Home Energy Management and Monitoring Using Ubidots Platform

N. Mohammed, Nasir Hussein Selman
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引用次数: 8

Abstract

This paper introduces a practical design for home energy management and monitoring. It has been assumed that the home has a 12 VDC power source and with variable generation power. The virtual house has loads that consisting of four lamps, each with a power of 10 watts and operated on 12VDC. The home can be operated in two modes. The first mode is the grid-tied mode, in which the energy is imported or exported the power to/from the grid depending on whether the home source generation power is greater than or less than its load. The second mode is called the island mode, in which the home depends on its power supply to feed its loads with the required power. The transition between the two operating modes of the home is controlled fully by the Arduino UNO microcontroller according to the main grid status and home status (generation and load demand). The assumption that was set in the designed system is that the maximum current that a home source can supply is 3A. Therefore, when the current that a home needs is more than this value,  it imports energy from the main grid and less than that value, it exports energy to the grid. The data of the grid voltage and load current of the home were transferred by the Arduino UNO microcontroller to the Node MCU using RF (HC-12) module. The cases of the main grid and the home power source are monitored in real-time using the Ubidots platform. These cases data raised to the Ubidots platform by using the Wi-Fi- ESP8266 included in the Node MCU board. All cases were tested in practice and the Ubidots platform showed a quick response in updating the data as well as its security
使用Ubidots平台的家庭能源管理和监控
本文介绍了一种家庭能源管理与监控的实用设计。假设家庭有一个12伏直流电源和可变的发电功率。虚拟房屋的负载由四个灯组成,每个灯的功率为10瓦,使用12VDC供电。家庭可以在两种模式下操作。第一种方式是并网方式,即根据本源发电功率大于或小于其负荷,向电网输入或输出电力。第二种模式被称为孤岛模式,在这种模式下,家庭依靠其电源为其负载提供所需的电力。家庭两种工作模式之间的切换,完全由Arduino UNO微控制器根据主电网状态和家庭状态(发电和负荷需求)进行控制。在设计的系统中设置的假设是,主电源可以提供的最大电流为3A。因此,当一个家庭所需的电流大于这个值时,它从主电网输入能量,小于这个值时,它向电网输出能量。通过Arduino UNO微控制器使用RF (HC-12)模块将家中电网电压和负载电流数据传输到Node MCU。使用Ubidots平台对主电网和家庭电源的情况进行实时监控。这些案例数据通过Node MCU板中包含的Wi-Fi- ESP8266提升到Ubidots平台。所有案例都经过了实际测试,Ubidots平台在数据更新和安全性方面反应迅速
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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