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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Multiobjective Optimized Dispatching for Integrated Energy System Based on Hierarchical Progressive Parallel NSGA-II Algorithm
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Multiobjective Optimized Dispatching for Integrated Energy System Based on Hierarchical Progressive Parallel NSGA-II Algorithm

机译:基于分层逐行平行NSGA-II算法的集成能量系统多目标优化调度

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Considering the importance of reducing system operating costs and controlling pollutant emissions by optimizing the operation of the integrated energy system, the energy supply structure of the integrated energy system and the joint multiobjective optimization dispatching structure is analyzed in this paper based on a day-ahead economic optimization dispatching model of the integrated energy system. Afterwards, the multiobjective optimization model of the integrated energy system is studied and multiobjective hierarchical progressive parallel algorithm based on improved NSGA-II is proposed according to the characteristics of the model. The algorithm improves the nondominated layer sorting algorithm, changes the convergence judgment condition while introducing the target reaching method to accelerate convergence, and introduces parallel computing technology according to the characteristics of the algorithm. The case shows that the proposed algorithm not only has advantages on the diversity in searching solutions but also can achieve better results in many aspects such as the iteration time and algorithm convergence which are required in practical engineering projects.
机译:考虑降低系统运营成本,通过优化集成能量系统的操作控制污染物排放的重要性,集成能量系统,并联合多目标优化调度结构的能源供应结构,本文分析根据日前经济该集成能量系统优化调度模型。然后,集成能量系统的多目标优化模型进行了研究,并根据该模型的特点,提出了一种基于改进NSGA-II的多目标分层渐进并行算法。该算法提高了非支配层排序算法,同时引入目标到达法以加速收敛改变收敛判断条件,并介绍了平行根据该算法的特性计算技术。情况表明,该算法不仅对多样性优势,寻找解决方案还可以实现在许多方面更好的结果,如迭代时间和要求在实际工程算法的收敛。

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