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Combined Impedance and Branch Current State Estimation Method for Fault Location in Electric Power Distribution Systems

机译:电力分配系统故障位置的组合阻抗与分支电流状态估计方法

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Precise fault location is a strong concern of modern distribution systems that aims to increase system availability. This function has been part of FLIRS (Fault Location, Isolation, and Restoration) module of Distribution System Management systems. Since the corrective actions and service restoration depend on it, the precise location capability avoids major delays in maintenance and minimize safety issues. The literature on this topic for transmission systems is abundant; however, for distribution systems due to its topology and parameter characteristics associated with new functions and devices, advances are demanded. In this context, the fault location method based on branch-current state estimation in combination with the impedance-based fault location algorithm is proposed. With the proposed method, difficulties faced by the impedance only based methods, such as the multiple fault location possibilities, are minimized with the use of few meters. Simulation results confirmed high accuracy with low computational effort, resulting in an interesting method for FLIRS application in the context of modern distribution systems.
机译:精确的故障位置是现代分销系统的强烈关注,旨在提高系统可用性。该功能是配送系统管理系统的FIRS(故障定位,隔离和恢复)模块的一部分。由于纠正措施和服务恢复依赖于它,因此精确的位置能力避免了维护的主要延迟,并最大限度地减少安全问题。对传输系统本主题的文献丰富;但是,对于由于其与新功能和设备相关的拓扑和参数特性而导致的分配系统,需要进步。在这种情况下,提出了基于分支电流状态估计与基于阻抗的故障定位算法的故障定位方法。利用所提出的方法,利用基于阻抗的困难,例如多重故障定位可能性,使用少数米最小化。仿真结果证实了具有低计算工作的高精度,导致在现代分配系统的背景下的FIRS应用的有趣方法。

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