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Microcontroller ATmega8535 Based Solar Tracker Design for PV System Applications in Equator Region

机译:基于单片机ATmega8535的赤道地区光伏系统太阳能跟踪器设计

摘要

In order to be effectively utilizing the sunlight energy into electricity, the photovoltaic modules should be perpendicularly to the sunlight direction. However, the orientation of sunlight on Earth???s surface is varied that makes it difficult to find the optimal direction. For this reason, the solar tracker should be available to drive modules in the expected direction. In this study, the solar tracker is designed based on microcontroller ATMega8535 and the position is adjusted based on the IC RTC timer response. The IC RTC is able to regulate the movement of photovoltaic modules about 15 degree per hour. The updating position of PV module is constantly changed, but the approach is enough for capturing sunlight energy for PV applications in equator region. The testing results show that the accumulative energy capturing annually from a 2250 Wp of PV system is about 500 kWh higher than that of without solar tracker.
机译:为了有效地将阳光能量转化为电能,光伏模块应垂直于阳光方向。但是,地球表面上阳光的方向是变化的,这使得很难找到最佳方向。因此,应该可以使用太阳能跟踪器按预期的方向驱动模块。在这项研究中,基于微控制器ATMega8535设计了太阳能跟踪器,并根据IC RTC计时器响应来调整位置。 IC RTC能够以每小时15度左右的速度调节光伏模块的移动。光伏组件的更新位置不断变化,但是这种方法足以捕获赤道区域光伏应用的阳光能量。测试结果表明,每年从2250 Wp的光伏系统中收集的能量要比没有使用太阳能跟踪器的情况下高约500 kWh。

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