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Verification of Dependability on Parallel Differential Evolution Based Voltage and Reactive Power Control

机译:基于并行差分演化的电压和无功功率控制的可靠性验证

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Abstract: This paper evaluates dependability on parallel differential evolution (DE) based voltage and reactive power control (Volt/Var Control: VVC) Considering large penetration of renewable energies and deregulated environment of power systems VVC requires fast computation even for larger-scale problems One solutions to increase the computation speed is to use parallel and distributed computing. Since power system is one of the infrastructures of social community, not only fast computation, but also sustainable control (dependability) is strongly required for VVC. The simulation results with IEEE 14, 30, 57, and 118 bus systems indicate that parallel DE is superior to parallel Particle Swarm Optimization (PSO) especially for dependability on VVC.
机译:摘要:本文评估了基于并行差分进化(DE)的电压和无功功率控制(Volt / Var Control:VVC)的可靠性。考虑到可再生能源的渗透力大以及电力系统的管制环境,VVC甚至需要解决较大的问题也需要快速计算提高计算速度的解决方案是使用并行和分布式计算。由于电源系统是社会社区的基础设施之一,因此VVC不仅强烈要求快速计算,而且还要求可持续控制(可靠性)。 IEEE 14、30、57和118总线系统的仿真结果表明,并行DE优于并行粒子群优化(PSO),特别是对于VVC的可靠性。

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