skip to main content
10.1145/3358331.3358393acmotherconferencesArticle/Chapter ViewAbstractPublication PagesaiamConference Proceedingsconference-collections
research-article

Smart Ventilation Control System Using the Microcontroller STM32F030 and Wechat as IoT Solution

Authors Info & Claims
Published:17 October 2019Publication History

ABSTRACT

We usually consider of air pollution as being outdoors, but the air indoors has also been polluted. Indoor air quality problems have caused problems for human body. This paper proposes a smart ventilation control system using the microcontroller STM32F030 and Wechat hardware platform as IoT solution, for air quality monitoring network. With such system, it is possible to monitor the temperature, humidity, particulate matter, formaldehyde, carbon dioxide and so on. The system includes a WiFi device based on TCP/IP, input/output ports used to acquire data from sensors and transmit data to the cloud platform in real time. The AirKiss technology is used to connect the system to the local WiFi device. Each node gets a unique identification from the Wechat hardware platform and all identifications are managed in database. The experimental results illustrate the proposed control system successfully exchanges commands and data over internet networks to Wechat browser.

References

  1. https://www.who.int/whr/2002/en/Google ScholarGoogle Scholar
  2. S. Nuratch, "A universal microcontroller circuit and firmware design and implementation for IoT-based realtime measurement and control applications," 2017 International Electrical Engineering Congress (iEECON), Pattaya, 2017, pp. 1--4.Google ScholarGoogle Scholar
  3. Tan Lu, Wang Neng, Future Internet: The Internet of Things, International Conference on Advanced Computer Theory and Engineering (ICACTE) vol. 5, pp. 376--380, August 2010.Google ScholarGoogle Scholar
  4. V. D. Vaidya and P. Vishwakarma, "A Comparative Analysis on Smart Home System to Control, Monitor and Secure Home, based on technologies like GSM, IOT, Bluetooth and PIC Microcontroller with ZigBee Modulation," 2018 International Conference on Smart City and Emerging Technology (ICSCET), Mumbai, 2018, pp. 1--4.Google ScholarGoogle Scholar
  5. G. R. Deshmukh and U. M. Chaskar, "IoT Enabled System Design for Real-Time Monitoring of ECG Signals Using TIVA C-Series Microcontroller," 2018 Second International Conference on Intelligent Computing and Control Systems (ICICCS), Madurai, India, 2018, pp. 976--979.Google ScholarGoogle Scholar
  6. M. R. Machado, T. R. Júnior, M. R. Silva and J. B. Martins, "Smart Water Management System using the Microcontroller ZR16S08 as IoT Solution," 2019 IEEE 10th Latin American Symposium on Circuits & Systems (LASCAS), Armenia, Colombia, 2019, pp. 169--172.Google ScholarGoogle Scholar
  7. S. Nuratch, "A universal microcontroller circuit and firmware design and implementation for IoT-based realtime measurement and control applications," 2017 International Electrical Engineering Congress (iEECON), Pattaya, 2017, pp. 1--4.Google ScholarGoogle Scholar
  8. L. Nóbrega, A. Tavares, A. Cardoso and P. Gonçalves, "Animal monitoring based on IoT technologies," 2018 IoT Vertical and Topical Summit on Agriculture - Tuscany (IOT Tuscany), Tuscany, 2018, pp. 1--5.Google ScholarGoogle Scholar
  9. W. S. M. Sanjaya et al., "The development of quail eggs smart incubator for hatching system based on microcontroller and Internet of Things (IoT)," 2018 International Conference on Information and Communications Technology (ICOIACT), Yogyakarta, 2018, pp. 407--411.Google ScholarGoogle Scholar
  10. https://wiki.ai-thinker.com/Google ScholarGoogle Scholar

Index Terms

  1. Smart Ventilation Control System Using the Microcontroller STM32F030 and Wechat as IoT Solution

    Recommendations

    Comments

    Login options

    Check if you have access through your login credentials or your institution to get full access on this article.

    Sign in
    • Published in

      cover image ACM Other conferences
      AIAM 2019: Proceedings of the 2019 International Conference on Artificial Intelligence and Advanced Manufacturing
      October 2019
      418 pages
      ISBN:9781450372022
      DOI:10.1145/3358331

      Copyright © 2019 ACM

      Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

      Publisher

      Association for Computing Machinery

      New York, NY, United States

      Publication History

      • Published: 17 October 2019

      Permissions

      Request permissions about this article.

      Request Permissions

      Check for updates

      Qualifiers

      • research-article
      • Research
      • Refereed limited

      Acceptance Rates

      Overall Acceptance Rate100of285submissions,35%
    • Article Metrics

      • Downloads (Last 12 months)10
      • Downloads (Last 6 weeks)0

      Other Metrics

    PDF Format

    View or Download as a PDF file.

    PDF

    eReader

    View online with eReader.

    eReader