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Optimized control of pressure reducing valves in water distribution networks with dynamic topology

机译:动态拓扑分配网络中减压阀的优化控制

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A dynamic topology aggregates zones in water distribution networks (WDNs) for improved pressure management and resilience to failure. Based on a sequential convex programming (SCP) approach, we propose an optimization method for the control of pressure reducing valves (PRV) in WDNs with dynamic topology. By restricting the SCP iterations to the feasible search space, we show that reliable convergence of the method is achieved. Using an experimental study in a large operational network, the optimization of PRV settings with a dynamic topology is shown to result in pressure reductions of 3.7%-compared to optimized PRVs in a closed DMA structure.
机译:动态拓扑结构在分配网络(WDNS)中聚集区域,以改善压力管理和抵抗失败的弹性。基于顺序凸编程(SCP)方法,我们提出了一种利用动态拓扑中WDN中减压阀(PRV)的优化方法。通过将SCP迭代限制为可行的搜索空间,我们表明实现了该方法的可靠收敛性。在大型操作网络中使用实验研究,显示了具有动态拓扑的PRV设置的优化,导致3.7%的压力降低 - 在闭合DMA结构中对优化的PRV进行了分类。

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