直流微电网的高阻抗故障检测与隔离

K. Subramaniam, M. Illindala
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引用次数: 7

摘要

与传统的交流电力系统相比,直流微电网的故障需要快速中断。这是由于直流微电网的刚度降低,由连接到功率转换器的低惯性der供电。对于高阻抗故障,有限的故障电流给系统故障的识别和定位带来了额外的挑战,难以将故障状态与正常运行状态区分开来。本文的重点是在不使用固态断路器的情况下,通过源变流器和分段器的适当协调,设计一种具有成本效益的保护系统,以快速识别、选择性隔离高阻抗故障并恢复直流微电网中的系统。利用离散小波变换和基于k近邻的分类器对各源变换器和接触器的局部实测电流信号进行多分辨率分析,识别出高阻抗故障。通过安装在系统中每个接触器上的控制器设置的自适应电阻时间曲线来实现选择性。
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High Impedance Fault Detection and Isolation in DC Microgrids
Faults in dc microgrids require quick interruption than in traditional ac power systems. This is due to the reduced stiffness of dc microgrids being powered by low inertia DERs interfaced to through power converters. For a high impedance fault, the limited magnitude of the fault current poses additional challenges in identification and locating the faults in the system, with difficulty in distinguishing the fault condition from the normal operating condition. This paper focuses on designing a cost-effective protection system for fast identification, selective isolation of high impedance faults and system restoration in such dc microgrids through proper coordination of source converters with sectionalizers, and with no solid state circuit breakers in action. The high impedance faults are identified through multi resolution analysis of the locally measured current signals with discrete wavelet transform and K-nearest neighbor based classifier at each source converter and contactor. The selectivity is achieved through adaptive resistance time curves set by the controllers installed at each contactor in the system.
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