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Solving the combined heat and power economic dispatch problems by an improved genetic algorithm and a new constraint handling strategy

机译:用改进的遗传算法和新的约束处理策略解决热电联产经济调度问题

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摘要

This paper presents an improved genetic algorithm using novel crossover and mutation (IGA-NCM) to solve the combined heat and power economic dispatch (CHPED) problems. The basic genetic algorithm (GA) has been augmented in three aspects. First, the selection operation is excluded from GA in order to avoid excessive losses of population diversity. Second, two kinds of adaptive crossover operations are used to sufficiently excavate the information of parents and yield potential offsprings. Third, a novel mutation operation is used to replace a few genes of each crossed offspring by those of the other crossed offsprings' parents, which can further improve their quality. Furthermore, a new constraint handling method is proposed to repair the mutated offsprings and enable them to enter feasible regions easily. Experimental results show that our proposed IGA-NCM algorithm out-performs the other ones according to computation accuracy and runtime. Therefore, it is a potential alternative for the CHPED problems with or without prohibited operating zones.
机译:本文提出了一种改进的遗传算法,该算法使用新型交叉和变异(IGA-NCM)解决热电联产经济调度(CHPED)问题。基本遗传算法(GA)在三个方面得到了增强。首先,为了避免人口多样性的过度损失,将选择工作排除在一般事务处理之外。其次,使用两种自适应交叉操作来充分挖掘父母的信息并产生潜在的后代。第三,采用一种新颖的突变操作,将每个杂交后代的一些基因替换为其他杂交后代的父母的基因,从而可以进一步提高其品质。此外,提出了一种新的约束处理方法来修复变异后代并使它们易于进入可行区域。实验结果表明,本文提出的IGA-NCM算法在计算精度和运行时间方面均优于其他算法。因此,对于有或没有禁止的操作区域的CHPED问题,它都是一种潜在的替代方法。

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