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The Implementation and Analysis of Dual Axis Sun Tracker System to Increase Energy Gain of Solar Photovoltaic

机译:双轴太阳跟踪系统提高太阳能光伏发电的实现与分析

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Solar Photovoltaic (SPV) generation system is one of the renewable energy sources that is currently experiencing increased penetration on the grid. Generally, SPV panels are installed at a certain tilted angle. This type of installation has its own drawback such as when the sun's position is behind the SPV panel, the energy produced decreases. To overcome this condition, the SPV panel with the dual axis sun tracker system is designed and implemented. The designed dual axis sun tracker of this research has several main components, such as 4 LDR sensors for detecting the position of the sun and the Arduino microcontroller used to read the measurement from the LDR sensors, processing these measurement data and instructing the actuator to drive the SPV panels at a perpendicular incident angle. The actuator is made from 2 servo motors for each vertical and horizontal axis respectively. It can be seen from the results that the use of dual axis sun tracker is capable to increase the “energy gain” up to 60 %. It is also worth noting that the use of this dual axis sun tracker has a big potential to apply in the tropical region such as Pekanbaru City, Indonesia.
机译:太阳能光伏(SPV)发电系统是可再生能源之一,目前正越来越多地渗透到电网中。通常,SPV面板以一定的倾斜角度安装。这种安装方式有其自身的缺点,例如当太阳的位置在SPV面板的后面时,产生的能量会减少。为了克服这种情况,设计并实现了带有双轴太阳跟踪器系统的SPV面板。本研究设计的双轴太阳跟踪器具有几个主要组件,例如用于检测太阳位置的4个LDR传感器和用于从LDR传感器读取测量值,处理这些测量数据并指示执行器驱动的Arduino微控制器。 SPV面板以垂直入射角入射。执行器由2个伺服电机组成,分别用于垂直轴和水平轴。从结果可以看出,使用双轴太阳跟踪器能够将“能量增益”提高到60%。还值得注意的是,这种双轴太阳追踪器的使用在热带地区(如印度尼西亚北干巴鲁市)上具有很大的潜力。

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