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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Fast accurate fault location on transmission system utilizing wide-area unsynchronized measurements
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Fast accurate fault location on transmission system utilizing wide-area unsynchronized measurements

机译:利用广域非同步测量在传输系统上快速准确地定位故障

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This article presents a closed-form solution for transmission line fault location without the need for GPS-synchronized sampling of wide-area measurements. Unsynchronized measurements recorded by sparse intelligent electronic devices (IEDs) across the grid are gathered and bus impedance matrix is utilized to relate the measurements to fault location by nonlinear complex functions. A linear reformulation of the problem allows for integrating unsynchronized voltage and current measurements, together with two auxiliary variables, into a linear least-squares problem. Schur-Banachiewicz inversion formula is next utilized to obtain a closed-form solution for fault location. The distributed parameter model of the line is considered and the method identifies the faulted line and locates the fault along it regardless of fault type and resistance. Furthermore, in contrast to previous methods, the proposed method on the one hand obviates the need for GPS-synchronized sampling, and on the other hand avoids iterative procedures. Extensive time-domain simulations for the WSCC 9-bus and a 22-bus subnetwork of the IEEE 118-bus test systems confirm the effectiveness of the method for different faults across the grid.
机译:本文提出了一种用于输电线路故障定位的封闭式解决方案,而无需进行GPS同步的广域测量采样。收集了稀疏智能电子设备(IED)跨电网记录的非同步测量值,并利用总线阻抗矩阵通过非线性复杂函数将测量值与故障位置相关联。问题的线性表述允许将不同步的电压和电流测量值以及两个辅助变量集成到线性最小二乘问题中。接下来,利用Schur-Banachiewicz反演公式获得故障位置的封闭形式解。考虑线路的分布式参数模型,该方法可以识别故障线路并沿着故障定位故障,而与故障类型和电阻无关。此外,与先前的方法相比,所提出的方法一方面消除了对GPS同步采样的需要,另一方面避免了迭代过程。 WSCC 9总线和IEEE 118总线测试系统的22总线子网的广泛时域仿真证明了该方法对电网中不同故障的有效性。

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