Empirical study: IoT-based microgrid

Jasna Janković, L. Šikić, Petar Afrić, M. Šilić, Ž. Ilić, H. Pandžić, M. Živić, M. Dzanko
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Abstract

This work presents an IoT-based smart grid system implementation as proof of concept to examine the emerging business and technological needs in smart grids and analyze the efficiency of smart grid communications. As part of the work, we describe the smart grid system architecture consisting of a physical photovoltaic-powered microgrid laboratory, communication subsystem, and cloud-based smart grid management system along with the implementation details. Next, we discuss the obtained results in terms of messaging service quality and system availability, flexibility, and robustness. We show that our system can exchange telemetry and control messages in less than 1 s, depending on message size. Finally, lessons learned and future challenges are outlined, including communication transparency and efficiency, scalability of management and communication subsystems, characterization of message severity associated with quality of service requirements, and other non-technical considerations.
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实证研究:基于物联网的微电网
这项工作提出了一个基于物联网的智能电网系统实现作为概念验证,以检查智能电网中新兴的业务和技术需求,并分析智能电网通信的效率。作为工作的一部分,我们描述了智能电网系统架构,包括物理光伏微电网实验室,通信子系统和基于云的智能电网管理系统以及实施细节。接下来,我们将从消息传递服务质量和系统可用性、灵活性和健壮性方面讨论获得的结果。根据消息大小的不同,我们的系统可以在不到1秒的时间内交换遥测和控制消息。最后,概述了经验教训和未来的挑战,包括通信透明度和效率、管理和通信子系统的可伸缩性、与服务质量需求相关的消息严重性的特征,以及其他非技术考虑。
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