Intelligent Ventilation Management System of Laboratory Based on Fuzzy Logic

Wei Zhou, Ziqi Zeng, Shijie Bao
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Abstract

During the period of regular epidemic prevention, reasonable ventilation management can reduce the probability of virus infection. In the paper, the STM32F429 microcontroller is used as the control center of the whole system, and the AP6181 chip is used to obtain the local weather conditions of the network API, and a screw-based window switch actuator is designed. To comprehensively consider the ventilation requirements and the human comfort which influenced by temperature and humidity, the fuzzy logic algorithm is used to make control strategies, and the system can also be remotely controlled through new designed mobile APP, which realizes the intelligent management of the laboratory ventilation system. In this paper, the simulated windows are tested. The results show that the communication success rate of the system is 96%, and the movement error of the actuator is 5mm, which can meet the requirements of laboratory ventilation system.
基于模糊逻辑的实验室智能通风管理系统
在定期防疫期间,合理的通风管理可以降低病毒感染的概率。本文采用STM32F429单片机作为整个系统的控制中心,采用AP6181芯片获取当地天气情况的网络API,并设计了一种基于螺旋的窗口开关执行器。综合考虑温湿度对通风要求和人体舒适度的影响,采用模糊逻辑算法制定控制策略,并可通过新设计的手机APP对系统进行远程控制,实现实验室通风系统的智能化管理。本文对模拟窗口进行了测试。结果表明,该系统的通信成功率为96%,执行器的运动误差为5mm,可以满足实验室通风系统的要求。
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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