Design and Analysis of IoT-Based Adaptive Microgrid System including Renewable Energy Sources for Decentralized Zones

Md. Ether Deowan, Ahsan Kabir Nuhel, Mir Mohibullah Sazid, Rehenuma Tabassum Meghla, Iftekhar Haider, Md. Rifat Hazari
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Abstract

To enhance living conditions and alleviate poverty, emerging nations require energy services that are dependable, accessible, safe, and efficient. This research study proposes an IoT-based smart microgrid system for rural areas with an enhanced control system for an efficient microgrid operation which may, in turn, solves multiple issues in the rural area. The proposed system is a combination of solar and wind power generators, diesel power stations, and backup storage, having the functionality of detecting the instantaneous fault of a branch with the help of the Bewlice lattice diagram and support vector machine algorithm and could be controlled remotely at any moment over the internet. Likewise, a power monitoring system would provide the authorities with technical attributes related to energy that would be utilized to give power to the rural area in an emergency through the Android Application, which can be retrieved and displayed using a cloud platform named ThingSpeak.
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基于物联网的分布式可再生能源自适应微电网系统设计与分析
为了改善生活条件和减轻贫困,新兴国家需要可靠、方便、安全和高效的能源服务。本研究提出了一种基于物联网的农村智能微电网系统,该系统具有增强的控制系统,可实现微电网的高效运行,从而解决农村地区的多种问题。该系统由太阳能和风力发电机、柴油发电站和备用存储器组成,具有利用Bewlice格图和支持向量机算法检测支路瞬时故障的功能,并可通过互联网随时远程控制。同样,电力监测系统将向当局提供与能源相关的技术属性,以便在紧急情况下通过Android应用程序向农村地区供电,该应用程序可以使用名为ThingSpeak的云平台进行检索和显示。
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