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A New Decentralized Approach to Wide-Area Back-Up Protection of Transmission Lines

机译:分散式输电线路大范围后备保护的新方法

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This paper presents a decentralized-approach-based wide-area back-up protection scheme to identify the faulted line in a power transmission network. The proposed scheme divides the whole power system under study into different protection zones (PZs) corresponding to generator bus(es). Furthermore, a “gain in momentum” (GIM) index at each generator bus is used to minimize the search set. This information helps in reducing the search space to the PZ corresponding to the generator bus with highest GIM following a fault. This area is termed as a vulnerable protection zone (VPZ). Once the VPZ is identified, positive-sequence voltage magnitudes of each bus within the VPZ are monitored to locate the bus closest to the fault (BCF). Finally, reactive power-flow information of each line connected to the BCF is used to identify the faulted line. The performance of the proposed scheme is extensively validated on the Western System Coordinating Council-9 bus system, the IEEE-39 bus New England system, and 246-bus North India Grid using the Power System Simulation for Engineering. The test results indicate that the proposed scheme is highly effective for the WABP of transmission lines.
机译:本文提出了一种基于分散方法的广域后备保护方案,以识别输电网络中的故障线路。提出的方案将整个研究中的电力系统划分为与发电机母线相对应的不同保护区(PZ)。此外,每个发电机总线上的“动量增益”(GIM)索引用于最小化搜索集。此信息有助于减少故障后对GZ最高的发电机总线对应的PZ的搜索空间。该区域被称为脆弱保护区(VPZ)。一旦确定了VPZ,便会监视VPZ内每个母线的正序电压幅度,以找到最接近故障(BCF)的母线。最后,连接到BCF的每条线路的无功潮流信息将用于识别故障线路。拟议方案的性能已在美国西部系统协调委员会9总线系统,IEEE-39总线新英格兰系统和246总线北印度电网上进行了广泛验证,使用的是工程动力系统仿真技术。测试结果表明,该方案对输电线路的WABP非常有效。

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