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Accurate phasor measurement for transmission line protection in the presence of shunt capacitor banks

机译:在存在并联电容器组的情况下,精确的相量测量可用于传输线保护

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This paper proposes a phasor measurement algorithm for transmission systems compensated with shunt capacitor banks. Since the shunt capacitor banks tend to lower the resonant frequencies, the dominant component, which has the lowest resonant frequency, is insufficiently attenuated by a low-pass filter and has an adverse influence on the phasor measurement of the fundamental component in a fault current signal. This paper theoretically investigates the dominant frequency in the presence of shunt capacitor banks and presents a phasor measurement algorithm immune to the dominant component and DC-offset. The performance of the algorithm is evaluated for a-phase to ground (a-g) faults on a 154-kV transmission system compensated with shunt capacitor banks. The evaluation results indicate that the algorithm can measure the phasor reliably and satisfactorily, although the fault current signal is distorted with the dominant component and DC-offset. The paper concludes by describing the hardware implementation of the algorithm on a prototype unit based on a digital signal processor.
机译:提出了一种采用并联电容器组补偿的传输系统的相量测量算法。由于并联电容器组往往会降低谐振频率,因此具有最低谐振频率的主要成分不会被低通滤波器充分衰减,并且会对故障电流信号中基本成分的相量测量产生不利影响。本文从理论上研究了并联电容器组存在时的主导频率,并提出了一种不受主导分量和直流偏移影响的相量测量算法。针对使用并联电容器组补偿的154 kV输电系统上的a相接地(a-g)故障,评估了算法的性能。评估结果表明,尽管故障电流信号具有主要成分和直流偏移,但该算法可以可靠且令人满意地测量相量。本文通过描述基于数字信号处理器的原型单元上算法的硬件实现来结束。

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