Electrical conductivity and pH adjusting system for hydroponics by using linear regression

Theeramet Kaewwiset, T. Yooyativong
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引用次数: 15

Abstract

The purposes of this study were to implement the automatic control EC and pH system in reservoir. The automatic control system operate when get signal output from micro-controller. For micro-controller implement EC and pH adjusting equation that were applied from linear regression. The reason to use linear regression because of in experiment amount of A&B solution or nitric acid that adding to reservoir effect to increasing number of EC or pH in the same direction. For EC and pH adjusting equation use 3 variables are target (output), EC or pH measurement (input), and amount of A&B solution or Nitric acid (control process). Micro-controller compute EC and pH adjusting equation to find amount of A&B solution or Nitric acid that need to fill in reservoir for control EC and pH in range of target. The results of experiment show the system that using EC adjusting equation can control EC accuracy more than 80.8% from experiment. And the pH adjusting equation can control pH accuracy more than 95% from experiment.
基于线性回归的水培电导率和pH调节系统
本研究的目的是在水库中实现EC和pH的自动控制系统。自动控制系统在接收到单片机的信号输出后开始工作。在单片机上实现了由线性回归得到的EC和pH调节方程。采用线性回归的原因是,在实验中,a和b溶液或硝酸的加入量会对EC或pH的增加产生相同方向的影响。对于EC和pH调节方程,使用3个变量是目标(输出),EC或pH测量(输入)和A&B溶液或硝酸的量(控制过程)。微控制器通过计算电解液和pH值调节方程,计算出在控制电解液和pH值的目标范围内,需要填入储液池的a和b溶液或硝酸的量。实验结果表明,采用电导率调节方程的系统可控制电导率精度达80.8%以上。实验结果表明,pH调节方程可控制pH值的准确度在95%以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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