Internet of Energy Applied to Water Hydrokinetic Smart-Grids: A Test Rig Example

A. Gharib-Yosry, A. Fernández-Jiménez, Víctor Manuel Fernandez Pacheco, M. Rico-Secades
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Abstract

The internet of things is a novel concept with many applications, one of them is the management of energy in smart power systems, which is known as the Internet of Energy (IoE). This research presents an autonomous system — based on IoE concept — for monitoring and controlling a water supply network using a renewable power generation set formed by a hydrokinetic vertical-axis turbine and a solar panel module. Different sensors that collect water quality and quantity data along with actuator devices are also equipped and interconnected through a low bandwidth Message Queuing Telemetry Transport (MQTT) protocol. Experimental tests have been carried out under laboratory scale conditions to check the working validity of the energy generating system with the proposed IoE structure in a water flume under low flow velocity conditions. An excellent test loop is available for various predictive maintenance and troubleshooting tasks using a novel IoE philosophy. Two communication tests through the MQTT protocol have been carried out successfully, since all the sensors were able to send the information correctly in real time. The power status of the turbine and batteries have been also monitored. The system was able to send orders to the actuators, which will allow a full control of the operating devices in the remote smart grid locations.
能源互联网在水动力智能电网中的应用:一个试验台实例
物联网是一个具有许多应用的新概念,其中之一是智能电力系统中的能源管理,即所谓的能源互联网(IoE)。本研究提出了一个基于IoE概念的自主系统,用于监测和控制供水网络,该系统使用由水动力垂直轴涡轮机和太阳能电池板模块组成的可再生发电机组。还配备了不同的传感器,用于收集水质和水量数据以及执行器设备,并通过低带宽消息队列遥测传输(MQTT)协议进行连接。在实验室规模的条件下进行了实验测试,以验证采用所提出的水水槽IoE结构的发电系统在低流速条件下的工作有效性。使用新颖的物联网理念,可为各种预测性维护和故障排除任务提供出色的测试循环。通过MQTT协议成功地进行了两次通信测试,因为所有传感器都能够正确地实时发送信息。涡轮机和电池的电力状态也已被监测。该系统能够向执行器发送指令,这将允许在远程智能电网位置完全控制操作设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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