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Optimal reactive power dispatch with wind power integrated using group search optimizer with intraspecific competition and levy walk

机译:使用组内竞争和征费行走的组搜索优化器集成风电的无功优化调度

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摘要

This paper presents the mean-variance (MV) model to solve power system reactive power dispatch problems with wind power integrated. The MV model considers the profit and risk simultaneously under the uncertain wind power (speed) environment. To describe this uncertain environment, the Latin hypercube sampling with Cholesky decomposition simulation method is used to sample uncertain wind speeds. An improved optimization algorithm, group search optimizer with intraspecific competition and levy walk, is then used to optimize the MV model by introducing the risk tolerance parameter. The simulation is conducted based on the IEEE 30-bus power system, and the results demonstrate the effectiveness and validity of the proposed model and the optimization algorithm.
机译:本文提出了均值-方差(MV)模型来解决风电集成的电力系统无功调度问题。 MV模型在不确定的风力(速度)环境下同时考虑利润和风险。为了描述这种不确定的环境,使用带有Cholesky分解模拟方法的拉丁超立方采样对不确定的风速进行采样。然后,采用一种改进的优化算法,即具有种内竞争和征程的组搜索优化器,通过引入风险承受力参数来优化MV模型。仿真是基于IEEE 30总线电源系统进行的,结果证明了所提模型和优化算法的有效性和有效性。

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