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Optimum Switching Point Assessment of Parallel Braking Resistor and Serial Current Limiter for Power System Stability Enhancement

机译:电力系统稳定性增强的平行制动电阻和串联限制器的最佳切换点评估

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摘要

A new control algorithm using parallel braking resistor (BR) and serial fault current limiter (FCL) for power system transient stability enhancement is presented in this paper. The proposed control algorithm can prevent transient instability during first swing by immediately taking away the transient energy gained in faulted period. It can also reduce generator oscillation time and efficiently make system back to the post-fault equilibrium. The algorithm is based on a new system energy function based method to choose optimal switching point. The parallel BR and serial FCL resistor can be switched at the calculated optimal point to get the best control result. This method allows optimum dissipation of the transient energy caused by disturbance so to make system back to equilibrium in minimum time. Case studies are given to verify the efficiency and effectiveness of this new control algorithm.
机译:本文介绍了一种新的控制算法,采用平行制动电阻(BR)和串行故障电流限制器(FCL)进行电力系统瞬态稳定性增强。所提出的控制算法可以通过立即脱离在故障时期中获得的瞬态能量来防止在首先摆动期间的瞬态不稳定性。它还可以减少发电机振荡时间,有效地使系统恢复到故障后平衡。该算法基于基于新的系统能量功能的方法来选择最佳切换点。并联BR和串行FCL电阻可以在计算的最佳点处切换以获得最佳控制结果。该方法允许最佳耗尽由扰动引起的瞬态能量,以便在最短时间内使系统恢复到平衡。提供案例研究来验证这种新控制算法的效率和有效性。

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