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Optimal Real-Time Operation of Urban Water Distribution Systems Using Reduced Models

机译:使用简化模型的城市供水系统实时优化运营

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摘要

A method for near-optimal real-time on-line operation of urban water distribution system is presented and demonstrated. It uses a reduced model (RM) of the network which reproduces its performance over time with high fidelity with optimization by a genetic algorithm (GA). The RM-GA software uses network data, forecasted demands for an operational planning time-horizon (24 h ahead), field data from a SCADA on the current status of the network, time-of-day energy cost data, and operator-imposed constraints on tank water levels and demand junctions pressures. The GA looks for the near-least-cost operation plan for the whole time horizon, using the reduced network model, and activates the first hour of the plan through the SCADA. At the end of the hour, the status of the network is updated from field data, the time horizon is rolled ahead by 1 h, and the process repeated. The software was developed for and demonstrated on the distribution system of Haifa. Experiments were conducted, in which the operation which simulates the operators' set-point operation is compared with that obtained by the RM-GA, and energy cost savings of 8 and 10% were calculated for a summer and winter month, respectively.
机译:提出并论证了一种近乎实时的城市供水系统实时在线运行方法。它使用网络的简化模型(RM),并通过遗传算法(GA)进行优化,从而随着时间的推移以高保真度再现其性能。 RM-GA软件使用网络数据,预计的运行计划时间间隔(提前24小时),来自SCADA的有关网络当前状态的现场数据,一天中的能源成本数据以及运营商施加的数据限制储罐水位和需求路口压力。 GA使用精简的网络模型在整个时间范围内寻找成本最低的运营计划,并通过SCADA激活计划的第一个小时。在小时结束时,将从现场数据更新网络状态,将时间范围提前1小时,然后重复该过程。该软件是为海法的发行系统开发的并在其上进行了演示。进行了实验,将模拟操作员设定点操作的操作与通过RM-GA获得的操作进行了比较,并计算出夏季和冬季每月分别节省了8%和10%的能源成本。

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