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Oscillation Damping with DPFC Using Optimization Techniques

机译:使用优化技术与DPFC一起阻尼的振荡

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Low frequency oscillations are the major problem in power system. To magnify the power system stability, new FACTS device is introduced i.e. Distributed Power Flow Controller (DPFC) for damping the low frequency electro-mechanical oscillations. DPFC works on the theory of D-FACTS (distributed FACTS). It is modified form of Unified Power Flow Controller (UPFC) with removal of common DC link in UPFC. In this paper, optimal design problem is solved using Genetic Algorithm (GA) and Differential Evolution (DE) algorithm to optimize the damping controller parameters. Results shows that DPFC employed with DE algorithm improves the stability more effectively compared with GA.
机译:低频振荡是电力系统的主要问题。为了放大电力系统稳定性,引入了新的事实装置,即分布式电流控制器(DPFC),用于阻尼低频电力机械振荡。 DPFC在D-Fiffs(分布式事实)的理论上。它是修改的统一电力流量控制器(UPFC)的形式,拆除了UPFC的共同直流链路。本文采用遗传算法(GA)和差分演进(DE)算法来解决最佳设计问题,优化阻尼控制器参数。结果表明,与GA相比,使用DE算法的DPFC更有效地提高了稳定性。

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