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首页> 外文期刊>IEEE Transactions on Power Delivery >Computationally Efficient Methodology for Analysis of Faulted Power Systems With Series-Compensated Transmission Lines: A Phase Coordinate Approach
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Computationally Efficient Methodology for Analysis of Faulted Power Systems With Series-Compensated Transmission Lines: A Phase Coordinate Approach

机译:具有串联补偿传输线的故障电力系统的分析的高效计算方法:相位坐标法

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摘要

A capacitor in series with a transmission line is protected from overvoltage due to a large fault current by a nonlinear metal–oxide varistor (MOV) connected in parallel. Fault analysis, as well as the evaluation of performance of the transmission protection system, in the presence of MOV action becomes complex because 1) v-i characteristics of the MOV are nonlinear; 2) unsymmetrical MOV action for unsymmetrical faults will introduce coupling in sequence networks; and 3) MOV action will influence voltage or current inversion phenomenon. This paper presents a computationally efficient and simple methodology for fault analysis wherein the linear part of the network is modeled by an equivalent multiport Thevenin network. The proposed approach handles nonlinearity in fault analysis efficiently. It also provides an elegant approach to model unbalance in a network due to MOV action. The proposed approach can be used to determine relays prone to voltage or current inversion. Results on a real-life 716-bus Indian system illustrate the efficiency of the proposed approach.
机译:通过并联连接的非线性金属氧化物压敏电阻(MOV),可以保护与传输线串联的电容器免受大故障电流引起的过压。在存在MOV动作的情况下,故障分析以及对传输保护系统性能的评估变得很复杂,因为1)MOV的v-i特性是非线性的; 2)非对称故障的非对称MOV动作将在顺序网络中引入耦合; 3)MOV动作会影响电压或电流反转现象。本文提出了一种用于故障分析的计算有效且简单的方法,其中网络的线性部分由等效的多端口戴维宁网络建模。该方法有效地处理了故障分析中的非线性问题。它还提供了一种优雅的方法来对由于MOV动作引起的网络不平衡建模。所提出的方法可用于确定容易发生电压或电流反转的继电器。实际运行的716辆印度公共汽车系统的结果说明了该方法的有效性。

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