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首页> 外文期刊>Journal of Water Resources Planning and Management >Optimal Pump Scheduling in Water Distribution Systems Using Graph Theory under Hydraulic and Chlorine Constraints
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Optimal Pump Scheduling in Water Distribution Systems Using Graph Theory under Hydraulic and Chlorine Constraints

机译:水力和氯约束下基于图论的配水系统优化泵调度。

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摘要

Finding the optimal pump operation in water distribution systems, taking into account hydraulic and water quality constraints, is a complex problem due to the nonlinear relationship between dynamic head loss and flow rate and between chlorine decay and water age, and due to the size of the problem. The proposed algorithm, for minimum cost pump scheduling, utilizes the operational graph algorithm applied to hydraulic and quality constraints. The proposed algorithm utilizes a graph algorithm that considers hydraulic and water quality constraints to find the pump scheduling that minimizes pump operational costs. The algorithm has short solution times and therefore is suitable for real-time water system control or, if used offline, for giving a recommendation on the pump operation taking into account hydraulic and water quality constraints. The algorithm results were compared with the best results found by enumeration to show that the operational graph algorithm returns a global minimal solution and, when combined with quality constraints, returns near-optimal results. The proposed algorithm was successfu exally demonstrated on a 24-h example application with a single pumping unit and, on the C-Townmple application, with 11 pumping units and 168 time steps.
机译:考虑到水力和水质的限制,在配水系统中找到最佳的泵操作是一个复杂的问题,这是由于动态压头损失与流量之间以及氯气衰减与水龄之间存在非线性关系,并且问题。所提出的算法用于最低成本的泵调度,利用了适用于液压和质量约束的操作图算法。所提出的算法利用一种图形算法,该算法考虑了水力和水质的约束条件,以找到使泵的运行成本最小化的泵调度。该算法的求解时间短,因此适用于实时水系统控制,或者如果离线使用,则可在考虑液压和水质约束的情况下为泵的运行提供建议。将算法结果与通过枚举发现的最佳结果进行比较,以表明可操作图算法返回全局最小解,并且与质量约束结合使用时,返回接近最优的结果。所提出的算法已在具有单个泵送单元的24小时示例应用程序中成功进行了示范,在C-Townmple应用程序中,具有11个泵送单元和168个时间步长成功地进行了演示。

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