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Design and Simulation of an Islanded Hybrid Microgrid for Remote Off-Grid Communities

机译:远程离网社区的岛立混合微电网的设计与仿真

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To fulfill the Sustainable Development Goal of energy access (SDG 7), renewable energy sources are the main contributing force. This paper focuses on the electrification of remote islanded community with renewable energy sources. This paper proposes two electrification schemes. In first scheme, the whole village is centrally electrified with the use of biodiesel generator, solar PV and with battery banks as storage. With the addition of renewable energy resources in the grid due to its intermittent nature causes fluctuations in frequency. The paper shows the design of frequency controller incorporated with battery to reduce frequency fluctuations. To investigate, a microgrid comprises of diesel generator, solar P.V as generating units with an external battery energy storage system as an ancillary service source to provide primary frequency response is modeled in MATLAB Simulink. In second scheme, a single phase decentralized design is proposed to electrify individual houses with solar and battery arrangement. To assess the effectiveness of the intended system, actual solar irradiance data and load profile of Pahadi village, Morena in Madhya Pradesh, India is taken into consideration.
机译:为了满足能源访问的可持续发展目标(SDG 7),可再生能源是主要贡献力量。本文重点介绍了具有可再生能源的远程岛屿社区的电气化。本文提出了两个电气化方案。首先,整个村庄采用生物柴油发电机,太阳能光伏和电池组作为储存而集中通电。由于其间歇性,增加了网格中的可再生能源资源,导致频率波动导致波动。本文显示了频率控制器的设计,其中包含电池以减少频率波动。为了研究,Matlab Simulink建模了一种微电网,作为具有外部电池能量存储系统的外部电池能量存储系统的发电单元,以提供初级频率响应的辅助服务器单元。在第二种方案中,提出了一种单相分散的设计,以将各个房屋与太阳能和电池装置电动。为了评估预期系统的有效性,考虑了印度Madhya Pradesh的Pahadi Village的实际太阳辐照度数据和负载概况,印度是印度的。

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