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Real-time validation of ERF-based scheme for shunt-compensated/uncompensated line

机译:基于ERF的分流补偿/无补偿线路方案的实时验证

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This paper presents the real-time validation of an ERF-based fault detection scheme for shunt-compensated and uncompensated transmission line. The ERF is defined as the sine of the phase difference between the Static synchronous Compensator (STATCOM) tap voltage and differential current. The STATCOM tap voltage can be estimated using local end voltage and current. The ERF is measured at both the relay ends. In the capacitive mode, if both ERFs are more than the upper threshold, the fault is external and if any ERF is less than the upper threshold, the fault is internal. In the inductive mode, if ERF is between upper and lower threshold, the fault is internal else, if the differential current is more than the modified differential current setting, the fault is internal else the fault is external. The performance of presented scheme is first investigated for various faults at various locations with EMTDC/PSCAD simulations. Then scheme is successfully validated using Real-Time Digital Simulator (RTDS). It is found that the scheme is robust and selective for various faulty conditions.
机译:本文提出了一种基于ERF的故障补偿方案的实时验证,该方案用于并联补偿和无补偿传输线。 ERF定义为静态同步补偿器(STATCOM)抽头电压与差分电流之间的相位差的正弦值。 STATCOM分接电压可以使用本地端电压和电流来估算。 ERF在继电器的两端进行测量。在容性模式下,如果两个ERF均大于上限阈值,则故障是外部的;如果任何ERF小于上限阈值,则故障是内部的。在感应模式下,如果ERF在上限和下限之间,则故障是内部的,如果差动电流大于修改的差动电流设置,则故障是内部的,否则故障是外部的。首先通过EMDTC / PSCAD仿真研究了针对不同位置的各种故障提出的方案的性能。然后使用实时数字仿真器(RTDS)成功验证了方案。发现该方案对于各种故障条件是鲁棒的并且是选择性的。

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