obtained using the signal processing technique (DWT) and the energy of the extracted wavelet coefficients is calculated. When wavelet energy exceeds the threshold limit, it is considered an internal fault else it is an external fault or external disturbance. The microgrid's performance was estimated by taking several parameters like different fault types, fault locations, fault resistances, and external fault and non-fault conditions (capacitor and load switching). The microgrid was modeled in MATLAB/Simulink environment. A comparison has been done between the differential protection scheme and the proposed wavelet energy-based scheme. The proposed wavelet energy protection scheme detected faults in 6 ms and provided reliable results in detecting faults for low-voltage AC microgrids. The simulation results indicate that a wavelet energy-based scheme can be implemented to enhance the protection of the microgrid.
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