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Developing a Prototype for Sun Tracker System Based on IoT: Controlled by Mobile App and Online Database Monitoring

机译:基于物联网的Sun Tracker系统原型开发:受移动应用程序和在线数据库监控的控制

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IoT (Internet of Things) has become a separate research field since the development of internet technology and other communication media. IoT optimizes several tools such as sensor media radio frequency identification, wireless sensor networks and other smart objects that allow humans to easily interact with all devices connected to the internet network. The purpose of this research is to build an IoT-based solar cell tracker which can be controlled through mobile Apps and the data can be read anywhere as long as there is an internet network. In this research used LDR sensor, DHT11 sensor, Voltage sensor and MPU6050 sensor to optimize the performance of the proposed solar cell tracker system. The control system is built using an Appinventor that allows the system to be controlled via cellular phone from a distance. All sensors will be connected via Arduino and real-time data can be viewed through the Thinger.Io web page using Raspberry and mini LCD. ESP8266 NODE MCU microcontroller is used for a Wi-Fi connection. The results of this study indicate that the voltage value generated by dynamic solar cell tracker is greater than the static solar cell tracker. Dual axis sun tracker devices that are built using four LDRs produce an average voltage of 19.40 Volt when the sunny weather, 18.05 Volt when the cloudy weather and 13.60 Volt when the rainy weather.
机译:自从互联网技术和其他通信媒体的发展以来,物联网(IoT)已经成为一个独立的研究领域。物联网优化了多种工具,例如传感器媒体射频识别,无线传感器网络和其他智能对象,使人类可以轻松地与连接到互联网的所有设备进行交互。这项研究的目的是建立一个基于IoT的太阳能电池跟踪器,该跟踪器可以通过移动应用程序进行控制,并且只要有互联网,就可以在任何地方读取数据。在这项研究中,使用LDR传感器,DHT11传感器,电压传感器和MPU6050传感器来优化所提出的太阳能电池跟踪器系统的性能。该控制系统是使用Appinventor构建的,该Appinventor允许通过手机远程控制系统。所有传感器都将通过Arduino连接,并且可以使用树莓派和微型LCD通过Thinger.Io网页查看实时数据。 ESP8266 NODE MCU微控制器用于Wi-Fi连接。研究结果表明,动态太阳能电池跟踪器产生的电压值大于静态太阳能电池跟踪器。使用四个LDR构建的双轴太阳跟踪器设备在晴天时会产生19.40伏的平均电压,在多云时会产生18.05伏的平均电压,而在阴雨时产生13.60伏的平均电压。

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