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Off-grid solar photovoltaic systems for rural electrification and emissions mitigation in India

机译:用于印度农村电气化和减排的离网太阳能光伏系统

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摘要

Over one billion people lack access to electricity and many of them in rural areas far from existing infrastructure. Off-grid systems can provide an alternative to extending the grid network and using renewable energy, for example solar photovoltaics (PV) and battery storage, can mitigate greenhouse gas emissions from electricity that would otherwise come from fossil fuel sources. This paper presents a model capable of comparing several mature and emerging PV technologies for rural electrification with diesel generation and grid extension for locations in India in terms of both the levelised cost and lifecycle emissions intensity of electricity. The levelised cost of used electricity, ranging from $0.46–1.20/kWh, and greenhouse gas emissions are highly dependent on the PV technology chosen, with battery storage contributing significantly to both metrics. The conditions under which PV and storage becomes more favourable than grid extension are calculated and hybrid systems of PV, storage and diesel generation are evaluated. Analysis of expected price evolutions suggest that the most cost-effective hybrid systems will be dominated by PV generation around 2018.
机译:超过十亿人无法获得电力,其中许多人在农村地区远离现有的基础设施。离网系统可以提供扩展电网网络的替代方案,并使用可再生能源,例如太阳能光伏(PV)和电池存储,可以减轻原本来自化石燃料来源的电力所产生的温室气体排放。本文提出了一个模型,该模型可以从水平成本和电力生命周期排放强度两方面比较印度农村地区电气化,柴油发电和电网扩展的几种成熟和新兴光伏技术。平准化的用电成本在0.46-1.20美元/ kWh之间,而温室气体排放高度依赖于所选的光伏技术,电池存储量对这两个指标都起着重要作用。计算了光伏和储能比电网扩展更有利的条件,并评估了光伏,储能和柴油发电的混合系统。对预期价格变化的分析表明,最具成本效益的混合动力系统将在2018年左右以光伏发电为主。

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