Design and Management of Hybrid Renewable Energy System using RETscreen Software: A Case Study

Fouad Zaro, Noor Abu Ayyash
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Abstract

This research clarified a complete design for a renewable microgrid for Al-aroub technical college in Palestine. It consists of various renewable energy systems, including the photovoltaic system, biogas as a primary energy source, a fuel cell generator and a hydrogen storage unit, which can provide electricity to developing economies. As the photoelectric generator and the methane generator provide sufficient electrical energy during the day that covers the requirements of the different loads on the farm, while the excess energy is transferred to the electrolyzer for hydrogen production and storage, and when the load needs more energy, the electric fuel cells are turned on where the hydrogen is obtained from the energy storage unit. An energy management strategy was also proposed in this study as the newly developed network control and management system, and Matlab was chosen to undertake this task. Moreover, the RETscreen Expert software that enables to determine the optimum size that meets the potential demand along with the most feasible economic values and guarantees the highest system reliability. Therefore, three scenarios were proposed and tested, the first being the basic model which was a solar system with traditional batteries, the second a solar system, biogas with batteries, and finally, solar energy, biogas, and fuel cell with hydrogen energy storage unit. Technical analysis of the combined generation was also performed using Power world simulator to obtain constant frequency and voltage (stability conditions). The simulation results clearly show that the hybrid renewable energy system (HRES) consist of PV, bioenergy and small-scale fuel cell generator is a more economical configuration than single renewable energy systems with battery which has a total net cost of $ 473570, levelized cost of energy (LCOE) of 0.157 $/kWh and the lowest CO2 emission model that was 2.1 tons per year.
RETscreen软件在混合可再生能源系统设计与管理中的应用
本研究阐明了巴勒斯坦Al-aroub技术学院可再生微电网的完整设计。它由各种可再生能源系统组成,包括光伏系统,作为主要能源的沼气,燃料电池发电机和氢气储存装置,可以向发展中经济体提供电力。由于光电发生器和甲烷发生器在白天提供足够的电能,可以满足农场不同负荷的需求,而多余的能量则被转移到电解槽制氢和储存,当负荷需要更多的能量时,打开电燃料电池,从储能单元获得氢气。本研究还提出了一种能源管理策略作为新开发的网络控制与管理系统,并选择Matlab来完成这项任务。此外,RETscreen Expert软件能够确定满足潜在需求的最佳尺寸以及最可行的经济价值,并保证最高的系统可靠性。因此,提出并测试了三种场景,第一种是基于传统电池的太阳能系统的基本模型,第二种是基于电池的太阳能系统、沼气,最后一种是基于氢气储能单元的太阳能、沼气和燃料电池。利用Power world模拟器对联合发电进行技术分析,获得恒频恒压(稳定条件)。仿真结果清楚地表明,由光伏、生物能源和小型燃料电池发电机组成的混合可再生能源系统(HRES)是一种比单一电池可再生能源系统更经济的配置,其总净成本为473570美元,能源平准化成本(LCOE)为0.157美元/千瓦时,最低的CO2排放模型为2.1吨/年。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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