|本期目录/Table of Contents|

[1]张 维,强 华.基于STM32的智慧农业大棚温湿度监控系统的设计[J].工业仪表与自动化装置,2025,(05):36-41.[doi:10.19950/j.cnki.CN61-1121/TH.2025.05.007]
 ZHANG Wei,QIANG Hua.Design of smart agricultural greenhouse temperature and humidity monitoring system based on STM32[J].Industrial Instrumentation & Automation,2025,(05):36-41.[doi:10.19950/j.cnki.CN61-1121/TH.2025.05.007]
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基于STM32的智慧农业大棚温湿度监控系统的设计(PDF)

《工业仪表与自动化装置》[ISSN:1000-0682/CN:61-1121/TH]

卷:
期数:
2025年05期
页码:
36-41
栏目:
出版日期:
2025-10-15

文章信息/Info

Title:
Design of smart agricultural greenhouse temperature and humidity monitoring system based on STM32
文章编号:
1000-0682(2025)05-0036-06
作者:
张 维12强 华12
1. 陕西工业职业技术学院 电气工程学院,陕西 咸阳 712000; 2. 陕西高校青年创新团队,陕西 咸阳 712000
Author(s):
ZHANG Wei12 QIANG Hua12
1. School of Electrical Engineering, Shaanxi Polytechnic Institute, Shaanxi Xianyang 712000, China; 2. The Youth Innovation Team of Shaanxi Universities, Shaanxi Xianyang 712000,China
关键词:
智慧农业温湿度控制嵌入式PWM控制
Keywords:
smart agriculture temperature and humidity control embedded systemPWM control
分类号:
TP2
DOI:
10.19950/j.cnki.CN61-1121/TH.2025.05.007
文献标志码:
A
摘要:
为解决农业大棚温湿度智能化监测与控制的需求,前沿性地提出了一种基于嵌入式芯片STM32的温湿度监控系统。该系统借助高精度的温湿度传感器DHT11,实现了对大棚内温湿度的精准采集与调控。核心处理器采用STM32单片机,不仅实现数据的高效采集,同时具备智能判断、精细处理、安全存储、直观显示以及即时报警等全方位功能。系统通过蓝牙模块将数据传输至手机端,用户可通过手机随时随地进行实时控制。该设计充分利用了STM32最小系统的优势,并创造性地融入了PWM控制技术以及人性化的人机交互界面。整个系统功能全面且高度集成,结构紧凑而简洁,而且在可靠性与实用性方面表现出色,使智慧农业大棚的温湿度管理便捷与高效。
Abstract:
To meet the demand for intelligent monitoring and control of temperature and humidity in agricultural greenhouses, a cutting-edge temperature and humidity monitoring system based on embedded chip STM32 has been proposed. The system utilizes high-precision temperature and humidity sensor DHT11 to achieve precise collection and control of temperature and humidity inside the greenhouse. The core processor adopts STM32 microcontroller, which not only achieves efficient data acquisition, but also has comprehensive functions such as intelligent judgment, fine processing, secure storage, intuitive display, and instant alarm. The system can transmit data to the mobile phone through a Bluetooth module, allowing users to control it in real-time anytime and anywhere through their phone. This design fully utilizes the advantages of the STM32 minimal system and creatively integrates PWM control technology and a user-friendly human-computer interaction interface. The entire system is not only fully functional and highly integrated, with a compact and simple structure, but also performs well in reliability and practicality, Make the temperature and humidity management of smart agricultural greenhouses convenient and efficient.

参考文献/References:

[1] 张翼飞,李志伟,王冰,等.农业大棚环境控制系统设计[J].机械工程与自动化,2024,10(05):174-176.

[2] 张航,潘禹城,张照芳,等.基于STM32单片机的智能加湿器设计[J].科学技术创新,2024,19(19):103-106.
[3] 王洪丽.基于STC12C5A60S2的温湿度控制系统设计[J].福建轻纺,2024(08):42-46.
[4] 赫英凤,周甜,史良玉,等.基于STM32的智能风扇系统设计[J].电工技术, 2024(13):124-126.
[5] 张子瑜.一种室内温湿度无线实时监控设计[J].河北农机, 2019 (12): 100.
[6] Jacek Le?nikowski. Effect of temperature and humidity on the transmission properties of textile signal lines[J].The Journal of The Textile Institute,2020(3):604-610.
[7] 宋毫.基于WiFi的分布式无线数据采集系统研究与实现[D].西安:西安理工大学, 2018.
[8] Das Anthony V, Basu Sayan. Epidemic Keratoconjunctivitis in India:Trend Analysis and Implications for Viral Outbreaks[J]. Indian journal of ophthalmology, 2020(4):732-736.
[9] 李志勇.基于对角矩阵的温湿度模糊解耦控制系统的研究[D].石家庄:石家庄铁道大学, 2018.
[10] 孙万里,姚维.基于STM32的电机环境监测系统的设计与实现[J].工程控制计算机,2019(11):154-155.
[11] 王玉,岳雅琪,孙悦.无线数显温湿度控制系统设计[J].中国新技术新产品, 2017(7):4-5.
[12] 吴长茂.一种基于无线局域网络的温湿度采集监控系统[J].中国战略新兴产业, 2018(2):80-81.
[13] 郭纪良.粮仓无线传感网温湿度控制系统探讨[J].中国设备工程, 2018(1):133-134.
[14] Md Aminul Islam,Atsuo Ikeguchi,Takanori Naide.Influence of?temperature and humidity?on the dynamics of aerosol numbers and airborne bacteria in a dairy calf house[J]. Biosystems Engineering, 2020(4): 213-226.
[15] 曹佳璐,余宝莲,邵佳慧,等.基于STM32的智能风扇控制系统设计[J].中国新通信, 2022(4):9-11.

相似文献/References:

[1]柴西林,张 婧,邵照勇,等.基于无线传感网及边缘网关的智慧农业大棚监控系统设计[J].工业仪表与自动化装置,2024,(01):13.[doi:DOI:10.19950/j.cnki.CN61-1121/TH.2024.01.003]
 CHAI Xilin,ZHANG Jing,SHAO Zhaoyong,et al.Design of smart agricultural greenhouse monitoring system based on wireless sensor network and edge gateway[J].Industrial Instrumentation & Automation,2024,(05):13.[doi:DOI:10.19950/j.cnki.CN61-1121/TH.2024.01.003]

备注/Memo

备注/Memo:
收稿日期:2025-01-22基金项目:陕西省自然科学基础研究计划项目(2022JM-388);机械工业发展中心项目(JXHYZD2024006);陕西省青年创新团队项目,(24JP013)《基于深度学习的双目立体视觉成像系统研究》。第一作者:张维(1986—),工学硕士,副教授,研究方向为电力电子技术、过程控制技术及自动化控制系统设计。E-mail:278974280@qq.com
更新日期/Last Update: 1900-01-01