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Optimization Of Operational Planning For Wind/hydro Hybrid Water Supply Systems

机译:风/水混合供水系统运行计划的优化

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Water supply systems (WSS) frequently present high-energy consumption values, which correspond to the major expenses of these systems. Energy costs are a function of its real consumption and of the variability of the daily energy tariff. This paper presents a model of optimization for the energy efficiency in a water supply system. The system is equipped with a pump station and presents excess of available energy in the gravity branch. First, a water turbine is introduced in the system in order to use this excess of hydraulic available energy. Then, an optimization method to define the pump operation planning along the 24 h of simulation, as well as the analysis of the economic benefits resulting from the profit of wind energy to supply the water pumping, while satisfying the system constraints and population demands, is implemented, in order to minimize the global operational costs. The model, developed in MATLAB, uses linear programming and provides the planning strategy to take in each time step, which will influence the following hours. The simulation period considered is one day, sub-divided in hourly time steps. The rules obtained as output of the optimization procedures are subsequently introduced in a hydraulic simulator (e.g. EPANET), in order to verify the system behaviour along the simulation period. The results are compared with the normal operating mode (i.e. without optimization algorithm) and show that energy cost's savings are achieved dependently of the initial reservoir levels or volume. The insertion of the water turbine also generates significant economical benefits for the water supply system.
机译:供水系统(WSS)经常会出现高能耗值,这相当于这些系统的主要费用。能源成本是其实际消耗量和每日能源费率变化的函数。本文提出了供水系统能源效率的优化模型。该系统配备了泵站,并在重力分支中提供了多余的可用能量。首先,将水轮机引入系统中,以便使用液压多余的能量。然后,在满足系统约束和人口需求的同时,采用一种优化方法来定义沿模拟24小时的泵运行计划,以及分析由风能的利润所带来的经济效益,以提供水泵。实施,以最小化全球运营成本。在MATLAB中开发的模型使用线性编程,并提供了在每个时间步中采用的规划策略,这会影响接下来的时间。所考虑的仿真周期是一天,细分为每小时的时间步长。随后将作为优化程序输出获得的规则引入液压模拟器(例如EPANET)中,以验证模拟期间系统的行为。将结果与正常工作模式(即不使用优化算法)进行比较,结果表明,能源成本的节省取决于初始储层的液位或储量。水轮机的插入还为供水系统带来了明显的经济利益。

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