Arduino-based PID Control of Humidity in Closed Space by Pulse Width Modulation of AC Voltage

S. Nakamori
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Abstract

My previous work explored a method for constant temperature proportional-integral-derivative (PID) control in a closed space using an Arduino. Similarly, this paper proposes a method of PID control to keep the humidity constant in a closed space using Arduino. PID control by a pulse width modulation (PWM) signal with Arduino is used to keep the humidity constant due to the heat generated by an incandescent light bulb to which an AC voltage of 100 (V) is applied. Here, the humidity is measured using the temperature/humidity sensor DHT11. Specifically, the target value of humidity is set to 30 (%), and the experimental results of P, PD, PI, and PID controls are compared from the points of quick response and stationary performance. As an evaluation of stationary performance, the mean-square value of 1,000 data of the deviation (target value – measured humidity) is calculated, and the PID control is found to be the preferred control.
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基于arduino的交流电压脉宽调制的密闭空间湿度PID控制
我之前的工作探索了一种在封闭空间中使用Arduino进行恒温比例积分导数(PID)控制的方法。同样,本文提出了一种利用Arduino进行PID控制的方法来保持封闭空间的湿度恒定。使用Arduino通过脉宽调制(PWM)信号进行PID控制,通过施加100 V交流电压的白炽灯产生的热量来保持湿度恒定。这里,湿度是使用温湿度传感器DHT11测量的。具体将湿度目标值设定为30(%),从快速响应和平稳性能方面比较P、PD、PI和PID控制的实验结果。作为对平稳性能的评价,计算了偏差(目标值-实测湿度)的1000个数据的均方值,发现PID控制是首选控制。
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