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Techno-economic Evaluation of Residential DC Power System for Multiple Distribution Voltages

机译:用于多个分配电压的住宅直流电力系统的技术经济评价

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DC Power Systems or DC Nanogrids (NGs) in modern homes are candidates for improving efficiency beyond the utility meter. DC distribution in these houses must be evaluated in the context of costs, load rating and spatial distribution along with optimum conductor usage to minimize the overall upfront and operational costs. This paper entails a framework to select the best-suited voltage for a residential DC NG with DC loads. The developed model considers loads and length of wires as variables, hence it is modular and scalable to larger residential units or commercial buildings. The model is tested from an efficiency and cost perspective at a typical residential house with 2.5 kW DC load with three distribution voltages i.e., 24V, 48V and 380V. Results show that 48V is the best candidate for the residential settings based on efficiency and techno-economic analysis incorporating conversion as well as distribution losses.
机译:现代家庭中的直流电力系统或DC纳米兰花(NGS)是用于提高公用事业计的效率的候选者。 这些房屋中的直流分布必须在成本,负荷等级和空间分布的范围内进行评估,以及最佳导体使用,以最大限度地减少整体前期和运营成本。 本文需要一个框架,为具有直流负载的住宅DC NG选择最适合的电压。 开发的模型将负载和长度作为变量考虑,因此它是模块化和可扩展到更大的住宅单元或商业建筑。 该模型从典型的住宅房屋的效率和成本透视中测试,具有2.5 kW DC负载,具有三个分配电压,即24V,48V和380V。 结果表明,48V是基于效率和技术经济分析的住宅环境的最佳候选者,包括转换以及分配损失。

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