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Real-Time Operational Response Methodology for Reducing Failure Impacts in Water Distribution Systems

机译:减少配水系统故障影响的实时操作响应方法

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This paper presents a methodology for developing efficient and effective operational, short-time response to an unplanned failure event (e.g.,a pipe burst or equipment failure) in a water distribution system (WDS). The proposed automated response methodology consists of isolating the failure event followed by the recovery of the affected system part by restoring the flows and pressures to normal conditions. The isolation is typically achieved by manipulating the nearby on/off valves. The recovery, which is the focus of this work, involves selecting an optimal combination of suitable operational interventions from a number of possible choices with the aim to reduce the negative impact of the failure (e.g.,volume of water undelivered to consumers) over a prespecified time horizon. The intervention options considered here include valve manipulations, changing the pressure reducing valve's (PRV) outlet pressure, and installation and use of temporary overland bypasses from nearby hydrants in an adjacent, unaffected part of the network. The optimal mix of interventions is identified by using a multiobjective optimization approach driven by the minimization of the negative impact on the consumers and the minimization of the corresponding number of operational interventions (which acts as a surrogate for operational costs). This methodology has been applied to a real-world water distribution network of C-Town. The results obtained demonstrate the effectiveness of the proposed methodology in identifying the Pareto optimal intervention strategies that could be ultimately presented to the control room operator for making a suitable decision in near real time.
机译:本文提出了一种方法,可以针对配水系统(WDS)中的计划外故障事件(例如,管道破裂或设备故障)开发有效而有效的短期操作响应。所提出的自动响应方法包括隔离故障事件,然后通过将流量和压力恢复到正常状态来恢复受影响的系统部件。通常通过操纵附近的开/关阀来实现隔离。回收是这项工作的重点,它涉及从多种可能的选择中选择合适的操作干预措施的最佳组合,以减少故障对预定范围的负面影响(例如,未输送给消费者的水量)。时间范围。此处考虑的干预选项包括阀门操作,更改减压阀(PRV)的出口压力,以及在网络的相邻,未受影响的部分安装和使用来自附近消防栓的临时陆上旁路。干预的最佳组合是通过使用多目标优化方法确定的,该方法由对消费者的负面影响最小化和相应数量的操作干预最小化(这是操作成本的替代)来驱动。该方法已被应用于C-Town的实际供水网络。获得的结果证明了所提出的方法在识别帕累托最优干预策略方面的有效性,该策略最终可以呈现给控制室操作员,以近乎实时地做出适当的决策。

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