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A graphical approach to optimal power management for uncertain OFF-Grid PV-FC-electrolyzer-battery hybrid systems

机译:不确定的离网PV-FC-电解槽-电池混合系统的图形化电源优化管理方法

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The problem of optimal power management for uncertain off-grid hybrid systems is studied in this paper. A suitable parametrization of the energy sources and sinks is used to obtain a graphical representation of the feasible set along with a direct observation of the solution and its piecewise description. The proposed approach pretends to clarify how the optimal solution migrates from the use of one source to another as the solar radiation changes and how the dynamic response of the sources restrict the feasible set. A power generation system (PGS) is used to study the limitations that the sun power variability and the parametric uncertainty impose on the optimality; being the PGS constituted by photovoltaic (PV) panels, a fuel cell (FC), an electrolyzer (E) and a battery bank. A simple optimal Power Management Strategy (PMS) is proposed as a result of the analysis and its performance is illustrated in a telecom facility for three different locations in Mexico. Results are shown indicating the viability of the strategy for highly variable environments. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了不确定离网混合系统的最优功率管理问题。能源和汇的适当参数化用于获得可行组的图形表示,以及对解决方案及其分段描述的直接观察。拟议的方法假装阐明最佳解决方案是如何随着太阳辐射的变化而从使用一种光源迁移到另一种光源的,以及这些光源的动态响应如何限制了可行的方法。发电系统(PGS)用于研究太阳功率可变性和参数不确定性对最优性的限制。是由光伏(PV)面板,燃料电池(FC),电解器(E)和电池组构成的PGS。分析的结果是提出了一种简单的最佳电源管理策略(PMS),并在墨西哥三个不同地点的电信设施中说明了其性能。结果显示了该策略在高度可变的环境中的可行性。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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