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Optimal control of a fuel cell/wind/PV/grid hybrid system with thermal heat pump load

机译:带热泵负荷的燃料电池/风/光伏/电网混合系统的最优控制

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This paper presents an optimal energy management strategy for a grid-tied photovoltaic-wind-fuel cell hybrid power supply system. The hybrid system meets the load demand consisting of an electrical load and a heat pump water heater supplying thermal load. The objective is to minimize energy cost and maximize fuel cell output, taking into account the time-of-use electricity tariff. The optimal control problem is solved using a mixed binary and real linear programming. The supply switch to the heat pump water heater and the power from the grid, power to/from the inverter, electrolyzer hydrogen power and fuel cell power are the control variables. The temperature inside the water storage tank and the hydrogen in the storage tank are the state variables. The performance of the proposed control strategy is tested by simulating different operating scenarios, with and without renewable energy feed-in or rather export to the grid, and the results confirm its effectiveness, as it increases the supply reliability of the system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了并网光伏-风-燃料电池混合电源系统的最佳能源管理策略。混合动力系统可满足由电负载和提供热负载的热泵热水器组成的负载需求。目标是考虑到使用时间的电费,以最小化能源成本并最大化燃料电池输出。使用混合二进制和实数线性规划可解决最佳控制问题。控制变量包括热泵热水器的电源开关以及来自电网的功率,往返逆变器的功率,电解氢的功率和燃料电池的功率。储水箱内的温度和储水箱内的氢气是状态变量。通过模拟不同的操作场景(带有或不带有可再生能源的馈入或什至不向电网输出)来测试所提出的控制策略的性能,结果证实了其有效性,因为它提高了系统的供电可靠性。 (C)2016 Elsevier Ltd.保留所有权利。

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