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A Traveling-Wave-Based Methodology for Wide-Area Fault Location in Multiterminal DC Systems

机译:基于行波方法的多端子直流系统中广域故障定位

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While in many applications, multiterminal dc (MTDC) systems are potentially appropriate substitutes for their ac counterparts, their protection problems still require more attention. This paper proposes a novel traveling-wave-based methodology for fault location in MTDC systems. The traveling-wave principle, along with two graph theory-based lemmas, is deployed to locate the fault by sectionalizing the graph representation of the MTDC system. Accordingly, the system of equations relating the fault inception time, fault point, and first arrival time at different converter locations would be derived and solved. The method merely needs the first surge arrival times, thereby eliminating the practical problems in relation to identifying subsequent traveling waves. More important, it successfully determines the fault location, regardless of the network topology complexity, that is, the number of its meshes and radial lines. To demonstrate the effectiveness of the method, it is applied to some complicated MTDC systems containing meshes and radial lines. Numerous simulation studies carried out for different conditions verify high accuracy, robustness against fault impedance, and noise immunity of the proposed method.
机译:尽管在许多应用中,多端子直流(MTDC)系统可能是其交流对应产品的适当替代品,但它们的保护问题仍然需要引起更多关注。本文提出了一种新的基于行波的MTDC系统故障定位方法。通过划分MTDC系统的图形表示,行波原理与两个基于图论的引理一起用于定位故障。因此,将导出和求解与故障起始时间,故障点和在不同转换器位置处的第一到达时间有关的方程组。该方法仅需要第一浪涌到达时间,从而消除了与识别随后的行波有关的实际问题。更重要的是,它可以成功确定故障位置,而与网络拓扑的复杂性无关,即其网格和径向线的数量。为了证明该方法的有效性,将其应用于一些包含网格和径向线的复杂MTDC系统。在不同条件下进行的大量仿真研究证明,该方法具有较高的精度,抗故障阻抗的鲁棒性和抗扰性。

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