Md. Sohel Rana, Shubhra Kanti Sinha Shuva, Md. Suzan Islam, Md. Nasif Mahmud Zishan, Md. Mostafizur Rahman
{"title":"Sustainability Analysis of Solar Home System in Bangladesh","authors":"Md. Sohel Rana, Shubhra Kanti Sinha Shuva, Md. Suzan Islam, Md. Nasif Mahmud Zishan, Md. Mostafizur Rahman","doi":"10.1109/SEGE55279.2022.9889757","DOIUrl":null,"url":null,"abstract":"The opportunity and the possibility of the solar home system perspective in Bangladesh are the main topics of discussion in this study. This paper provides a design for an environmentally friendly, independent, and cost-effective system that provides solar power in the Bangladeshi district of Tangail. The paper will discuss off-grid connection and which will be compared with grid connection. It also discusses which of the offgrid and grid-connection is easier to use and comparatively less costly, which will satisfy all the customers. Bangladesh currently sells an average of about 60,000 solar home systems per month. Around 3 million solar home systems have been installed across the country with the help of various NGOs. Bangladesh, like other countries in the world, is increasingly relying on renewable energy. At present, the process of setting up a solar park with a capacity of 1,046 MW is underway across the country. If these projects are implemented, it will be possible to connect 1,960 MW electricity to the national grid through solar park. According to the data provided by Grader, at present 415 MW of electricity is being generated from solar panels (solar panels), 2.9 MW from wind, 230 MW from water, 63 MW from biogas and 0.4 MW from biomass. By 2025, renewable solar and wind energy will supply 45% of the country’s total used energy. And by 2050 it will be SO percent. This study made use of the HOMER Pro PC demonstration software to illustrate the structure, physical conduct, and life cycle cost of the solution.","PeriodicalId":338339,"journal":{"name":"2022 IEEE 10th International Conference on Smart Energy Grid Engineering (SEGE)","volume":"36 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2022-08-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2022 IEEE 10th International Conference on Smart Energy Grid Engineering (SEGE)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/SEGE55279.2022.9889757","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The opportunity and the possibility of the solar home system perspective in Bangladesh are the main topics of discussion in this study. This paper provides a design for an environmentally friendly, independent, and cost-effective system that provides solar power in the Bangladeshi district of Tangail. The paper will discuss off-grid connection and which will be compared with grid connection. It also discusses which of the offgrid and grid-connection is easier to use and comparatively less costly, which will satisfy all the customers. Bangladesh currently sells an average of about 60,000 solar home systems per month. Around 3 million solar home systems have been installed across the country with the help of various NGOs. Bangladesh, like other countries in the world, is increasingly relying on renewable energy. At present, the process of setting up a solar park with a capacity of 1,046 MW is underway across the country. If these projects are implemented, it will be possible to connect 1,960 MW electricity to the national grid through solar park. According to the data provided by Grader, at present 415 MW of electricity is being generated from solar panels (solar panels), 2.9 MW from wind, 230 MW from water, 63 MW from biogas and 0.4 MW from biomass. By 2025, renewable solar and wind energy will supply 45% of the country’s total used energy. And by 2050 it will be SO percent. This study made use of the HOMER Pro PC demonstration software to illustrate the structure, physical conduct, and life cycle cost of the solution.
孟加拉国太阳能家庭系统前景的机会和可能性是本研究讨论的主要主题。本文为孟加拉国Tangail地区提供了一种环保、独立和具有成本效益的太阳能发电系统的设计。本文将讨论离网并网,并将离网并网与离网并网进行比较。讨论了离网和并网哪种方式更容易使用,成本相对更低,从而满足所有用户的需求。孟加拉国目前平均每月销售约6万个家用太阳能系统。在各种非政府组织的帮助下,全国各地安装了大约300万个太阳能家庭系统。与世界上其他国家一样,孟加拉国越来越依赖可再生能源。目前,在全国范围内建立容量为1046兆瓦的太阳能园区的过程正在进行中。如果这些项目得以实施,将有可能通过太阳能公园将1960兆瓦的电力连接到国家电网。根据Grader提供的数据,目前415兆瓦的电力来自太阳能电池板(太阳能电池板),2.9兆瓦来自风能,230兆瓦来自水力,63兆瓦来自沼气,0.4兆瓦来自生物质。到2025年,可再生太阳能和风能将占全国总使用能源的45%。到2050年,这一比例将达到50%。本研究使用HOMER Pro PC演示软件来说明该解决方案的结构、物理性能和生命周期成本。