Prototype Development for Solar Energy Tracking Based on Arduino in QUEST Campus Larkana

Abdul Hameed Soomro, SanaUllah Talani, Talha Soomro, Faraz Ali Khushk, Ahmer Ali Bhatti
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Abstract

The utilization of solar energy has become increasingly popular due to its renewable and sustainable nature. However, one of the primary challenges in solar energy harvesting is the optimization of the amount of energy that can be captured from the sun. The implementation of solar trackers is an effective solution that enables the automatic adjustment of the solar panel's position to face the sun throughout the day. In this project, an Arduino-based solar tracker prototype was designed and implemented to optimize the solar energy harvesting process. The system employs Light-Dependent Resistors (LDRs) to detect sunlight intensity and a servo motor to adjust the position of the solar panel accordingly. The system was programmed using the Arduino programming language and was tested using a small-scale solar panel. The increasing demand for cost-effective and easy-to-install renewable energy systems has led to a growing interest in photovoltaic solar energy for residential use. To optimize energy production, a two-axis photovoltaic solar tracker that orients the solar panel toward the maximum solar radiation is proposed in this study. The use of Free Computer Aided Design (CAD) 0.15 for the prototype's design, combined with Arduino technology, provides an affordable solution for mounting the solar tracker on flat roofs and other horizontal building elements. The performance of the solar tracker was evaluated under various testing conditions, showcasing an enhanced level of accuracy and energy production when compared to traditional fixed systems. The prototype's successful demonstration represents a significant advancement in the field, providing a practical solution for small-scale and residential solar energy applications. This research prototype was developed and installed on the roof of the Electrical department of QUEST, Campus Larkana, and validated through simulation results.
拉尔卡纳 QUEST 校区基于 Arduino 的太阳能跟踪原型开发
由于太阳能具有可再生和可持续的特性,它的利用越来越受到人们的欢迎。然而,太阳能收集的主要挑战之一是如何优化从太阳获取的能量。采用太阳能跟踪器是一种有效的解决方案,它可以自动调整太阳能电池板的位置,使其全天都面向太阳。在本项目中,设计并实施了一个基于 Arduino 的太阳能跟踪器原型,以优化太阳能收集过程。该系统采用光敏电阻(LDR)来检测阳光强度,并采用伺服电机来相应地调整太阳能电池板的位置。该系统使用 Arduino 编程语言进行编程,并使用小型太阳能电池板进行了测试。随着人们对成本效益高、易于安装的可再生能源系统的需求日益增长,人们对住宅用光伏太阳能的兴趣也与日俱增。为了优化能源生产,本研究提出了一种双轴光伏太阳能跟踪器,它能使太阳能电池板朝向最大的太阳辐射方向。原型设计使用免费计算机辅助设计(CAD)0.15,并结合 Arduino 技术,为在平屋顶和其他水平建筑构件上安装太阳能跟踪器提供了经济实惠的解决方案。在各种测试条件下对太阳能跟踪器的性能进行了评估,结果表明,与传统的固定式系统相比,太阳能跟踪器的精度和能量生产水平都有所提高。原型的成功展示代表了该领域的重大进步,为小型和住宅太阳能应用提供了实用的解决方案。该研究原型是在拉尔卡纳校区 QUEST 电气系的屋顶上开发和安装的,并通过模拟结果进行了验证。
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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