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High-speed auxiliary fault location element for distance relays in double-circuit lines

机译:双电路管线中距离继电器的高速辅助故障定位元件

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In multi-zone distance relays, zone-2 has an intentional time delay which is considered for the coordination among the other distance relays. This delay is unnecessary for faults that occur at the end of the protected line and causes the fault to be cleared after hundreds of milliseconds. On the other hand, high-speed fault clearance is an important issue of ensuring the stability of the power system. To address the above problem, an auxiliary fault location (AFL) element based on the proper Kirchhoff voltage law (KVL) loop in the negative- and zero-sequence circuits are designed for distance relays. The input signals to the AFL are the measured signals by local distance relay. The proposed AFL can reduce the zone-2 intentional time delay from 18-28 cycles to 3 cycles. In addition to this, AFL can improve limitations associated with similar methods such as the dependence of these methods to the fault resistance, remote source impedances, and line parameters variation. The AFL can accurately calculate the fault location, before issuing a trip command. Furthermore, to increase the accuracy, the shunt capacitances of the line are compensated by the algorithm. Numerous PSCAD simulation studies verify the effectiveness and applicability of the proposed scheme.
机译:在多区距离继电器中,ZONE-2具有有意的时间延迟,该故意时间延迟被认为是另一距离中继之间的协调。对于受保护行末尾发生的故障不必存在此延迟,并在数百毫秒后导致故障清除。另一方面,高速故障清除是确保电力系统稳定性的重要问题。为了解决上述问题,设计了基于负 - 和零序电路的适当Kirchhoff电压法(KVL)环的辅助故障定位(AFL)元件用于距离继电器。对AFL的输入信号是局部距离继电器的测量信号。所提出的AFL可以将区域-2故意时间延迟从18-28周期降低到3个周期。除此之外,AFL还可以提高与类似方法相关的限制,例如这些方法对故障电阻,远程源阻抗和线参数变化的依赖性。在发出行程命令之前,AFL可以准确计算故障位置。此外,为了提高精度,该线的分流电容由算法补偿。许多PSCAD仿真研究验证了拟议方案的有效性和适用性。

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