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Near-optimal rehabilitation scheduling of water distribution systems based on a multi-objective genetic algorithm

机译:基于多目标遗传算法的配水系统近最优修复调度

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摘要

An increase in breakage frequency and a decrease in system efficiency are observed when pipes become older. Rehabilitation strategies are necessary to face this problem in order to define when, where and how to operate for renewing the pipe system. These strategies are constrained by the amount of funds, which are usually available not in a single instalment but yearly and spread over a time period of several years. A procedure based on a multi-objective genetic algorithm to search for a near-optimal rehabilitation scheduling is proposed. With reference to a fixed time horizon, the goal is to minimize the overall costs of repairing and/or replacing pipes, and to maximize the hydraulic performances of the water network; the constraints are represented by the maximum costs that are allowed yearly, over a pre-selected time spell. A head-driven hydraulic simulator is linked to the optimizer to represent the different hydraulic and breakage scenarios, which become possible in consequence of the rehabilitation schedules generated by the genetic algorithm. Results regarding a simple case study and a real water distribution system show that the proposed procedure has the potential to be a useful tool for rehabilitation scheduling.
机译:当管道变旧时,观察到断裂频率的增加和系统效率的降低。为了确定何时,何地以及如何操作来更新管道系统,修复策略对于面对这个问题是必要的。这些策略受到资金数量的限制,这些资金通常不能一次性使用,而是每年可用,并且分布在几年的时间内。提出了一种基于多目标遗传算法的近最优康复调度程序。参照固定的时间范围,目标是最大程度地减少维修和/或更换管道的总成本,并最大限度地提高水网的水力性能;约束条件是由预先选择的时间段内每年允许的最大成本表示的。头部驱动式液压模拟器与优化器链接,以表示不同的液压和破损情况,这是由于遗传算法生成的修复计划而导致的。有关简单案例研究和实际供水系统的结果表明,所提出的程序有可能成为康复计划的有用工具。

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