含分布式电源的径向配电网中继电器的失配

B. Bhalja, P. Shah
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引用次数: 4

摘要

由于电力市场自由化领域技术的快速变化,分布式发电及其各种分布式资源技术的引入使电力系统发生了深刻的变化。DG并入电力系统除了带来许多积极影响外,也带来了许多固有的技术问题,如不协调、可靠性退化和稳定孤岛。本文来源于IEEE电力系统继电委员会的报告,并根据作者在地方和区域一级观察到的由于DG互连引起的继电不协调导致的电气板故障。本文介绍了一种含DG的三相径向配电网的实验室样机。通过对含DG的径向配电网各区段不同位置的单线对地故障数量的计算,观察到继电器失配引起的误动作数量。用所研制的实验室样机得到的径向配电网各区段不同故障位置的所有继电器的运行时间与用IEC标准继电器特性方程得到的理论值非常吻合。
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Miscoordination of relay in radial distribution network containing distributed generation
Due to the fast-paced changing technologies in the field of electricity market liberalization, the incorporation of Distributed Generation (DG) along with its various distributed resource technologies have led to a profound change in electrical power system. Besides many positive impacts of incorporation of DG into the electrical power system, it has introduced many inherent technical problems such as miscoordination, reliability degradation and stable islanding. This paper originates from the report of IEEE Power System Relaying Committee and on having observed the malfunctioning of Electricity boards by the authors at local and regional level due to DG interconnections with regards to the miscoordination of relay. A laboratory prototype of three phase radial distribution network containing DG is presented in this paper. By executing number of single line-to-ground faults at different locations in various sections of radial distribution network containing DG, numbers of maloperations due to miscordination of relay have been observed by the authors. Time of operations of all the relays of radial distribution network obtained from the developed laboratory prototype for different fault locations in various sections have been found to be in close conformity with the theoretical values obtained using an IEC standard relay characteristics equation.
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