Techno-Economic Studies of Integration of Solar PV Technology in Telecommunications Sector for Sustainable Development: A Case Study of Budiriro

M. Mwanza, Kline Tarcisius Mapfumo
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Abstract

The telecommunications industry in Zimbabwe keeps growing with an increase in the number of users year by year. The demand on the national grid and low power supply means long hours of electricity outages, which prompts Internet Service Providers (ISPs) to use generators as backup power to keep base stations online for uninterrupted provision of internet to consumers. Generator systems increase the operation expenditure (OPEX) of running base stations, produce GHG emissions and in tern attract an additional cost of emission. This causes an increase in the cost of running the business and consequently internet data prices. A case study was conducted in Budiriro. A framework was developed which analysed six combinations (Grid + Generator, Generator only, Generator + Solar, Solar only, Grid + Solar, and Grid only) of power sources based on sustainability pillars; Economical, Environmental, and Social, as well as Technical. The six alternatives were simulated in HOMER Pro, a system that evaluates designs for both off-grid and grid-connected power systems, to determine the output (power output, investments, costs, and emissions) of these individual systems. Using a sub-criterion of 15 pairwise combinations, the Analytic Hierarchy Process (AHP) was used to rank these systems, and the best solution was chosen based on the main criteria of the sustainability pillars. The result shows that Grid + Solar PV system provides the best optimal alternative power system to power base stations for the study area, substituting Grid + Generator systems (Existing system). It reduces OPEX by over 1,000 percent offering 37 percent more power and 41.13 tonnes of GHG emissions avoided per year. Socially, power sharing between households and base stations as well as reduction of air and noise pollution. The optimal alternative power source for the base station proposed here in this study will help reduce greenhouse gas emissions, and dependence on grid and operation costs which in turn will reduce data prices, increase internet accessibility at affordable rates and provide a sustainable future for telecommunications businesses in Budiriro.
太阳能光伏技术在电信行业可持续发展的技术经济研究:以Budiriro为例
津巴布韦的电信行业不断发展,用户数量逐年增加。对国家电网的需求和低电力供应意味着长时间的停电,这促使互联网服务提供商(isp)使用发电机作为备用电源,以保持基站在线,不间断地向消费者提供互联网服务。发电机系统增加了运行基站的运营支出(OPEX),产生温室气体排放,从而吸引额外的排放成本。这导致运营业务的成本增加,从而导致互联网数据价格上涨。在Budiriro进行了一个案例研究。开发了一个框架,分析了基于可持续性支柱的六种电源组合(电网+发电机,仅发电机,发电机+太阳能,仅太阳能,电网+太阳能和仅电网);经济,环境,社会,以及技术。这六种方案在HOMER Pro中进行了模拟,HOMER Pro是一个评估离网和并网电力系统设计的系统,以确定这些单独系统的输出(功率输出、投资、成本和排放)。利用15个成对组合的子标准,采用层次分析法(AHP)对这些系统进行排名,并根据可持续性支柱的主要标准选择最佳解决方案。结果表明,电网+太阳能光伏系统替代电网+发电机系统(现有系统)为研究区电力基站提供了最优的替代电力系统。它将运营成本降低了1000%以上,提供37%的电力,每年避免41.13吨温室气体排放。在社会方面,家庭和基站之间的电力共享以及减少空气和噪音污染。本研究中提出的基站最佳替代电源将有助于减少温室气体排放,减少对电网和运营成本的依赖,从而降低数据价格,以可承受的价格增加互联网可访问性,并为Budiriro的电信业务提供可持续的未来。
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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