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Evaluation of Parameter-free Fault Location Algorithm for Distribution Network Three-terminal Transmission Lines

机译:配电网三端输电线路无参数故障定位算法的评估

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Three-terminal transmission line is an important approach for the integration of distributed generation and the power supply of small loads in the distribution network. However, inaccurate or unknown line parameters can cause great errors in the results of most existing phasor-based fault location algorithms for this kind of line. Recently, one paper proposes a fault location algorithm without line parameter values, utilizing the post-fault measurements of three terminals. For the hypothetical fault on each section, because voltages at fault point respectively derived by three-terminal measurements should be equal, corresponding fault location equations involving the fault distance and line parameters as unknowns can be established. In addition, the redundancy of equations is enhanced using multiple groups of sampling data to reduce the influence of measurement error on the location result. Then, each equation set can be solved by the trust-region algorithm respectively. Finally, the fault point is located because the solution of equations is correct on condition that the actual fault point is on the assumed faulty section. In this paper, the above algorithm is evaluated under various fault position, fault resistances, fault types and usual measurement error, using Simulink and power system dynamic lab respectively.
机译:三端输电线路是集成分布式发电和配电网络中小负载电源的重要途径。但是,不正确或未知的线路参数可能会导致此类线路的大多数现有基于相量的故障定位算法的结果产生很大的误差。最近,有一篇论文提出了一种利用三个端子的故障后测量结果而没有线路参数值的故障定位算法。对于每个部分的假设故障,由于分别通过三端测量得出的故障点处的电压应该相等,因此可以建立相应的故障位置方程,其中涉及故障距离和线路参数为未知数。此外,使用多组采样数据可增强方程的冗余度,以减少测量误差对定位结果的影响。然后,每个方程组可以分别通过信赖域算法求解。最后,确定故障点是因为方程式的解在实际故障点在假定的故障区域上的条件下是正确的。在本文中,分别使用Simulink和电力系统动态实验室对上述算法在各种故障位置,故障电阻,故障类型和常见测量误差下进行了评估。

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