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Topological and mechanical redundancy-based optimal design of water distribution systems in many-objective optimization

机译:许多客观优化水分配系统的拓扑和机械冗余最优设计

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This study proposes a direction for future multi-objective optimal designs of water distribution systems using two-system redundancy (i.e. topological and mechanical) simultaneously with construction costs in a many-objective harmony search. Topological redundancy considers the connectivity ability of the network, which reflects alternative paths between the source and demand nodes during system failure or during disruption of primary paths. Mechanical redundancy is the hydraulic ability of the system that considers the pressure deficit between pressure requirements under abnormal conditions. This study establishes the correlation between these redundancies and the relationship between network configuration and each redundancy factor under abnormal conditions. To verify the proposed method, the Anytown network is applied in this study. According to the analysis results, the importance of considering both redundancies is emphasized in terms of structural and hydraulic aspects.
机译:本研究提出了使用两种系统冗余(即拓扑和机械)的未来多目标最佳设计的方向,在许多客观和声搜索中,建筑成本在施工成本上。 拓扑冗余考虑网络的连接能力,这反映了系统故障期间或在主路径中的中断期间源和需求节点之间的替代路径。 机械冗余是在异常条件下考虑压力要求之间的压力缺陷的系统的液压能力。 本研究建立了这些冗余与网络配置与异常条件下的每个冗余因子之间的相关性的相关性。 为了验证所提出的方法,在本研究中应用了Anytown网络。 根据分析结果,在结构和液压方面强调了考虑冗余的重要性。

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