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Smart DC microgrids: Modeling and power flow analysis of a DC Microgrid for off-grid and weak-grid connected communities

机译:智能直流微电网:用于离网和弱电网连接社区的直流微电网的建模和潮流分析

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This paper presents a modular, scalable and viable architecture for a DC Microgrid to supply electrical power to off-grid communities, particularly in developing countries, where grid electricity is unavailable or is largely intermittent. We have modeled a system for a 40 house village where each house generates (through PV), stores and can share electrical energy with the community for an optimized system. The concept is then extended to an islanded DC Microgrid model with scalable renewable generation and smart power regulation. This paper also includes the operational analysis of the proposed microgrid architecture using Newton Raphson method modified for DC grid analysis. This analysis is used to optimize the voltage level for regulation, efficiency and safety. The results are then verified through an experimental setup in the laboratory. Lastly, this paper also proposes a protection scheme for the DC microgrid and the contributing households.
机译:本文提出了一种模块化,可扩展且可行的DC微电网架构,可为离网社区提供电力,特别是在电网不可用或断断续续的发展中国家。我们为一个有40个房屋的村庄建模了一个系统,其中每个房屋(通过PV)发电,存储并可以与社区共享电能,以优化系统。然后将该概念扩展到具有可扩展可再生能源发电和智能功率调节功能的孤岛DC Microgrid模型。本文还包括使用针对直流电网分析而修改的Newton Raphson方法对拟议的微电网架构进行的运营分析。该分析用于优化电压水平,以实现调节,效率和安全性。然后,通过实验室中的实验装置来验证结果。最后,本文还提出了针对直流微电网和供电户的保护方案。

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