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Economic emission dispatch problems with stochastic wind power using summation based multi-objective evolutionary algorithm

机译:基于求和的多目标进化算法的随机风能经济排放调度问题

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In recent years, renewable energy sources such as wind energy have been used as one of the most effective ways to reduce pollution emissions. In this paper, a summation based multi-objective differential evolution (SMODE) algorithm is used to optimize the economic emission dispatch problem with stochastic wind power. The Weibull probability distribution function is used to model the stochastic nature of the wind power and the uncertainty is treated as the system constraints with stochastic variables. The algorithm is integrated with the superiority of feasible solution constraint handling technique. To validate the effectiveness of the proposed method, the standard IEEE 30-bus 6-generator test system with wind power (with/without considering losses) is studied with fuel cost and emission as two conflicting objectives to be optimized at the same time. Besides, a larger 40-generator system with wind farms is also solved by the proposed method. The results generated by SMODE are compared with those obtained using NSGAII as well as a number of techniques reported in literature. The results reveal that SMODE generates superior and consistent solutions. (C) 2016 Published by Elsevier Inc.
机译:近年来,风能等可再生能源已被用作减少污染排放的最有效方法之一。本文采用基于求和的多目标差分进化算法(SMODE)来优化具有随机风能的经济排放调度问题。 Weibull概率分布函数用于模拟风能的随机性质,不确定性被视为具有随机变量的系统约束。该算法结合了可行解约束处理技术的优越性。为了验证该方法的有效性,研究了以风能(有/无考虑损耗)为标准的IEEE 30总线六发电机测试系统,同时将燃料成本和排放作为两个有待优化的矛盾目标。此外,该方法还解决了较大的带有风力发电场的40发电机系统。将SMODE产生的结果与使用NSGAII以及文献报道的许多技术获得的结果进行比较。结果表明,SMODE产生了卓越且一致的解决方案。 (C)2016由Elsevier Inc.发布

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