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Solar-Powered Base Transceiver Station

机译:太阳能基站收发器

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摘要

The electrification ratio in Indonesia has not yet achieved 100%, meaning there are still many areas without electricity access. As a key driven country development, electricity has a significant impact to the growth of telecommunication industries. In such situations, it is therefore difficult to guarantee the reliability of the telecommunication network, in particular, the electricity supply for the base transceiver station (BTS). To overcome this shortage, locally available renewable energy sources can be a solution as a power supply for a BTS. This study proposes the use of the integrated photovoltaic (PV) system as a power sources for BTS in the remote and isolated areas where the electricity from the grid is unavailable. The results show that the use of PV system is capable of supplying the electrical load requirement of BTS and is very feasible in financial analysis. The designed PV system output can produce 1.16 kW, while BTS load is 1.15 kW. We found that the integrated PV system is capable of handling BTS load. In economic perspective, the investment cost to deploy PV system is affordable due to the advantage of PV system, which is easy to maintain and operate.
机译:印度尼西亚的电气化率尚未达到100%,这意味着仍有许多地区无法通电。电力是推动国家发展的主要动力,对电信行业的发展具有重大影响。因此,在这种情况下,难以保证电信网络的可靠性,尤其是基站收发信机站(BTS)的电力供应。为了克服这种短缺,本地可用的可再生能源可以作为BTS的电源解决方案。这项研究建议在无法获得电网电力的偏远和隔离区域中,使用集成光伏(PV)系统作为BTS的电源。结果表明,使用光伏系统能够满足基站的电力需求,在财务分析中非常可行。设计的光伏系统输出可产生1.16 kW,而BTS负载为1.15 kW。我们发现集成的光伏系统能够处理BTS负载。从经济的角度来看,部署光伏系统的投资成本是可以承受的,这是因为光伏系统具有易于维护和操作的优势。

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