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A Novel Wide-Area Backup Protection Based on Fault Component Current Distribution and Improved Evidence Theory

机译:基于故障分量电流分布和改进证据理论的新型广域后备保护

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摘要

In order to solve the problems of the existing wide-area backup protection (WABP) algorithms, the paper proposes a novel WABP algorithm based on the distribution characteristics of fault component current and improved Dempster/Shafer (D-S) evidence theory. When a fault occurs, slave substations transmit to master station the amplitudes of fault component currents of transmission lines which are the closest to fault element. Then master substation identifies suspicious faulty lines according to the distribution characteristics of fault component current. After that, the master substation will identify the actual faulty line with improved D-S evidence theory based on the action states of traditional protections and direction components of these suspicious faulty lines. The simulation examples based on IEEE 10-generator-39-bus system show that the proposed WABP algorithm has an excellent performance. The algorithm has low requirement of sampling synchronization, small wide-area communication flow, and high fault tolerance.
机译:为了解决现有广域后备保护算法存在的问题,基于故障分量电流的分布特征和改进的Dempster / Shafer证据理论,提出了一种新颖的WABP算法。当发生故障时,从站将最接近故障元件的传输线故障分量电流的幅度发送到主站。然后主变电站根据故障分量电流的分布特征,识别出可疑的故障线路。此后,主变电站将基于传统保护的动作状态和这些可疑故障线路的方向分量,使用改进的D-S证据理论来识别实际故障线路。基于IEEE 10-generator-39-bus系统的仿真实例表明,所提出的WABP算法具有良好的性能。该算法对采样同步的要求低,广域通信流量小,容错性高。

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