首页> 外文期刊>Applied Energy >Exploring the boundaries of Solar Home Systems (SHS) for off-grid electrification: Optimal SHS sizing for the multi-tier framework for household electricity access
【24h】

Exploring the boundaries of Solar Home Systems (SHS) for off-grid electrification: Optimal SHS sizing for the multi-tier framework for household electricity access

机译:探索用于离网电气化的太阳能家庭系统(SHS)的边界:针对家庭用电的多层框架的最佳SHS规模

获取原文
获取原文并翻译 | 示例
       

摘要

With almost 1.1 billion people lacking access to electricity, solar-based off-grid products like Solar Home Systems (SHS) have become a promising solution to provide basic electricity needs in un(der)-electrified regions. Therefore, optimal system sizing is a vital task as both oversizing and undersizing a system can be detrimental to system cost and power availability, respectively. This paper presents an optimal SHS sizing methodology that minimizes the loss of load probability (LLP), excess energy dump, and battery size while maximizing the battery lifetime. A genetic algorithm-based multi-objective optimization approach is utilized to evaluate the optimal SHS sizes. The potential for SHS to cater to every tier of the Multi-tier framework (MTF) for measuring household electricity access is examined. The optimal system sizes for standalone SHS are found for different LLP thresholds. Results show that beyond tier 2, the present day SHS sizing needs to be expanded significantly to meet the load demand. Additionally, it is deemed untenable to meet the electricity needs of the higher tiers of MTF purely through standalone SHS without compromising one or more of the system metrics. A way forward is proposed to take the SHS concept all the way up the energy ladder such that load demand can also be satisfied at tier 4 and 5 levels.
机译:由于将近11亿人无法用电,基于太阳能的离网产品,例如Solar Home Systems(SHS),已成为在欠(欠)电地区提供基本电力需求的有前途的解决方案。因此,优化系统规模是一项至关重要的任务,因为系统的规模过大和规模过小都会分别不利于系统成本和电源可用性。本文介绍了一种最佳的SHS尺寸估算方法,该方法可将负载损失(LLP),多余的能量损耗和电池尺寸的损失降到最低,同时将电池寿命最大化。基于遗传算法的多目标优化方法用于评估最佳SHS大小。研究了SHS适应多层框架(MTF)的每一层来衡量家庭用电的潜力。针对不同的LLP阈值找到了独立SHS的最佳系统大小。结果表明,除第2层以外,当前SHS的规模需要大大扩展以满足负载需求。此外,仅通过独立的SHS来满足更高级别的MTF的电力需求,而又不损害一个或多个系统指标被认为是站不住脚的。提出了一种将SHS概念一直带到能源阶梯上的前进方法,这样也可以在4级和5级级别满足负载需求。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号