Performance Enhancement of Solar Panel Using Dual Axis Solar Tracker

A. Y. Pratama, Adnan Fauzy, Helvinda Effendi
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引用次数: 7

Abstract

Installation of solar panel in most of solar power plant (off grid and on grid station) using fixed tilt angle. Fixed tilt angle system that implemented on solar power plant is directing solar panel to the sun in certain angle. For the extraction of maximum energy from the sun, the plane of the solar panel should always be normal to the incident radiation. Solar panel installed in a fixed tilt angle facing the sun perpendicularly only for several hours. In this experimental study, dual axis solar tracker (DAST) has been designed and implemented to facing solar panel to the sun perpendicularly. This DAST system is microcontroller-based which using arduino uno as main controller. Light dependent photo resistors (LDR) are used as the sensor of DAST. For rotating the appropriate position, servo motors are used. All experiment output parameters stored in SD card. This DAST system is designed to control the Altitude angle in the vertical plane as well as the Azimuth angle in the horizontal plane of the solar panel workspace. This experimental study shows the output of solar panel using DAST system increase significantly compared to fixed tilt angle solar panel.
利用双轴太阳能跟踪器提高太阳能电池板的性能
大多数太阳能电站(离网和并网电站)采用固定倾角安装太阳能电池板。固定倾角系统是在太阳能电站上实现的一种将太阳能电池板以一定角度朝向太阳的系统。为了从太阳获得最大的能量,太阳能电池板的平面应始终垂直于入射辐射。太阳能电池板安装在一个固定的倾斜角度面对太阳垂直只有几个小时。在实验研究中,设计并实现了双轴太阳跟踪器(DAST),使太阳能电池板垂直朝向太阳。该系统以arduino为主控制器,采用单片机控制。光相关光敏电阻(LDR)被用作DAST的传感器。为了旋转适当的位置,使用伺服电机。所有实验输出参数存储在SD卡中。该DAST系统用于控制太阳能板工作空间的垂直高度角和水平面方位角。实验研究表明,与固定倾角的太阳能电池板相比,采用DAST系统的太阳能电池板的产量显著增加。
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