An Investigation of the Distinct Features of Wavelet Transform Based Protection Strategy for Consideration in HVDC Grids.

Precious Aiwuyo Omorogbe, A. Griffiths, Monday Ikhide, S. Tennakoon
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Abstract

Fault vulnerability and protection issues have been identified by systems developers and researchers as one of the major challenges in the drive towards HVDC grids. This is largely due to the relatively low inductance in DC systems, zero crossing issues, selectivity, as well as the vulnerability of the power electronic converters. Therefore, fast and selective protection algorithms are required to prevent both the systems and devices from damage. This paper investigates the distinct features of wavelet transform (WT) in fault identification and discrimination for application to HVDC Grids. In this paper, the simulation results provide relevant evidence of WT ability to detect and discriminate between internal and external faults using WT coefficients and wavelet entropy (WE). The simulation results presented revealed that discrimination was achieved within $(500 \mu s)$ following the arrival of the fault components at the relay terminals; up to a fault resistance of 500 ohms.
基于小波变换的高压直流电网保护策略特点研究。
故障脆弱性和保护问题已被系统开发人员和研究人员确定为推动高压直流电网的主要挑战之一。这主要是由于直流系统中相对较低的电感、过零问题、选择性以及电力电子变换器的脆弱性。因此,需要快速和选择性的保护算法来防止系统和设备的损坏。研究了小波变换在高压直流电网故障识别中的独特特点。仿真结果为小波变换系数和小波熵(WE)检测和区分内外故障的能力提供了相关证据。仿真结果表明,故障元件到达继电器端子后,在$(500 μ s)$范围内实现了识别;故障电阻可达500欧姆。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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