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Positive sequence phasor estimation-based pilot relaying scheme for shunt-compensated line

机译:基于正相量估计的并联补偿线路导频中继方案

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Although the shunt Flexible AC Transmission System (FACTS) devices improve voltage profile, Shunt FACTS Devices (SFDs) may mal-operate the protection schemes due to reactive power injection. This study presents a phasor estimation-based pilot relaying for the SFD-compensated line. For a loaded line, the phase difference between the shunt FACTS device voltage and current is close to −90° as it injects the reactive power. However, it also draws small active power to meet the losses which deviates the working angle of SFD towards positive direction by some angle. Hence, the working angle of SFD depends on active and reactive power. During normal operation, this working angle can be estimated at both the relay locations. However, it is not possible to estimate exact working angle of shunt FACTS device at both the relay locations during an internal fault. The analysis reveals that estimated phase angle will largely tend towards positive direction during an internal fault. This criterion has been used to distinguish internal and external faults. The proposed relaying is robust against all real conditions and fast enough to detect a fault within desired time limits. Furthermore, the scheme is unaffected by the dynamics of SFD.
机译:尽管并联柔性交流传输系统(FACTS)设备可改善电压分布,但由于无功功率注入,并联FACTS设备(SFD)可能会使保护方案误动作。这项研究提出了一种用于SFD补偿线路的基于相量估计的导频中继。对于负载线路,分流FACTS器件电压和电流之间的相位差接近–90°,因为它注入了无功功率。但是,它也会消耗较小的有功功率,以弥补使SFD的工作角度朝正方向偏离某个角度的损耗。因此,SFD的工作角度取决于有功功率和无功功率。在正常运行期间,可以在两个继电器位置上估计该工作角度。但是,在内部故障期间,不可能估计两个继电器位置上的并联FACTS设备的确切工作角度。分析表明,在内部故障期间,估计的相角将在很大程度上趋于正向。此标准已用于区分内部和外部故障。所提出的中继在所有实际条件下均具有鲁棒性,并且足够快以在期望的时间限制内检测故障。此外,该方案不受SFD动态的影响。

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