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Dynamic Modeling And Sizing Optimization Of Stand-alone Photovoltaic Power Systems Using Hybrid Energy Storage Technology

机译:利用混合储能技术的独立光伏发电系统动态建模和尺寸优化

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摘要

Economic and environmental concerns over fossil fuels encourage the development of photovoltaic (PV) energy systems. Due to the intermittent nature of solar energy, energy storage is needed in a stand-alone PV system for the purpose of ensuring continuous power flow. Three stand-alone photovoltaic power systems using different energy storage technologies are studied in this paper. Key components including PV modules, fuel cells, electrolyzers, compressors, hydrogen tanks and batteries are modeled in a clear way so as to facilitate the evaluation of the power systems. Based on energy storage technology, a method of ascertaining minimal system configuration is designed to perform the sizing optimization and reveal the correlations between the system cost and the system efficiency. The three hybrid power systems, i.e., photovoltaic/battery (PV/Battery) system, photovoltaic/fuel cell (PV/FC) system, and photovoltaic/fuel cell/battery (PV/FC/Battery) system, are optimized, analyzed and compared. The obtained results indicate that maximizing the system efficiency while minimizing system cost is a multi-objective optimization problem. As a trade-off solution to the problem, the proposed PV/FC/Battery hybrid system is found to be the configuration with lower cost, higher efficiency and less PV modules as compared with either single storage system.
机译:对化石燃料的经济和环境关注促进了光伏(PV)能源系统的发展。由于太阳能的间歇性,在独立的光伏系统中需要进行能量存储,以确保持续的电力流。本文研究了三种使用不同储能技术的独立光伏发电系统。关键组件包括光伏组件,燃料电池,电解槽,压缩机,氢气罐和电池均以清晰的方式建模,以便于评估电源系统。基于能量存储技术,设计了一种确定最小系统配置的方法来进行尺寸优化,并揭示系统成本与系统效率之间的相关性。优化,分析并优化了三种混合动力系统,即光伏/电池(PV /电池)系统,光伏/燃料电池(PV / FC)系统和光伏/燃料电池/电池(PV / FC /电池)系统比较。获得的结果表明,最大化系统效率同时最小化系统成本是一个多目标优化问题。作为此问题的权衡解决方案,与任一单个存储系统相比,发现拟议的PV / FC /电池混合系统具有更低的成本,更高的效率和更少的PV模块。

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