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Optimal Design of a Hybrid Renewable Energy System Powering Mobile Radio Base Station in Libya

机译:利比亚混合再生能源系统电力电信电视电站的最优设计

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Current work presents an Optimal design of a hybrid renewable energy system (HRES) for the purpose of powering mobile base stations in Libya using renewable energy sources. HRES including wind turbine, PV panels, batteries, diesel generator, and grid were modeled in order to get the Optimal configuration of the designed HRES. Homer software were used for such analysis. One of the economic measures used for the evaluation of such HRES is the cost of energy (COE), it was found that, such cost varies from 0.106 to 0.154 $/kWh for grid connected HRES. And it varies from 0.184 to 0.263 $/kWh for standalone HRES located in remote and low populated areas. On the other hand, each single Base Station (BS) would save the environment from about 14,924 kg of CO2 and 63 kg of SO2 in Sabha-Libya.It is being found that a HRES is one of the excellent solutions for mobile base stations as it will overcome the power cut problems which leads to an interruptible power supply for mobile base stations and avoids communication interruptions for the mobile users.
机译:目前的工作提供了混合可再生能源系统(HRES)的最佳设计,用于使用可再生能源在利比亚推动移动基站的目的。模型包括风力涡轮机,PV面板,电池,柴油发电机和网格,以便获得设计的HRES的最佳配置。 HOMER软件用于此类分析。用于评估此类HRE的经济措施之一是能源(COE)的成本,发现这种成本从0.106到0.154 $ / kWh进行各种措施。对于位于遥控器和低人口低位的地区的独立HR,它从0.184到0.263 $ / kWh变化。另一方面,每个单个基站(BS)将从约14,924公斤的CO中保存环境 2 和63千克所以 2 在Sabha-Libya.IT中,HRES是移动基站的优秀解决方案之一,因为它将克服电力切割问题,这导致移动基站的可中断电源,并避免了移动用户的通信中断。

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