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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Differential evolution based on truncated Levy-type flights and population diversity measure to solve economic load dispatch problems
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Differential evolution based on truncated Levy-type flights and population diversity measure to solve economic load dispatch problems

机译:基于截短征费型飞行和人口多样性测度的差异演化解决经济负荷分配问题

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摘要

Economic load dispatch (ELD) is an important constrained optimization task addressing this vital concern for power system operations. ELD problem is the process of allocating generation among available committed generating units such that cost of generation is optimum subject to several equality and inequality constraints. The conventional optimization methods are mainly classical mathematical methods, which include gradient method and Lagrange relaxation method. In recent years, different types of evolutionary algorithms have been used to solve ELD problems. Among the existing evolutionary algorithms, a well-known branch is the differential evolution (DE). The mutation operation of DE applies vector differentials between existing population members for determining both the degree and the direction applied to the individual subject of the mutation operation. With an eye to improve the performance of classical DE, in this paper, a DE algorithm combined with truncated Levy flight random walks and a population diversity measure (DEL) to improve the crossover and mutation operations is designed to help avoiding premature convergence effectively. A Levy flight random walks (a sequence of displacements) in which the increments are distributed according to a heavy-tailed probability distribution form the a-sta-ble distribution family. The effectiveness of the proposed DEL is demonstrated for two benchmark ELD problems. In order to evaluate the performance of the proposed DEL, it is applied to benchmark systems consisting of 13 and 140 thermal units. Simulation results reveal that, compared with the classical DE and those other methods reported in literatures recently, the proposed DEL is capable of obtaining better quality solutions with higher efficiency.
机译:经济负荷分配(ELD)是一项重要的约束优化任务,解决了电力系统运行这一至关重要的问题。 ELD问题是在可用的已承诺发电单元之间分配发电的过程,使得发电成本在受到多个相等和不平等约束的情况下达到最佳。常规的优化方法主要是经典的数学方法,包括梯度法和拉格朗日松弛法。近年来,已使用不同类型的进化算法来解决ELD问题。在现有的进化算法中,一个著名的分支是差分进化(DE)。 DE的变异运算会在现有人口成员之间应用向量微分,以确定应用于变异运算个体的程度和方向。为了提高经典DE的性能,本文设计了结合截尾征费随机飞行和种群多样性测度(DEL)来改进交叉和变异操作的DE算法,以帮助有效避免过早收敛。 Levy飞行随机游走(一系列位移),其中增量按照稳定分布族的重尾概率分布进行分布。对于两个基准ELD问题,证明了所提出的DEL的有效性。为了评估所提出的DEL的性能,将其应用于由13个和140个热单元组成的基准系统。仿真结果表明,与经典DE和最近文献报道的其他方法相比,所提出的DEL能够以更高的效率获得质量更高的解决方案。

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