Real Time Clock Sebagai Tracking Sinar Matahari Pada Solar Cell Berbasis Mikrokontroler Untuk Lampu Taman

M. Qomaruddin, Matlubul Khairi
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引用次数: 7

Abstract

One of the new and renewable energy is the utilization of sunlight into electricity. which can be used to be converted into electrical energy using solar panels. Installation of solar panels that are installed for garden lights so far are often still placed in a static position (silent) at an angle of 90⁰, while the sun moves from sunrise to sunset. Because it will cause maximum energy absorption in solar panels placed in a static position only at12:00. To overcome this problem a system is needed to track the position of the sun so that it is always perpendicular to the surface of the solar panel. Design and build Garden lights with a solar light tracking system on a microcontroller-based solar panel will later be made to move as it follows the direction of the sun's movement every hour, from sunrise to sunset. This tool will detect the time setting inputted by Real Time Clock (RTC) which is then processed by a microcontroller to drive a servo motor that functions as a solar panel drive machine so that the position of the solar panel will always be perpendicular to the sun throughout the day and the absorption of energy in the solar panel will more leverage. From the results of tests that have been done, the increase in the voltage of solar panels using a tracking system compared to solar panels without using a tracking system is 7.85%.
实时时钟作为太阳能电池微控制器对园灯的实时跟踪
新能源和可再生能源之一是利用阳光转化为电能。它可以通过太阳能电池板转化为电能。到目前为止,安装在花园灯上的太阳能电池板通常仍然以90⁰的角度放置在静态位置(无声),而太阳从日出移动到日落。因为只有在12:00时太阳能板处于静态位置才会引起最大的能量吸收。为了克服这个问题,需要一个系统来跟踪太阳的位置,使它始终垂直于太阳能电池板的表面。设计和建造带有太阳能跟踪系统的花园灯,该系统安装在基于微控制器的太阳能电池板上,随后将使花园灯每小时从日出到日落跟随太阳运动的方向移动。该工具将检测实时时钟(RTC)输入的时间设置,然后由微控制器处理,驱动作为太阳能电池板驱动机的伺服电机,使太阳能电池板的位置始终垂直于太阳一整天,太阳能电池板中的能量吸收将更有杠杆作用。从已经完成的测试结果来看,与未使用跟踪系统的太阳能电池板相比,使用跟踪系统的太阳能电池板的电压增加了7.85%。
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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