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Design of an off-grid hybrid PV/wind power system for remote mobile base station: A case study

机译:远程移动基站离网混合光伏/风电系统设计:案例研究

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There is a clear challenge to provide reliable cellular mobile service at remote locations where a reliable power supply is not available. So, the existing Mobile towers or Base Transceiver Station (BTSs) uses a conventional diesel generator with backup battery banks. This paper presents the solution to utilizing a hybrid of photovoltaic (PV) solar and wind power system with a backup battery bank to provide feasibility and reliable electric power for a specific remote mobile base station located at west arise, Oromia. All the necessary modeling, simulation, and techno-economic evaluation are carried out using Hybrid Optimization Model for Electric Renewable (HOMER) software. The best optimal system configurations namely PV/Battery and PV/Wind/Battery hybrid systems are compared with the conventional stand-alone diesel generator (DG) system. Findings indicated that PV array and battery is the most economically viable option with the total net present cost (NPC) of $$$57,508 and per unit cost of electricity (COE) of $$$0.355. Simulation results show that the hybrid energy systems can minimize the power generation cost significantly and can decrease CO2 emissions as compared to the traditional diesel generator only. The sensitivity analysis is also carried out to analysis the effects of probable variation in solar radiation, wind speed, diesel price and average annual energy usage of the system load in the optimal system configurations.
机译:在没有可靠电源的偏远地区提供可靠的蜂窝移动服务是一个明显的挑战。因此,现有的移动塔或基站收发器(BTS)使用带有备用电池组的常规柴油发电机。本文提出了一种利用光伏(PV)太阳能和风能混合动力系统与备用电池组的解决方案,以为位于奥罗米亚西部的特定远程移动基站提供可行性和可靠的电力。所有必要的建模,仿真和技术经济评估均使用可再生电力混合优化模型(HOMER)软件进行。将最佳的最佳系统配置(即PV /电池和PV /风/电池混合系统)与传统的独立柴油发电机(DG)系统进行比较。调查结果表明,光伏阵列和电池组是最经济可行的选择,总净现成本(NPC)为$ $ 57,508,每单位电力成本(COE)为$ $ 0.355。仿真结果表明,与仅传统柴油发电机相比,混合能源系统可以显着降低发电成本,并可以减少CO2排放。还进行了灵敏度分析,以分析最佳系统配置中太阳辐射,风速,柴油价格和系统负载的平均年能源使用量可能变化的影响。

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