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首页> 外文期刊>International Journal of Power Electronics and Drive Systems >Dual axis solar tracker with IoT monitoring system using arduino
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Dual axis solar tracker with IoT monitoring system using arduino

机译:双轴太阳能跟踪器,具有使用Arduino的IoT监控系统

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This project aims to develop dual axis solar tracker with IOT monitoring system using Arduino. Generally, solar energy is the technology to get useful energy from sunlight. Solar energy has been used in many traditional technologies over the centuries and has been widely used in the absence of other energy supplies. Its usefulness is widespread when awareness of the cost of the environment and the supply is limited by other energy sources such as fuel. The solar tracking system is the most effective technology to improve the efficiency of solar panels by tracking and following the sun's movement. With the help of this system, solar panels can improve the way of sunlight detection so that more electricity can be collected as solar panels can maintain a sunny position. Thus the project discusses the development of two-axis solar-tracking developers using Arduino Uno as main controller the system. For develops this project, four light-dependent resistors (LDRs) have been used for sunlight detection and a maximum light intensity. Two servo motors have been used to rotate the solar panel according to the sun's light source detected by the LDR. Next a WIFI ESP8266 device is used as an intermediary between device and IOT monitoring system. The IOT monitoring system is a website that functions to store data. The efficiency of this system has been tested and compared with a single axial solar tracker. As a result, the two-axis solar tracking system generates more power, voltage and current.
机译:该项目旨在使用Arduino使用IoT监控系统开发双轴太阳能跟踪器。通常,太阳能是从阳光下获得有用能量的技术。在多个世纪以来,太阳能已在许多传统技术中使用,并且已广泛用于其他能源供应。当认识到环境成本和供应的意识时,其有用性是普遍的,供应受到燃料等其他能源的限制。太阳能跟踪系统是通过跟踪和落后太阳运动来提高太阳能电池板效率的最有效技术。在该系统的帮助下,太阳能电池板可以提高阳光检测方式,从而可以收集更多的电力,因为太阳能电池板可以保持阳光明媚的位置。因此,该项目讨论了使用Arduino Uno作为系统的主控制器的双轴太阳能跟踪开发人员的开发。对于开发该项目,已经使用了四个光依赖性电阻(LDR)进行阳光检测和最大光强度。两种伺服电机已被用于根据LDR检测到的太阳光源旋转太阳能电池板。接下来,WiFiESP8266设备用作设备和物联网监控系统之间的中介。物联网监控系统是一个用于存储数据的网站。已经测试了该系统的效率,并与单轴太阳能跟踪器进行了测试。结果,双轴太阳能跟踪系统产生更多电源,电压和电流。

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