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Wavelet transform-based protection of transmission line incorporating SSSC with energy storage device

机译:基于小波变换的传输线保护SSSSC与能量存储装置

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Series compensation is generally used with long transmission lines to increase power transfer through the line and to enhance system stability. In the case of voltage source converter-based series flexible AC transmission system (FACTS) controller, an energy storage device can be incorporated at the DC bus which further improves control of real and reactive power flow. However, four-quadrant operation of FACTS controllers with energy storage device poses new challenges for the operation, control and protection of power system. Most commonly used protection scheme for long transmission lines, the distance relay, may not be reliable in case of lines compensated with series FACTS controllers. This paper proposes a new wavelet transform-based relay logic for fast and reliable detection, and classification of faults in a hybrid series-compensated long transmission line incorporating a passive series capacitor and static synchronous series compensator with energy storage device (SSSC-ES). The proposed relay logic is also able to accurately estimate the location of fault, and a wavelet transform-based boundary condition is used to discriminate between internal and external faults. It is shown through various simulation case studies that the four-quadrant operation of SSSC and fault resistance have negligible impact on the performance of the wavelet transform-based relay.
机译:串联补偿通常用于长传输线,以通过该线提高功率传输并提高系统稳定性。在基于电压源转换器的系列柔性AC传输系统(事实)控制器的情况下,能量存储装置可以在DC总线中结合,这进一步改善了实际和无功流量的控制。然而,具有能量存储设备的事实控制器的四象限操作对电力系统的操作,控制和保护构成了新的挑战。大多数常用的长传输线保护方案,距离继电器,在用串联事实控制器补偿的线路时可能不可靠。本文提出了一种新的基于小波变换的继电器逻辑,可快速可靠地检测,以及混合串联补偿的长传输线中的故障分类,其包含无源串联电容器和具有储能设备(SSSC-ES)的静态同步串联补偿器。所提交的继电器逻辑也能够准确估计故障的位置,并且使用小波变换的边界条件来区分内部和外部故障。通过各种模拟案例研究示出了SSSC和故障电阻的四象限操作对基于小波变换的继电器的性能具有可忽略不计的。

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