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Optimal Water–Power Flow-Problem: Formulation and Distributed Optimal Solution

机译:最优水流问题:配方和分布式最佳解决方案

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摘要

This paper formalizes an optimal water-power flow (OWPF) problem to optimize the use of controllable assets across power and water systems while accounting for the couplings between the two infrastructures. Tanks and pumps are optimally managed to satisfy water demand while improving power grid operations; for the power network, an ac optimal power-flow formulation is augmented to accommodate the controllability of water pumps. Unfortunately, the physics governing the operation of the two infrastructures and coupling constraints leads to a nonconvex (and, in fact, NP-hard) problem; however, after reformulating OWPF as a nonconvex, quadratically constrained quadratic problem, a feasible point pursuit-successive convex approximation approach is used to identify feasible and optimal solutions. In addition, a distributed solver based on the alternating direction method of multipliers enables water and power operators to pursue individual objectives while respecting the couplings between the two networks. The merits of the proposed approach are demonstrated for the case of a distribution feeder coupled with a municipal water distribution network.
机译:本文正式地规范了最佳的水力流量(OWPF)问题,以优化电源和水系统中可控资产的使用,同时考虑两个基础架构之间的耦合。坦克和泵最佳地设为满足水需求,同时提高电网运行;对于电网,增强AC最佳流量制剂以适应水泵的可控性。遗憾的是,管理两个基础设施和耦合约束的操作的物理导致非凸起(以及事实上,NP-Hard)问题;然而,在将OWPF重构之后作为非凸起的,二次约束的二次问题,使用可行的点追求连续的凸近似方法来识别可行性和最佳的解决方案。另外,基于乘法器的交替方向方法的分布式求解器使得水和电力运营商能够在尊重两个网络之间的耦合的同时追求各个目标。提出方法的优点是为与市政水分配网络相连的分配饲养者的情况。

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