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首页> 外文期刊>Advances in Mechanical Engineering >Optimization Controller for Mechatronic Sun Tracking System to Improve Performance
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Optimization Controller for Mechatronic Sun Tracking System to Improve Performance

机译:机电一体化太阳跟踪系统的优化控制器,可提高性能

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摘要

An embedded system that contains hardware and software was developed for two-axis solar tracking system to improve photovoltaic panel utilization. The hardware section of the embedded system consists of a 32-bit ARM core microcontroller, motor driver circuits, a motion control unit, pyranometer, GPS receiver, and an anemometer. The real-time control algorithm enables the solar tracker to operate automatically without external control as a stand-alone system, combining the advantages of the open-loop and the closed-loop control methods. The pyranometer is employed to continuously send radiation data to the controller if the measured radiation is above the lower radiation limit the photovoltaic panel can generate power, guaranteeing the solar tracking process to be highly efficient. The anemometer is utilized in the system to ensure that the solar tracking procedure halts under high wind speed conditions to protect the entire system. Latitude, longitude, altitude, date, and real-time clock data are provided by GPS receiver. The algorithm calculates solar time using astronomical equations with GPS data and converts it to pulse-width modulated motor control signal. The overall objective of this study is to develop a control algorithm that improves performance and reliability of the two-axis solar tracker, focusing on optimization of the controller board, drive hardware, and software.
机译:开发了包含硬件和软件的嵌入式系统,用于两轴太阳能跟踪系统,以提高光伏面板的利用率。嵌入式系统的硬件部分包括一个32位ARM内核微控制器,电机驱动器电路,运动控制单元,日射强度计,GPS接收器和风速计。结合了开环和闭环控制方法的优点,实时控制算法使太阳能跟踪器可以作为独立系统自动运行,而无需外部控制。如果测得的辐射高于辐射下限,光伏面板可以使用总辐射表将辐射数据连续发送到控制器,光伏面板可以发电,从而确保太阳能跟踪过程高效。系统中使用了风速计,以确保太阳跟踪程序在高风速条件下停止以保护整个系统。 GPS接收机提供纬度,经度,高度,日期和实时时钟数据。该算法使用具有GPS数据的天文方程式来计算太阳时间,并将其转换为脉宽调制的电动机控制信号。这项研究的总体目标是开发一种控制算法,以提高两轴太阳能跟踪器的性能和可靠性,重点在于优化控制器板,驱动器硬件和软件。

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