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A novel complex current ratio-based technique for transmission line protection

机译:一种新型复杂电流比输电线路保护技术

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With respect to sensitivity, selectivity and speed of operation, the current differential scheme is a better way to protect transmission lines than overcurrent and distance-based schemes. However, the protection scheme can be severely influenced by the Line Charging Capacitive Current (LCCC) with increased voltage level and Current Transformer (CT) saturation under external close-in faults. This paper presents a new UHV/EHV current-based protection scheme using the ratio of phasor summation of the two-end currents to the local end current, instead of summation of the two-end currents, to discriminate the internal faults. The accuracy and effectiveness of the proposed protection technique are tested on the 110 kV Western System Coordinating Council (WSCC) 9-bus system using PSCAD/MATLAB. The simulation results confirm the reliable operation of the proposed scheme during internal/external faults and its independence from fault location, fault resistance, type of fault, and variations in source impedance. Finally, the effectiveness of the proposed scheme is also verified with faults during power swing and in series compensated lines.
机译:关于灵敏度,选择性和操作速度,电流差分方案是保护传输线的更好方法,而不是基于过电流和距离的方案。然而,保护方案可以受到线路充电电容电流(LCCC)的影响,具有增加的电压水平和电流互感器(CT)饱和度在外部闭合故障下的饱和度。本文介绍了一种新的UHV / EHV电流保护方案,使用两端电流与局部电流的相量求和的比率,而不是两端电流的总和,以区分内部故障。采用PSCAD / MATLAB的110 kV西部系统协调委员会(WSCC)9-Bus系统测试了所提出的保护技术的准确性和有效性。仿真结果证实了内部/外部故障期间所提出的方案的可靠运行及其独立于故障定位,故障,故障类型以及源阻抗的变化。最后,在动力摆动期间和串联补偿线路期间也通过故障验证了所提出的方案的有效性。

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