多小波时频变换技术在高压直流输电系统直流故障分析中的应用

Hasnain Raza Chandio, A. Memon
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摘要

高压直流输电已成为一种具有成本效益的选择,在更大的距离传输高压。保护高压直流输电线路比保护交流输电线路更具挑战性,因为它的阻抗低,没有过零直流电流。电力电子设备的过载能力有限,标准继电器对高压直流线路的保护是无效的。高压直流(T/L)系统中的直流故障产生大电流,因此有必要对不同故障电阻的短、中、长高压直流(T/L)系统的直流线路故障进行处理。研究基于时频分析的故障检测方法,针对不同故障电阻下的短、中、长直流输电选择合适的算法,对保护直流系统至关重要。在这项工作中,我们研究了高压直流输电线路的长度和两侧(逆变器和整流器)的故障电阻如何影响直流故障母小波的选择,使用平均参数和时频变换。利用Matlab的SimPower系统,评估了高压直流输电线路长度和故障电阻对选择合适的母小波的影响。仿真结果表明,Coif3是一种理想的小波检测方法,适用于不同故障电阻下的中等输电线路故障检测。另一方面,Rbio3.1更适合于各种故障电阻下的长传输线故障检测。对于中短直流输电线路,不同的故障电阻适用不同的母小波。因此,在选择母小波时,必须仔细考虑传输线的具体特性和故障场景,以实现准确的故障定位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time-Frequency Transformation Technique with Various Mother Wavelets for DC Fault Analysis in HVDC Transmission Systems
HVDC transmission has become a cost-effective option for transferring high voltage over greater distances. Protecting an HVDC transmission line is more challenging than protecting an AC transmission line due to its low impedance and absence of zero crossing DC current. Power electronic devices have finite overload capability, and standard relays are ineffective for HVDC line protection. Heavy current is generated by DC faults in HVDC (T/L), hence it is necessary to treat DC line faults in short, medium, and long HVDC (T/L) systems with different fault resistance. It is crucial to research fault detection methods based on time-frequency analysis by choosing appropriate algorithms using various (MW) methodologies for short, medium, and long HVDC transmissions at various fault resistances in order to protect the HVDC system. In this work, we examine how the length of an HVDC transmission line and fault resistance at both sides (inverter and rectifier) affects the selection of suitable mother wavelets for DC fault, using mean parameter and time-frequency transformation. SimPower System of Matlab is used to evaluate the impact of HVDC transmission line length and fault resistance on the selection of suitable mother wavelets. Simulation results show that Coif3 is an ideal wavelet for fault detection in medium transmission lines at different fault resistances. On the other hand, Rbio3.1 is more suitable for fault detection in long transmission lines at various fault resistances. For short and medium HVDC transmission lines, different mother wavelets were found to be suitable at different fault resistances. Therefore, it is essential to carefully consider the specific characteristics of the transmission line and the fault scenario when selecting a mother wavelet for accurate fault location.
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