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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >A threshold free synchrophasor measurement based multi-terminal fault location algorithm
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A threshold free synchrophasor measurement based multi-terminal fault location algorithm

机译:基于无阈值同步相量测量的多端故障定位算法

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摘要

A new impedance based fault location algorithm is proposed for a generic multi-terminal transmission network consisting of a main line and tapped branches with no direct measurements available at the intermediate tapping nodes. The core of the algorithm is a threshold free faulted branch search algorithm that systematically compares the multiple estimates of voltages for the tapping nodes, computed using synchrophasor measurements at the terminals. Once the faulted branch is identified, multi-terminal fault location problem is reduced into a two terminal fault location problem to determine the exact location of fault within the branch. The proposed algorithm is simple and does not involve resource intensive mathematical operations such as matrix inversion. The proposed algorithm was implemented as a module in an in-house developed real-time synchrophasor application software program, and its performance was evaluated using a test setup consisting of a real-time simulator, an actual synchrophasor network, and a phasor data concentrator. The tests showed that the proposed algorithm is capable of correctly determining the faulted branch, except for few faults that are very close to tapping nodes. When the algorithm is used with practical synchrophasor measurements, the fault location error was within a typical tower span for most cases.
机译:针对由干线和分支分支组成的通用多终端传输网络,提出了一种基于阻抗的新故障定位算法,该中间分支节点没有直接测量值。该算法的核心是无阈值故障分支搜索算法,该算法系统地比较分接节点的电压的多个估计值,这些估计值是使用端子处的同步相量测量值计算得出的。一旦确定了故障分支,就将多终端故障定位问题简化为两个终端故障定位问题,以确定分支内故障的确切位置。所提出的算法很简单,并且不涉及诸如矩阵求逆之类的资源密集型数学运算。该算法在内部开发的实时同步相量应用软件程序中作为模块实现,并使用由实时模拟器,实际同步相量网络和相量数据集中器组成的测试装置评估了其性能。测试表明,所提出的算法能够正确确定有故障的分支,只有极少数与分接节点非常接近的故障除外。当该算法与实际的同步相量测量一起使用时,在大多数情况下,故障定位误差在典型塔跨度之内。

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