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Chaos PSO algorithm based economic dispatch of hybrid power systems including solar and wind energy sources

机译:基于混沌PSO算法的混合动力系统经济调度,包括太阳能和风能

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This paper proposes a novel application of a chaos particle swarm optimization (PSO) algorithm for economic dispatch (ED) of a hybrid power system including the solar and wind energy sources. The algorithm is seeking to minimize total operating costs of the hybrid power system. The proposed chaos PSO algorithm is one of the standard PSO algorithm variants which has been used a logistic map for initializing random values of generators, as well as the inertia weight in the velocity update equation of the standard PSO algorithm. This results in the best convergence capability and search performance during the evolution process of the algorithm. The chaos PSO algorithm based ED problem of the hybrid power system with and without solar and wind powers is considered on a standard IEEE 30-bus 6-generator 41-transmission line test power system. The simulation results demonstrate the capabilities of the proposed algorithm to generate optimal dispatch solutions of the ED problem considering the renewable energy resources. The comparison with the standard PSO algorithm demonstrates the superiority of the proposed algorithm and confirms its potential to solve the ED problem.
机译:本文提出了一种混沌粒子群算法(PSO)在包含太阳能和风能的混合动力系统经济调度(ED)中的新应用。该算法正在寻求使混合动力系统的总运行成本最小化。提出的混沌PSO算法是标准PSO算法的一种变体,已被使用逻辑映射来初始化发电机的随机值以及标准PSO算法的速度更新方程中的惯性权重。在算法的演化过程中,这将导致最佳的收敛能力和搜索性能。在标准的IEEE 30总线6发电机41输电线路测试电源系统上考虑了具有和不具有太阳能和风能的混合动力系统基于混沌PSO算法的ED问题。仿真结果证明了所提算法在考虑可再生能源的情况下生成ED问题最优调度解决方案的能力。与标准PSO算法的比较证明了该算法的优越性,并证实了其解决ED问题的潜力。

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