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An Enhanced Adaptive Algorithm to Mitigate Mis-coordination Problem of the Third Zone of Distance Relays

机译:缓解距离继电器第三区失配问题的改进自适应算法

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Cascaded tripping of power lines due to mal-operation of zone 3 distance relays is one of the main causes of many blackouts worldwide. The improved protection technique for zone 3 can help to prevent such mal-operation and, thus, more reliable power systems can be envisaged. This paper presents a novel zone-3 setting scheme based on impedance seen by distance relays in order to calculate zone-3 setting of the relays when faults are simulated on the reach of zone-2 of primary distance relays. The new technique is also enhanced to be used in an adaptive protection system. Since three phase fault rarely occurs in the system and in order to have better demonstration of effectiveness of the proposed scheme, it is tested for various type of faults such as, two phase (AB), single phase to ground (AG) and two phase to ground (ABG) as well as three-phase (ABC) using data simulated through DIgSILENT in the IEEE 30-bus test system during different topologies. The simulation results show that the novel zone 3 distance relay elements using the proposed method operate correctly for various events.
机译:由于3区距离继电器的故障而导致的电力线的跳闸是全球范围内许多停电的主要原因之一。用于区域3的改进的保护技术可以帮助防止这种误操作,因此可以设想出更可靠的电源系统。本文提出了一种基于距离继电器看到的阻抗的3区设置方案,以便在模拟一次距离继电器2区的故障时计算继电器的3区设置。新技术也得到了增强,可用于自适应保护系统。由于三相故障很少出现在系统中,并且为了更好地证明所提出方案的有效性,因此对各种类型的故障进行了测试,例如两相(AB),单相接地(AG)和两相接地(ABG)和三相(ABC),使用在不同拓扑结构下通过IEEE 30总线测试系统中的DIgSILENT模拟的数据。仿真结果表明,使用所提出的方法的新型3区距离中继元件可以正确地用于各种事件。

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