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An energy management platform for micro-grid systems using Internet of Things and Big-data technologies

机译:使用物联网和大数据技术的微电网系统能源管理平台

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摘要

Micro-grid systems have been recently emerged for efficient integration and management of renewable energy sources, buildings' equipment (e.g. ventilation; lighting; heating, ventilation, and air conditioning), and energy storage devices. The intermittent nature of the produced electricity from renewable energy sources constitutes, however, the main challenge for their seamless integration into buildings. Recent studies stated that storage devices, despite their actual high cost, could be used to tackle this issue by balancing between the variability of renewable energy sources production and the unpredictable building's occupancy. However, managing the power flows in micro-grid systems is highly required in order to minimize the consumption from the electric grid while ensuring the quality and the reliability of electrical services. In this article, a micro-grid system platform is introduced for efficient integration and management of renewable energy sources and storage devices. The platform's architecture is composed of three main components: (a) the power generation components that integrate the renewable energy sources together with the storage devices and the traditional electrical grid, (b) an advanced metering component for data gathering and analysis, and (c) control services for power flow management. The platform was developed and deployed in a real-setting scenario. Simulations and experimentations have been performed and results show the usefulness of the proposed platform for efficient management of the deployed micro-grid system.
机译:最近出现了微电网系统,用于高效集成和管理可再生能源,建筑物的设备(例如通风,照明,供暖,通风和空调)和储能设备。然而,由可再生能源产生的电力的间歇性构成了将其无缝集成到建筑物中的主要挑战。最近的研究表明,尽管存储设备的实际成本很高,但可以通过平衡可再生能源生产的可变性和不可预测的建筑物占用率来解决该问题。但是,在确保电力服务的质量和可靠性的同时,迫切需要管理微电网系统中的功率流,以最大程度地减少电网的能耗。在本文中,引入了微电网系统平台,可有效集成和管理可再生能源和存储设备。该平台的体系结构由三个主要组件组成:(a)将可再生能源与存储设备和传统电网整合在一起的发电组件;(b)用于数据收集和分析的高级计量组件;以及(c) )用于潮流管理的控制服务。该平台是根据实际情况开发和部署的。已经进行了仿真和实验,结果表明了所提出的平台对已部署微电网系统的有效管理的有用性。

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