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首页> 外文期刊>International review of electrical engineering >Optimization of a Photovoltaic Hybrid Energy Storage System Using Energy Storage Peak Shaving
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Optimization of a Photovoltaic Hybrid Energy Storage System Using Energy Storage Peak Shaving

机译:利用能量储存峰值剃须优化光伏混合能量存储系统

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摘要

Electrical supply in rural areas, especially on small islands, commonly utilizes eco-unfriendly and costly diesel-based power plants. Renewable energy power plants can replace these diesel-based power plants. Thus, energy optimization is critical for the improvement of the energy efficiency of the renewable energy system. The optimization of a photovoltaic energy system through a hybrid energy storage system is analyzed for the off-grid island. The hybrid energy storage system involves the hybridization of two energy storage systems including a battery storage system and a hydrogen storage system. The management of a photovoltaic hybrid energy storage system requires a power management system. This paper proposes a power management system based on the peak shaving strategy in hydrogen energy storage to improve the efficiency of the hybrid energy storage system while considering the surplus energy forecasting. The hybrid energy storage system typically focuses on the efficiency of a closed system. In such a closed system, the optimization focuses on the life-saving of the battery. The energy storage peak shaving is used to improve the efficiency of the hybrid energy storage system, for the maximization of excess hydrogen to supply electricity to the islands. The result reveals that the average efficiency of the hybrid energy storage system based on the proposed power management system is 52.3 %, which is 29.6% higher than the one obtained from traditional power management system strategy, whereas the battery depreciation is improved by 1.2%.
机译:农村地区的电源,特别是在小岛屿上,通常利用生态不友好和昂贵的柴油电厂。可再生能源发电厂可以取代这些基于柴油的发电厂。因此,能量优化对于改善可再生能源系统的能效至关重要。分析通过混合能量存储系统的光伏能量系统的优化用于离网岛。混合能量存储系统涉及两个能量存储系统的杂交,包括电池存储系统和储氢系统。光伏混合能量存储系统的管理需要电源管理系统。本文提出了一种基于氢蓄能储存峰剃锐策略的电力管理系统,提高混合储能系统的效率,同时考虑剩余能量预测。混合能量存储系统通常侧重于封闭系统的效率。在这种封闭的系统中,优化侧重于电池的寿命。能量存储峰值剃须用于提高混合能量存储系统的效率,以便最大化过量的氢气供给岛屿。结果表明,基于所提出的电力管理系统的混合能储能系统的平均效率为52.3%,比传统电力管理系统策略的策略高29.6%,而电池折旧得到1.2%。

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