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Management of photovoltaic excess electricity generation via the power to hydrogen concept: A year-round dynamic assessment using Artificial Neural Networks

机译:通过对氢概念的功率管理光伏过​​量发电:使用人工神经网络进行全年动态评估

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This paper assesses energetically and economically the power-to-hydrogen concept by exploring the excess power resulting from the mismatch between the photovoltaic (PV) generation and the electric demand of a medium-size commercial structure located in Morocco. The variability in the building electric load is considered and the power flows from the PV field to the building are predicted using Artificial Neural Networks for a time-resolution of 15 min. A MATLAB code was implemented to estimate the instantaneous hydrogen production based on a semi-empirical mathematical formulation of an Alkaline type electrolyzer with a nominal capacity of 15 kW. These combined approaches are for the first time adopted to evaluate the feasibility of integrated PV hydrogen systems under the Moroccan context. Using a set of 5 electrolyzers coupled to the 104 kW(p) currently installed solar PV field, it was possible to generate about 18,622 Nm(3)/year of hydrogen by exploring the PV excess power. The overall efficiency of the integrated system ranged from 9.5% (in March) to 10.1% (in May). Such an approach allowed enhancing the effective efficiency and capacity factor to values of 9.873% and 26.87%, respectively compared to 6.325% and 10.163% for the base case scenario without hydrogen systems. From an economic perspective, it was found that the integrated PV-hydrogen plant engendered levelized cost of electricity and hydrogen of 12.56 c$/kWh and 21.55 $/kg, respectively. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文通过探索光伏(PV)生成与位于摩洛哥的中等大小商业结构的电气需求产生的多余功率,通过探索多余的功率来评估电力到氢概念。考虑建筑电载荷的可变性,并且使用人工神经网络预测从PV场到建筑物的功率流动,以便时间分辨率为15分钟。实施了MATLAB代码以估计基于碱性电解槽的半经验数学制剂的瞬时氢气产生,标称容量为15 kW。这些组合方法首次采用来评估摩洛哥语境下集成的PV氢气系统的可行性。使用耦合到104kW(P)当前安装的太阳能光伏电磁场的一组5电解器,可以通过探索光伏过量的功率产生约18,622nm(3)/年的氢。综合系统的整体效率范围从9.5%(3月)到10.1%(5月)。这种方法允许将有效效率和容量因子提高为9.873%和26.87%,而没有氢气系统的基本情况的6.325%和10.163%。从经济角度来看,发现集成的PV-氢气工厂的直接电力和氢气成本为12.56℃,分别为21.55美元/千克。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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