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A systematic mixed-integer differential evolution approach for water network operational optimization

机译:水网络运行优化的系统混合整数差分进化方法

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摘要

The operational management of potable water distribution networks presents a great challenge to water utilities, as reflected by the complex interplay of a wide range of multidimensional and nonlinear factors across the water value chain including the network physical structure and characteristics, operational requirements, water consumption profiles and the structure of energy tariffs. Nevertheless, both continuous and discrete actuation variables can be involved in governing the water network, which makes optimizing such networks a mixed-integer and highly constrained decision-making problem. As such, there is a need to situate the problem holistically, factoring in multidimensional considerations, with a goal of minimizing water operational costs. This paper, therefore, proposes a systematic optimization methodology for (near) real-time operation of water networks, where the operational strategy can be dynamically updated using a model-based predictive control scheme with little human intervention. The hydraulic model of the network of interest is thereby integrated and successively simulated with different trial strategies as part of the optimization process. A novel adapted mixed-integer differential evolution (DE) algorithm is particularly designed to deal with the discrete-continuous actuation variables involved in the network. Simulation results on a pilot water network confirm the effectiveness of the proposed methodology and the superiority of the proposed mixed-integer DE in comparison with genetic algorithms. It also suggests that 23.69% cost savings can be achieved compared with the water utility's current operational strategy, if adaptive pricing is adopted for all the pumping stations.
机译:饮用水分配网络的运营管理给水务企业带来了巨大的挑战,这反映在整个水价值链中各种多维和非线性因素的复杂相互作用,包括网络的物理结构和特征,运行要求,用水量分布以及能源关税的结构。然而,连续的和离散的致动变量都可以参与控制水网络,这使得优化这种网络成为一个混合整数和高度受限的决策问题。因此,需要从多方面考虑对问题进行全盘考虑,以使水的运行成本最小化。因此,本文提出了一种(近)水网络实时运行的系统优化方法,该方法可以使用基于模型的预测控制方案动态地更新操作策略,而无需人工干预。作为优化过程的一部分,目标网络的水力模型因此被集成并通过不同的试验策略进行了连续仿真。特别设计了一种新颖的自适应混合整数差分进化(DE)算法来处理网络中涉及的离散连续致动变量。在试验性水网上的仿真结果证实了所提出方法的有效性以及所提出的混合整数DE与遗传算法相比的优越性。这也表明,如果对所有泵站都采用自适应定价,则与自来水公司当前的运营策略相比,可以节省23.69%的成本。

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