一种具有成本效益的用于远程基站收发站的太阳能-风能燃料电池独立发电厂的开发

Tshilidzi Ramunenyiwa, K. Awodele, Okeolu Samuel Omogoye
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引用次数: 2

摘要

本文通过将混合可再生能源系统(HRES)与独立柴油发电机分别用于南非林波波省Sigonde村的基站收发器(BTS)供电,分析了两者的性能。这一比较是基于能源产出、经济效益和污染物排放。采用多能源混合优化软件(HOMER)对两种系统进行了仿真和优化。目标是开发一种具有成本效益的HRES,其性能优于独立的柴油发电机,并且排放的污染物少至零。这种混合供电系统由太阳能、风能和燃料电池电源以及备用电池组成。此外,该系统零容量短缺,零未满足负荷,并遵守国家6.75%的贴现率。结果表明,为Sigonde村的BTS供电的最佳系统由12.25 kW的太阳能光伏发电容量,1 kW的风力涡轮机,4 kW的燃料电池,10.5 kWh容量的电池和3.75 kW的转换器组成。HRES成本为50%(净当前成本和能源成本),排放的污染物减少80%,最后,有10079千瓦时的多余能源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a Cost-effective Solar-Wind-Fuel cell Independent Power Plant for a Remote Base Transceiver Station
This paper analyses the performance of a hybrid renewable energy system (HRES) by comparing it to a standalone diesel generator when both are used independently to power a Base Transceiver Station (BTS) at Sigonde village in Limpopo, South Africa. The comparison is based on energy output, economics and emission of pollutants. The hybrid optimization of multiple energy resources (HOMER) software was used to simulate and optimize both systems. The objective is to develop a cost-effective HRES that performs better than standalone diesel generator and emits less to zero pollutants. This hybrid power supply system comprises of solar, wind and fuel-cell power sources with a battery back-up pack. Furthermore, the system has zero capacity shortage, zero unmet load and abides by the country's discount rate of 6.75%. The results showed that the best system to power the BTS at Sigonde village is made up of 12.25 kW solar PV capacity, 1 kW wind turbine, 4 kW fuel-cell, 10.5 kWh capacity battery and a 3.75 kW converter. The HRES costs 50% (Net Present Cost and Cost of Energy), emits 80% less pollutions and lastly, has an excess energy of 10079 kWh.
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