并联- facts装置对距离继电器性能的影响

A. Niaki, I. Dabaghian Amiri
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引用次数: 7

摘要

研究了并联柔性交流输电系统(FACTS)补偿输电线路中距离继电器的性能。将静态无功补偿器(SVC)和静态同步补偿器(STATCOM)作为并联型事实补偿器,研究了事实补偿器在输电线路上的位置和故障位置、事实补偿器的运行方式、故障电阻值和故障类型等参数对距离继电器性能的影响。针对各种情况,给出了计算继电点阻抗的数学公式,并通过大量的仿真验证了其有效性。结果表明,当并联- facts装置位于故障回路中,例如安装在中点,故障发生在传输线的后半段时,距离继电器所看到的阻抗将被错误计算,从而导致距离继电器误动作(过伸或过伸)。而且,无论并联- facts装置是否在故障回路中,如果故障电阻值不为零,距离继电器都会发生误动作。测量阻抗与实际值的偏差与并联- facts装置的位置和其无功补偿的工作方式有关。
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The impact of shunt-FACTS devices on distance relay performance
The paper investigates the performance of distance relays for shunt-flexible ac transmission system (FACTS) compensated transmission lines. Static var compensator (SVC) and static synchronous compensator (STATCOM) are considered as shunt-FACTS devices and the effect of different parameters, e.g. location of FACTS devices and fault along the transmission line, operation mode of FACTS devices, value of fault resistance and type of fault is studied on distance relay performance. Mathematical equations for calculating the impedance at the relaying point are presented for various scenarios and their validity is proved by extensive simulations. It is demonstrated that when the shunt-FACTS devices are located in the fault loop, e.g. they install in the mid-point and the fault occurs at the second half of the transmission line, the impedance seen by distance relay will be miscalculated and consequently, the distance relay will maloperate (under-reach or over-reach). Moreover, maloperation of the distance relay will take place, if the value of fault resistance is non-zero, whether the shunt-FACTS devices are in the fault loop or not. Deviation of measured impedance from its actual value is related to the location of shunt-FACTS device and its mode of operation for reactive power compensation.
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