首页> 外文会议>Intelligent System Design and Engineering Application (ISDEA), 2012 Second International Conference on >Optimal Multi-objective Reactive Power Dispatch Considering Static Voltage Stability Based on Dynamic Multi-group Self-Adaptive Differential Evolution Algorithm
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Optimal Multi-objective Reactive Power Dispatch Considering Static Voltage Stability Based on Dynamic Multi-group Self-Adaptive Differential Evolution Algorithm

机译:基于动态多组自适应差分进化算法的考虑静态电压稳定性的最优多目标无功分配

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Optimizing multi-objective reactive power dispatch in power systems is an effective way of improving voltage quality, decreasing active power losses and increasing voltage stability margin. This is a non-linear, constrained, non-convex, mixed discrete-continuous variable problem. Recently, computational intelligence-based methods such as genetic algorithms (GAs), differential evolution (DE) algorithms, particle swarm optimization (PSO) algorithms and immune algorithms (IAs) have been applied to solve this problem. This paper employs dynamic multi-group self-adaptive differential evolution (DMSDE) algorithm to solve multi-objective reactive power optimization problem. In DMSDE, the population is divided into multiple groups which exchange information dynamically. Further, in the mutation phase, the best vector among the three randomly vectors is used as the base vector while the difference vector is determined by the remaining two vectors. Moreover, two parameters, F and CR, are self-adapted. The presented method is tested on IEEE 30-bus, IEEE 57-bus and IEEE 118-bus power systems. The numerical results, when compared with other algorithms, show that DMSDE is an efficient tool to solve dispatch reactive power flow problem.
机译:优化电力系统中的多目标无功功率分配是提高电压质量,减少有功功率损耗和增加电压稳定裕度的有效方法。这是一个非线性的,受约束的,非凸的,混合的离散连续变量。最近,基于计算智能的方法,例如遗传算法(GA),差分进化(DE)算法,粒子群优化(PSO)算法和免疫算法(IAs)已被用于解决此问题。本文采用动态多组自适应差分进化算法(DMSDE)来解决多目标无功优化问题。在DMSDE中,人口被分为多个组,可以动态交换信息。此外,在突变阶段,将三个随机向量中的最佳向量用作基本向量,而差向量由其余两个向量确定。此外,两个参数F和CR是自适应的。所提出的方法已在IEEE 30总线,IEEE 57总线和IEEE 118总线电源系统上进行了测试。与其他算法相比,数值结果表明DMSDE是解决调度无功潮流问题的有效工具。

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