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An Adaptive PMU-Based Wide Area Backup Protection Scheme for Power Transmission Lines

机译:基于自适应PMU的输电线路广域备用保护方案

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This paper proposes a novel adaptive wide area backup protection scheme for transmission lines. In the proposed scheme, both the faulted line and fault location are determined by a limited number of synchronized phasor measurements. Based on phasor measurement unit placement and network topology, subsets of lines and buses called backup protection zones (BPZs) are formed. After a fault occurs in the transmission network, the sum of zero- and/or positive-sequence currents entering the faulted BPZ highly increases, and hence, the faulted BPZ can be determined. The linear least squares method is then used to determine the faulted line, as well as the fault location by voltage and current phasors of the faulted BPZ. Accordingly, the proposed scheme provides a closed-form and noniterative solution for the faulted line and fault location identification problem. On the other hand, it readily determines the faulted line regardless of the fault type, fault resistance, and measurement errors. To show the effectiveness of the method, it is applied to the WSCC 9-bus and IEEE 118-bus test systems. Simulation results verify successful identification of the faulted BPZ as well as the faulted line within the faulted BPZ with limited measurement points.
机译:提出了一种新颖的自适应广域线路保护备用方案。在提出的方案中,故障线路和故障位置都由有限数量的同步相量测量确定。基于相量测量单元的放置和网络拓扑,形成了称为备用保护区(BPZ)的线路和总线子集。在传输网络中发生故障之后,进入故障BPZ的零序和/或正序电流之和会大大增加,因此可以确定故障BPZ。然后,使用线性最小二乘法确定故障线路,并通过故障BPZ的电压和电流相量确定故障位置。因此,该方案为故障线路和故障位置识别问题提供了一种封闭形式的非迭代解决方案。另一方面,无论故障类型,故障电阻和测量误差如何,它都可以轻松确定故障线路。为了证明该方法的有效性,将其应用于WSCC 9总线和IEEE 118总线测试系统。仿真结果验证了故障BPZ以及故障BPZ内具有有限测量点的故障线的成功识别。

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