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首页> 外文期刊>Journal of environment informatics >Extension of the Constrained Gravitational Search Algorithm for Solving Multi-Reservoir Operation Optimization Problem
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Extension of the Constrained Gravitational Search Algorithm for Solving Multi-Reservoir Operation Optimization Problem

机译:求解多储层操作优化问题的受约束重力搜索算法的扩展

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摘要

In this paper the proposed constrained gravitational search algorithm (CGSA) is extended and used to solve multi-reservoir operation optimization problem. Tow constrained versions of GSA named partially constrained GSA (PCGSA) and fully constrained GSA (FCGSA) are outlined to solve this optimization problem. In the PCGSA, the problem constraints are partially satisfied, however, in the FCGSA, all the problem constraints are implicitly satisfied by providing the search space for each agent which contains only feasible solution and hence leading to smaller search space for each agent. These proposed constrained versions of GSA are very useful when they are applied to solve large scale multi-reservoir operation optimization problem. The constrained versions of GSA are formulated here for both possible variables of the problem means considering water release or storage volumes as the decision variables of the problem and therefore first and second formulations of these algorithms are proposed. The proposed algorithms are used to solve the well-known four and ten reservoir operation optimization problems and the results are presented and compared with those of original form of the GSA and any available results in the literature. The results indicate the superiority of the proposed algorithms and especially FCGSA over existing methods to optimally solve large scale multi-reservoir operation optimization problem.
机译:在本文中,所提出的约束的引力搜索算法(CGSA)被扩展并用于解决多储层操作优化问题。概述了名为部分约束的GSA(PCGSA)和完全约束GSA(FCGSA)的GSA的牵引版本以解决此优化问题。在PCGSA中,问题约束被部分满足,然而,在FCGSA中,通过为仅包含可行解决方案的每个代理提供搜索空间来隐式满足所有问题约束,其包括可行解决方案,因此导致每个代理的较小的搜索空间。当应用于解决大规模多储层运营优化问题时,这些所提出的受约束版本的GSA非常有用。这里的受约束版本的GSA被制定出问题意味着考虑水释放或存储体积作为问题的决策变量,因此提出了这些算法的第一和第二配方。所提出的算法用于解决众所周知的四个和十个储层操作优化问题,并与GSA的原始形式的结果和文献中的任何可用结果进行了比较。结果表明,所提出的算法和特别是FCGSA在现有方法上最佳地解决大规模多储层操作优化问题的优势。

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