阿尔及利亚Hassi R 'mel AGRS光伏-柴油混合储能系统性能分析

Ahssen Mahmoudi, Amina Manel Bouaziz, Mohamed Najib Bouaziz, Djohra Saheb-Koussa
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引用次数: 1

摘要

本文主要研究了利用HOMER软件对Hassi R 'mel中心厂的最优混合系统进行优化。事实上,该系统由光伏板、电池组和柴油发动机组成,所有这些都用于提供工业负载。因此,本工作提出了一种优化电源发电量,最大化利用光伏源,最小化使用电池组和柴油发电机的解决方案。该方案旨在保证系统各部件的安全运行和负载电源的连续性。这些目标是通过最小化成本函数来实现的,其中发电成本、能量平衡和环境参数都被考虑在内。在5个方案中,得到的最优系统是光伏/柴油/电池/电网。该系统由1200kw的光伏、1100kw的柴油发电机、800台电池和1100kw的变流器组成。因此,为该站提供49%的光伏发电和51%的柴油发电,减排60%,节省柴油708020升。灵敏度分析还表明,可再生资源对光伏发电规模有影响。当太阳辐射增加时,可再生能源的规模减小,NPC也减小。因此,可以说明光伏/柴油/电池系统不是完全最优的。这种策略被推荐用于工业系统安全,因为它可以从能源和经济的角度来确保系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of hybrid PV-diesel-storage system in AGRS, Hassi R’mel Algeria
The main research paper focuses on the optimal hybrid system using HOMER software in the central plant of Hassi R’mel. Indeed, the system is composed of PV panels, a battery bank, and a diesel engine, all of which are used to supply an industrial load. Hence, the present work proposes a solution to optimize the power generated by the power sources, maximize the photovoltaic source use, and minimize the use of the battery bank and the diesel generator. Moreover, the solution aims to guarantee the safe operation of the system components and continuity in the load power supply. These objectives are performed by the minimization of a cost function, in which the power generation cost, the energetic balance, and the environmental parameters are taken into consideration. Among the five solutions, the most optimal system obtained is PV/Diesel/batteries /Grid. This system consists of 1200 KW PV, an 1100 KW diesel generator, 800 units of battery, and an 1100 KW converter. Therefore, to supply the station with 49% of electricity by PV and 51% by diesel while the reduction of emissions is 60%, and 708020 liters of diesel is saved. Applying the sensitivity analysis also showed that renewable resources have an impact on the sizing of PV. When solar radiation increases, the size of renewable energy decreases and the NPC decreases as well. It can, thus, be illustrated that the PV/diesel/battery system is not fully-optimal. This strategy is recommended for industrial system security since it can be used to ensure systems from an energetic and economic point of view.
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