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Design and Implementation of a Solar Energy Measurement and Monitoring System

机译:太阳能测量与监控系统的设计与实现

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One of the challenges of unsatisfactory performance of solar powered equipment in Nigeria is the importation of substandard solar panels which in turns give rise to improper rating of the solar panels. Some of the equipment manufacturers are known for labeling the solar panels with arbitrary ratings in other to sell and make profit. Since the solar powered equipment depends on the Sun for its energy, there is need to monitor and measure the solar panel parameters like voltage, current, light intensity and temperature. This is necessary to confirm if the solar panel is performing to expectation and giving good readings. This work aims at developing a Solar Energy Measurement System that will aid in the measurement and monitoring of solar panel parameters like voltage, current, light intensity and temperature. The design work is divided into two main parts, hardware and software sections. The hardware involves the development of major units like the power supply unit, the control unit and the sensor units of the entire project by using solid state electronic components, integrated circuits and microcontroller. The software design involves the development of a program using C programming language to enable the arduino microcontroller to function and perform as desired. The basic inputs to the system are the sensor units. They sense the required variable that is to be measured and the measured values are then displayed. The results obtained from the display unit are then compared with the manufacturer's values that are found on the solar panel. It is observed that there are slight differences between the measured and the manufacturer's values, but still within a tolerable range (less than 5%).
机译:在尼日利亚,太阳能设备的性能不能令人满意的挑战之一是进口不合格的太阳能电池板,这反过来又导致了太阳能电池板的等级不当。一些设备制造商以在太阳能电池板上贴上任意等级的标签来闻名,以出售和获利。由于太阳能设备的能量取决于太阳,因此需要监视和测量太阳能电池板的参数,例如电压,电流,光强度和温度。这对于确认太阳能电池板是否达到预期效果并提供良好的读数非常有必要。这项工作旨在开发一个太阳能测量系统,该系统将有助于测量和监视太阳能电池板的参数,例如电压,电流,光强度和温度。设计工作分为两个主要部分,硬件和软件部分。硬件涉及使用固态电子元件,集成电路和微控制器来开发整个项目的主要单元,例如电源单元,控制单元和传感器单元。软件设计涉及使用C编程语言开发程序,以使arduino微控制器能够按需运行和执行。系统的基本输入是传感器单元。他们感测到需要测量的变量,然后显示测量值。然后,将从人机界面获得的结果与在太阳能板上找到的制造商的值进行比较。可以看出,测量值和制造商的值之间存在细微的差异,但仍在可容忍的范围内(小于5%)。

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