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IoT-Based Monitoring and Control Systems for Window Energy Management: Design and Implementation

机译:基于IOT的窗口能源管理监控系统:设计与实现

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This paper presents the design and implementation of an IoT-based system for window energy management. The system computes thermal trans-mittances of window units and solar heat gain coefficients through window units from measured sensor readings. It is critical to have energy efficient windows in homes and offices so as to conserve energy. In order to test the performance of the window units in realistic environments we created a system which can be used outdoors at any time. It is convenient for a user to control the system and access the measured data from a remote or even mobile site. The goal of this work was to design and implement a system that measures sensor data, transmits the data over a wireless communication link, distributes the data through the Internet, and stores the data in a database for analysis at any time and anywhere. The IoT is a computer network, in which anyone and anything can connect together anytime and anywhere [1]. It is realizable through sensing and communication technologies [2]. The IoT approach was adopted to achieve our goal due to the availability of sensing technology, wireless communication technologies, and standard computer networking protocols. We designed and implemented a system for calculating the thermal energy related parameters of the window units. The measured data from sensors were transmitted to a cloud server over cellular networks and the Internet. The data in the server can be accessed, stored, and displayed remotely. As long as electricity and cellular phone networks are available, the system can connect sensors to users. Extensive testing was conducted to verify the operation of the system. The testing and measurement results show that the system successfully performs the necessary operations to achieve the goal.
机译:本文介绍了基于IOT的窗口能源管理系统的设计和实现。该系统通过从测量的传感器读数计算窗口单元和太阳能热增益系数的热跨界轨道。在家庭和办公室里有能量有效的窗户至关重要,以节省能量。为了测试窗口单元在现实环境中的性能,我们创建了一个可以随时使用的系统。用户可以方便地控制系统并从遥控器甚至移动站点访问测量的数据。这项工作的目标是设计和实现测量传感器数据的系统,通过无线通信链路发送数据,通过互联网分发数据,并在任何时间和任何地方存储数据库中的数据以进行分析。 IOT是一个计算机网络,其中任何人都可以随时随地连接在一起[1]。通过传感和通信技术可实现它[2]。由于传感技术,无线通信技术和标准计算机网络协议的可用性,采用了IOT方法来实现我们的目标。我们设计并实现了一种用于计算窗口单元的热能相关参数的系统。来自传感器的测量数据通过蜂窝网络和互联网传输到云服务器。可以远程访问,存储和显示服务器中的数据。只要电力和蜂窝电话网络可用,系统就可以将传感器连接到用户。进行了广泛的测试以验证系统的操作。测试和测量结果表明,该系统成功执行必要的操作以实现目标。

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