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Modeling, Design and Energy Management of a Residential Standalone Photovoltaic-Fuel Cell Power System

机译:住宅独立光伏燃料电池电力系统的建模,设计和能量管理

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The aim of this paper is to evaluate the potential of integrating photovoltaic and fuel cell technologies for standalone residential applications. The paper presents a detailed modelling of the photovoltaic (PV) array and maximum power tracking control, proton-exchange membrane (PEM) fuel cell stack, electrolyser and hydrogen storage tank. An energy management strategy is proposed to control the power flow in the system to satisfy the demand of typical residential load profiles under different operating conditions. In the proposed power management strategy, PV constitutes the primary energy source of the system, while the fuel cell represents the back-up supply when solar energy is unavailable. The overall model is simulated in Matlab/Simuink. The proposed model will provide qualitative information on the optimal rating and size of the PV array, fuel cell and storage devices characteristics to satisfy the energy/cost requirements for a residential application in rural/remote areas.
机译:本文的目的是评估积分光伏和燃料电池技术为独立住宅应用的潜力。本文介绍了光伏(PV)阵列和最大功率跟踪控制,质子交换膜(PEM)燃料电池堆,电解槽和储氢罐的详细建模。提出了一种能源管理策略来控制系统中的功率流动,以满足不同操作条件下典型住宅负载谱的需求。在所提出的电源管理策略中,PV构成系统的主要能量来源,而燃料电池在太阳能不可用时代表备用电源。 MATLAB / SIMUINK中模拟了整体模型。该建议的模型将提供有关PV阵列的最佳额定值和大小的定性信息,燃料电池和存储装置特性,以满足农村/偏远地区的住宅应用的能量/成本要求。

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