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Optimal energy control of grid tied PV-diesel-battery hybrid system powering heat pump water heater

机译:结合热泵热水器的并网光伏柴油 - 电池混合系统的最优能量控制

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摘要

This paper develops an optimal control strategy for power dispatch of the grid-tied photovoltaic (PV)–battery–diesel system to powerheat pump water heaters (HPWH). The system consists of the PV modules, grid, battery, HPWH, diesel generator (DG) and otherdomestic appliances. The PV can simultaneously feed in the excess power to the grid and supply the loads. The battery is used as storageof cheaper-to-buy off-peak grid energy, dependent on the time-of-use (TOU) electricity tariff, while the DG is a backup power source tothe HPWH. The objective function of the model is to minimize energy and fuel cost while maximizing PV energy trade-off for incentives.The TOU is an important control parameter in this model. The power flows from each power source are the control variables. The optimalcontrol shows a great potential to realize a practical net zero-energy building and demand side management. This model meets boththe technical and operational constraints. A case study is done based on a 3 16 kW HPWH installed at a Pretoria Hotel in SouthAfrica. Simulations run over a year on selected seasonal dates using the actual measured demand of the HPWH. The optimal controlproblem is solved using a mixed integer non-linear program and the results show how TOU affects the power dispatch to theHPWH. The energy and cost savings are presented in this paper.
机译:本文为并网光伏(PV)-电池-柴油系统向动力热泵热水器(HPWH)的功率分配制定了一种最优控制策略。该系统由光伏模块,电网,电池,HPWH,柴油发电机(DG)和其他家用电器组成。 PV可以同时将多余的功率馈入电网并提供负载。根据使用时间(TOU)的电价,该电池被用作廉价购买的非高峰期电网能量的存储,而DG是HPWH的备用电源。该模型的目标功能是最大程度地减少能源和燃料成本,同时最大程度地提高光伏能源的权衡取舍。TOU是该模型中的重要控制参数。来自每个电源的功率流是控制变量。最优控制具有实现实际的零能耗净建筑和需求侧管理的巨大潜力。该模型同时满足技术和操作约束。案例研究基于安装在南非比勒陀利亚酒店的3 16 kW HPWH。使用HPWH的实际测量需求,在选定的季节性日期进行一年的模拟。使用混合整数非线性程序解决了最优控制问题,结果表明TOU如何影响到HPWH的功率分配。本文介绍了节能和节省成本的方法。

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