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Optimization of PV Power Output Using Single-Axis Sun Light Tracker and MPPT Algorithm

机译:使用单轴SUN光跟踪器和MPPT算法优化PV功率输出

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The growth of global energy consumption and the depletion of the non-renewable recourses had caused many environment issues. These environmental issues and the demand of global energy had driven up the implementation of solar energy. The optimization of PV power output can be achieved using solar tracking and MPPT algorithm. Comparison of power output had been made with a system that does not have solar tracking to show the improvements made using a single axis solar tracking system. Power of 100 W solar tracker and two 50 W stationary panels connected in parallel. The values of the resistors of 4 and 8 Ω have been chosen based on the solar panels R characteristics. The system consists of three (3) important parts, software hardware, and electronic circuits. DC motor is used to rotate the solar PV panel (100 W) and Two (2) light dependent resistors (LDR) were used as light detectors. Solar tracker and stationary panels facing the East-West direction at University of Wollongon Malaysia KDU, Glenmarie Campus at the coordinates (3.092008, 101.559373). Two prototypes are built for data collection based on Arduino Mega 2560. An increase of 35-40% in power output compared to fixed rooftop installation.
机译:全球能源消耗的增长和不可再生资源的消耗造成了许多环境问题。这些环境问题和全球能源的需求推动了太阳能的实施。使用太阳能跟踪和MPPT算法,可以实现PV功率输出的优化。通过不具有太阳能跟踪的系统进行了功率输出的比较,以显示使用单轴太阳能跟踪系统进行的改进。 100 W太阳能跟踪器的功率和两个50 W固定面板并联连接。已经基于太阳能电池板R特性选择了4和8Ω的电阻器的值。该系统由三(3)个重要的部件,软件硬件和电子电路组成。 DC电动机用于旋转太阳能光伏面板(100W),两(2)个光相关电阻(LDR)用作光检测器。太阳能跟踪器和固定板面向威尔吞隆大学的东西方向,马来西亚KDU,格林马利校区坐标(3.092008,101.559373)。基于Arduino Mega 2560的数据收集构建了两个原型。与固定的屋顶安装相比,电源输出增加35-40%。

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