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Viable residential DC microgrids combined with household smart AC and DC loads for underserved communities

机译:可行的住宅DC微电网与家庭智能AC和DC负载相结合,用于服务不足社区

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摘要

The availability of fossil fuels in the future and the environmental effects such as the carbon footprint of the existing methodologies to produce electricity is an increasing area of concern. In rural areas of under-developed parts of the world, the problem is lack of access to electrification. DC microgrids have become a proven solution to electrification in these areas with demonstrated exceptional quality of power, high reliability, efficiency, and simplified integration between renewable energy sources (principally solar PV) and energy storage. In the United States, a different problem occurs that can be addressed with the same DC microgrid approach that is finding success internationally. In disinvested, underserved communities of with high unemployment and low wages, households contribute a significant portion of their income toward the fixed cost of their electrical utility connection, which by law must be supplied to every household. This paper analyzes a residential DC microgrid in an urban, under- served area that enables the sharing of renewable and stored energy resources between dwellings. The goal of the residential DC microgrid is to drive down to fixed costs of utility-provided electricity to all participants, such that the percentage of utility cost to total household income comes can be made comparable to that of more advantaged communities. A group of renovated dwellings constitute the community which the DC microgrid would serve. The distributed installation of solar panels and battery storage among dwelling locations are optimized based upon varying consumption patterns. Also, consumption patterns during different seasons of the year are considered. Electrical distribution architectures within the dwellings are based upon conventional AC. Each dwelling has a DC interface to the residential microgrid and progressive insertion of DC loads, with associated household DC distribution, is considered.
机译:未来化石燃料的可用性以及现有方法的碳足迹等环境效应是一个越来越多的关注领域。在世界不发达的地区的农村地区,问题缺乏通用。 DC MicroGrids已成为这些领域的电气化的证明解决方案,具有卓越的功率质量,可再生能源(主要是太阳能光伏电路)和能量存储之间的简化集成。在美国,出现不同的问题,可以用相同的DC微普林方法来解决,这些方法在国际上寻找成功。在倾向的情况下,具有高失业率和低工资的欠缺社区,家庭将其收入的重大部分促进其电气公用事业连接的固定成本,法律必须提供给每个家庭。本文分析了一个城市,服务区的住宅DC微电网,可以在住宅之间共享可再生和存储的能源资源。住宅DC MicroGrid的目标是推动到所有参与者的公用事业电力的固定成本,使得公用事业费用的百分比可以与更多优势社区相比。一群被翻新的住宅构成了DC微电网将服务的社区。基于不同的消耗图案,优化了居住位置的太阳能电池板和电池储存的分布式安装。此外,考虑了当年的不同季节期间的消费模式。住宅内的配电架构基于传统的AC。每个住宅都有一个直流接口,与住宅微电网和DC负载的逐步插入,具有相关的家庭直流分布。

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