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Optimal design of redundant water distribution networks using a cluster of workstations

机译:使用工作站集群的冗余供水网络的优化设计

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A genetic algorithm (GA)-based method for the least-cost design of looped pipe networks for various levels of redundancy is presented in this paper. Redundancy constraints are introduced in the optimization model by considering the number of pipes assumed to be out of service at any one time. Using this approach, trade-off relationships between cost and redundancy are developed. The GA-based approach is computationally intensive, and implementations on a custom fault-tolerant distributed computing framework, called Vitri, are used to satisfy the computational requirements. The design methodology is applied to two water distribution networks of different sizes, and a comparison of the performance of the distributed GAs for the design problems is also presented. We conclude that a GA-based approach to obtaining cost-effective, redundant solutions for the least-cost design of looped pipe networks can be effectively used on a heterogeneous network of nondedicated workstations.
机译:本文提出了一种基于遗传算法(GA)的最低成本设计各种冗余度的环状管网的方法。通过考虑假定在任何时间都不可用的管道数量,在优化模型中引入了冗余约束。使用这种方法,开发了成本与冗余之间的权衡关系。基于GA的方法需要大量的计算,并且在名为Vitri的定制容错分布式计算框架上的实现可满足计算要求。该设计方法适用于两个不同规模的供水网络,并针对设计问题对分布式遗传算法的性能进行了比较。我们得出的结论是,基于遗传算法的方法可获得成本有效的,冗余的解决方案,以实现成本最低的环管网络设计,可在非专用工作站的异构网络上有效使用。

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