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Improving the performance of smart grid over-current protection relays

机译:改善智能电网过电流保护继电器的性能

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Due to the significant increase in non linear loads and the worldwide trend to establish smart grids, harmonic level in the electricity grids is significantly increased. In addition to their impact on power quality, harmonic currents can have a devastating effect on power system protection performance especially on the operation of over current relays which are designed to operate efficiently at the fundamental frequency. The distorted waveform will affect the operation of the over current rely and may cause the relay to trip under normal operating conditions. To solve this problem, power passive and active filters are employed to eliminate the harmonics and purify the relay operational signal. Passive filters are not cost effective choice to solve this issue. On the other hand, active filters are more complex and need proper and complicated controller. This paper introduces a new and simple approach for adaptive filter design. This approach is economic, compact and very effective in eliminating harmonics in the grid. It can be easily attached with any protective relay to improve its performance. Application of the proposed filter design to improve the performance of over current relays in the IEEE-30 bus system with heavy penetration of non-linear loads is investigated.
机译:由于非线性负载的显着增加以及建立智能电网的全球趋势,电网中的谐波水平显着提高。除了对电能质量的影响外,谐波电流还会对电力系统的保护性能产生毁灭性影响,特别是对旨在在基本频率下有效运行的过电流继电器的运行而言。失真的波形将影响过电流依赖的操作,并可能导致继电器在正常操作条件下跳闸。为了解决这个问题,采用了功率无源和有源滤波器来消除谐波并净化继电器工作信号。无源滤波器不是解决此问题的经济有效选择。另一方面,有源滤波器更加复杂,需要适当且复杂的控制器。本文介绍了一种自适应滤波器设计的新方法。这种方法经济,紧凑并且在消除电网谐波方面非常有效。它可以很容易地与任何保护继电器连接以提高其性能。研究了所提出的滤波器设计在提高非线性负载大量穿透的IEEE-30总线系统中过流继电器性能方面的应用。

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