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Decentralised electricity generation system based on local renewable energy sources in the Honduran rural residential sector

机译:洪都拉斯农村居民区基于当地可再生能源的分散发电系统

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摘要

This article addresses the selection of electricity generation technologies for a decentralised electricity generation system based on local renewable sources for a rural area of a developing country (six municipalities in Western Honduras). In this work, rather than designing a high-reliable electricity generation system with high-quality power, our objective is to provide the basic configuration of an energy mix for a rural area for which energy data are not of high resolution. The selection of technologies is accomplished through a non-linear integer programming model that minimises the levelised cost of electricity (LCOE). The model uses as inputs information related to the energy resources, the conversion technologies, the Honduran economic framework, the electricity demand of the study area, and the energy storage cost. The evaluated energy resources are solar, wind, and local biomass, while the electricity generation technologies considered include solar photovoltaics, wind turbines, biomass direct combustion with a steam turbine, and biomass gasification with a gas engine. Three different case studies were proposed as functions of power capacity: off-grid, mini-grid, and grid-connected. For each case study, the model outputs are the electricity supply share for each technology, the LCOE, and the number of power plants with the respective power capacity required to satisfy the electricity demand of the study area. This work can serve as a reference for preliminary feasibility studies of electrification projects based on renewable energy sources for other rural areas in Honduras or in other developing countries.
机译:本文介绍了针对发展中国家农村地区(洪都拉斯西部的六个城市)的基于本地可再生资源的分散式发电系统的发电技术选择。在这项工作中,我们的目标不是为能源数据不是高分辨率的农村地区提供能源结构的基本配置,而不是设计一种具有高质量电能的高可靠性发电系统。技术选择是通过非线性整数规划模型来完成的,该模型使电力成本(LCOE)降至最低。该模型将与能源,转换技术,洪都拉斯经济框架,研究区域的用电需求和储能成本有关的信息用作输入。评估的能源包括太阳能,风能和当地生物质,而考虑的发电技术包括太阳能光伏,风力涡轮机,利用蒸汽轮机进行生物质直接燃烧以及利用燃气发动机进行生物质气化。提出了三种不同的案例研究作为电力容量的函数:离网,微型电网和并网。对于每个案例研究,模型输出为每种技术的电力供应份额,LCOE和具有满足研究区域电力需求所需的各自发电能力的电厂数量。这项工作可为洪都拉斯或其他发展中国家其他农村地区基于可再生能源的电气化项目的初步可行性研究提供参考。

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