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Analysis of the cost of reliable electricity: A new method for analyzing grid connected solar, diesel and hybrid distributed electricity systems considering an unreliable electric grid, with examples in Uganda

机译:可靠电力成本分析:一种分析电网不可靠的并网太阳能,柴油和混合分布式电力系统的新方法,以乌干达为例

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More than 1.3 billion people lack access to grid electricity. Uganda provides a typical example of an under-electrified country, with less than 12% of Ugandans having access. To address the lack of electricity access, there has been much analysis devoted to grid-connected distributed generation. What these analyses lack is a consideration that even where grid electricity reaches people, it is not always reliable; customers often experience hundreds of outage hours per month. This paper addresses this analytical shortfall to provide new methods to analyze reliable electricity and identify optimal systems to provide more reliable electricity. We adapt the HOMER (Hybrid Optimization Model for Electric Renewables) in this work to address unreliable electricity from the grid, and develop a method for determining optimal system configurations and predicting electricity costs for reliable power generation in regions with unreliable grid electricity. We demonstrate the method for a village in Uganda, but the method holds universally. Results indicate that diesel is the most economical choice, but slight increases in diesel and decreases in PV (photovoltaics) prices make solar/diesel hybrid systems competitive. Improved reliability increases cost, but the increase of can be justified for users needing more reliability.
机译:超过13亿人无法使用电网。乌干达是电力不足国家的典型例子,只有不到12%的乌干达人可以使用。为了解决电力供应不足的问题,已经进行了很多有关并网分布式发电的分析。这些分析缺乏的考虑因素是,即使电网向人们供电,也不总是可靠的。客户通常每月会经历数百次停机时间。本文解决了这一分析缺陷,为分析可靠的电力和确定最佳系统以提供更可靠的电力提供了新的方法。我们在这项工作中采用HOMER(电力可再生能源混合优化模型)来解决电网中不可靠的电力,并开发一种方法来确定最佳系统配置并预测在电网不可靠地区可靠发电的电力成本。我们演示了在乌干达的一个村庄的方法,但该方法普遍适用。结果表明,柴油是最经济的选择,但是柴油的小幅上涨和PV(光伏)价格的下降使太阳能/柴油混合动力系统具有竞争力。可靠性的提高会增加成本,但是对于需要更高可靠性的用户来说,增加成本是合理的。

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