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Mini-grid based electrification in Bangladesh: Technical configuration and business analysis

机译:孟加拉国基于微型电网的电气化:技术配置和业务分析

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This paper presents a local level study of a village off-grid system in Bangladesh. It applies an integrated methodology that identifies the demand in the off-grid village context using alternative scenarios. The techno-economic analysis of the optimal off-grid system architecture is then presented using HOMER software. Three energy resources are considered, namely solar energy, wind and diesel fuel. The optimal configuration suggested for the scenarios consists of diesel generators for the basic level of demand and PV-diesel hybrid for higher demand and reliable supply scenarios. The cost of electricity per kWh remains high for the basic level of supply and decreases as the system size increases. However, the capital and asset replacement costs increased considerably for bigger systems. The business case is then analysed for each scenario and it was found that it is practically impossible to reach grid price parity even with full capital cost subsidy, indicating significant amount of operating cost subsidy requirement that makes the larger systems financially unsustainable. Moreover, the small mini-grid system for the basic level of supply emerges as a cheaper option than providing the consumers with solar home systems. But the monthly electricity bill will become unaffordable for most consumers when demand restrictions are removed. Accordingly, the paper suggests a mini-grid based electricity supply to provide the basic level of provision alongside productive energy use during off-peak hours as the starting point. If the business develops and the demand improves, the system can be expanded subsequently using appropriate technology combinations. (C) 2014 The Author. Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/3.0/).
机译:本文介绍了孟加拉国乡村离网系统的本地研究。它采用了一种综合方法,该方法使用替代方案在离网乡村环境中识别需求。然后使用HOMER软件对最佳离网系统架构进行技术经济分析。考虑了三种能源,即太阳能,风能和柴油燃料。针对该方案建议的最佳配置包括用于基本需求水平的柴油发电机和用于更高需求和可靠供应方案的PV-柴油混合动力车。对于基本的供电水平,每千瓦时的电力成本仍然很高,并且随着系统规模的增加而降低。但是,对于较大的系统,资本和资产更换成本显着增加。然后针对每种情况分析业务案例,发现即使有全部的资本成本补贴,也几乎不可能达到电网价格平价,这表明需要大量的运营成本补贴,这使得较大的系统在财务上不可持续。而且,用于基本供应水平的小型微型电网系统的出现比向消费者提供太阳能家用系统便宜。但是,当取消需求限制后,大多数消费者将无法负担每月电费。因此,本文提出了一种基于微型电网的电力供应,以提供基本水平的供应以及非高峰时段的生产性能源使用作为起点。如果业务发展且需求提高,则可以随后使用适当的技术组合来扩展系统。 (C)2014作者。由Elsevier Ltd.发布。这是CC BY许可(http://creativecommons.org/licenses/by/3.0/)下的开放获取文章。

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