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Design and analysis of solar PV based low-power low-voltage DC microgrid architectures for rural electrification

机译:用于农村电气化的基于太阳能光伏的低功耗低压直流微电网架构的设计和分析

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Over 1.3 billion people worldwide primarily in Africa and South-East Asia have no access to electricity. Electrification of these remote rural regions through national power grids is largely unviable low due to i) a high infrastructure cost and ii) limited power generation capacity in many countries. Therefore, low-power, low-voltage, solar photovoltaic (PV) based DC microgrids are becoming very popular in these regions. Many of these low voltage solar powered DC microgrids are based on central generation and central storage with distribution efficiencies typically ranging from 60% to 80%. Therefore, it is important to design better architectures to attain the highest possible efficiency within system constraints. In this work, we analyze three possible distribution architectures and evaluate their operational efficiency with regards to typical spatial village orientations in many developing countries. These include C-Architecture, Cluster-Architectures and O-Architecture with maximum distribution efficiencies of 83.5%, 91.6% and 95.6%, respectively for a typical 40-house village at 24V DC distribution utilizing 10 AWG conductors. Based upon the comparative analysis in this work, an efficient distribution architecture of a village can be proposed in accordance with its orientation (arrangement of houses) to achieve a higher operational efficiency and a reduced upfront cost. This work will typically be useful in the design and implementation of new low-power low-voltage microgrid systems as well as in upgradation of existing microgrid systems to maximize their utility.
机译:主要在非洲和东南亚,全世界有超过13亿人无法用电。由于i)基础设施成本高和ii)许多国家的发电能力有限,通过国家电网对这些偏远农村地区的电气化在很大程度上是不可行的。因此,基于低功率,低电压,太阳能光伏(PV)的DC微电网在这些地区变得非常流行。这些低压太阳能直流微电网中的许多都是基于集中发电和集中存储的,其分配效率通常在60%至80%之间。因此,设计更好的体系结构以在系统约束范围内获得尽可能高的效率非常重要。在这项工作中,我们分析了三种可能的分布架构,并针对许多发展中国家典型的空间乡村取向评估了它们的运营效率。这些包括C架构,群集架构和O架构,对于一个典型的40户村庄,采用10 AWG导体的24V DC分配,其最大分配效率分别为83.5 \%,91.6 \%和95.6 \%。根据这项工作中的比较分析,可以根据村庄的方向(房屋布置)提出一种有效的村庄分布架构,以实现更高的运营效率和更低的前期成本。这项工作通常将对新的低功率低压微电网系统的设计和实现以及现有微电网系统的升级以最大程度地发挥其效用有用。

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