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Dual-axis solar tracking system based on fuzzy logic control and Light Dependent Resistors as feedback path elements

机译:基于模糊逻辑控制和光敏电阻作为反馈路径元素的双轴太阳跟踪系统

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摘要

The power generated by solar panels is mainly influenced by the intensity of solar irradiance. This project utilized dual-axis solar tracking based on light intensity comparison with a fuzzy logic intelligent method. The hardware system consists of an Arduino UNO microcontroller as the main controller and four Light Dependent Resistor (LDR) sensors for sensing the maximum incident intensity of solar irradiance. Initially, two power window motors (one for the horizontal axis and the other for the vertical axis) coordinate and alternately rotate to scan the position of the sun. The mechanism of each axis movement is based on a power window motor which is controlled by a fuzzy logic controller system that moves according to the inputs received from the LDR sensors. The fuzzy logic controller helps the microcontroller to give the best inference concerning the direction to which the solar PV panel should rotate and the position in which it should stay. In conclusion, the solar tracking system delivers high efficiency of output power with a low power intake while it operates.
机译:太阳能电池板产生的功率主要受太阳辐射强度的影响。该项目利用基于光强比较的双轴太阳跟踪和模糊逻辑智能方法。硬件系统由一个Arduino UNO微控制器作为主控制器和四个用于检测太阳辐射最大入射强度的光敏电阻(LDR)传感器组成。最初,两个电动窗电机(一个用于水平轴,另一个用于垂直轴)协调并交替旋转以扫描太阳的位置。每个轴移动的机制均基于电动窗电机,该电动窗电机由模糊逻辑控制器系统控制,该模糊逻辑控制器系统根据从LDR传感器接收到的输入进行移动。模糊逻辑控制器可帮助微控制器对太阳能光伏板旋转的方向以及其停留位置进行最佳推断。总而言之,太阳能跟踪系统在运行时可提供高效率的输出功率,而功率消耗却较低。

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