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首页> 外文期刊>Journal of Experimental and Theoretical Artificial Intelligence >An improved invasive weed optimization algorithm for solving dynamic economic dispatch problems with valve-point effects
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An improved invasive weed optimization algorithm for solving dynamic economic dispatch problems with valve-point effects

机译:一种改进的血管点效应解决动态经济调度问题的侵入杂草优化算法

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摘要

In this study, an improved invasive weed optimisation (CMIWO) algorithm is investigated to solve the dynamic economic dispatch (DED) problem with valve-point effects. In the proposed algorithm, a hybrid operator including selective crossover, random mutation and row crossover is proposed to improve the exploration and exploitation abilities. Moreover, a self-adaption repair method is developed and embedded into the proposed algorithm to repair infeasible solutions. To verify the optimisation performance of CMIWO, six well-known DED problems in three different-scale power systems are tested and compared with other algorithms that have been proposed in the literature. The experimental results show that CMIWO can find the more economical dispatch solutions compared to other algorithms, and the self-adaption repair method can successfully convert infeasible solutions into feasible solutions. The convergence ability of CMIWO is also verified after the detailed comparison.
机译:在这项研究中,研究了改进的侵入性杂草优化(CMIWO)算法,以解决阀点效应的动态经济派遣(DED)问题。在所提出的算法中,提出了一种混合算子,包括选择性交叉,随机突变和行交叉,以改善勘探和剥削能力。此外,开发了一种自适应修复方法,并嵌入到所提出的算法中以修复不可行的解决方案。为了验证CMIWO的优化性能,测试了三种不同尺度功率系统中的六个众所周知的德国问题,并与文献中提出的其他算法进行了比较。实验结果表明,与其他算法相比,CMIWO可以找到更经济的调度解决方案,自适应修复方法可以成功将不可行的解决方案转换为可行的解决方案。在详细的比较之后也验证了CMIWO的收敛能力。

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