Laboratory Reactor Monitoring System Based on IoT

Authors

  • Xinbo Yang
  • Dazhi Yang
  • Yuxing Wang

DOI:

https://doi.org/10.54097/w4182n55

Keywords:

Laboratory reactor, stm32f407, Onenet cloud platform.

Abstract

 In response to the limitations of existing laboratory reaction vessels, such as the lack of remote monitoring and low level of intelligence, a laboratory reaction vessel monitoring system based on the Internet of Things (IoT) is designed. This monitoring system utilizes a controller with the STM32F407 chip as its core to collect and control the temperature and motor parameters of the reaction vessel. Data exchange with the OneNET cloud platform is facilitated through a WiFi communication module. The remote monitoring terminal establishes a WiFi connection with the OneNET cloud platform, enabling real-time data and command transmission with the STM32F407 controller. Experimental results demonstrate that the system can effectively achieve real-time remote monitoring of the reaction vessel’s operational status, meeting the expected objectives.

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References

Huai Chaolei. Optimization of Reactor Temperature Control Parameters and PLC Control System [D]. Hebei University of Science and Technology, 2020.

Wang, Huaqiang, and Xu, Qiutian. Remote Monitoring System for PET Reactor Based on IoT and Cloud Platform. [J]. Instrumentation Technology and Sensors, 2016(12):79-82.

Li, Liangjing, Zhang, Xueqin, and Liu, Huabo. Design of Energy-saving Constant Temperature Control System Based on USART-HMI Smart Serial Screen. [J]. Manufacturing Automation, 2021, 43(09): 140-143.

Zhang, Qilong, and Chen, Xiangping. Smart Home System with OneNET Cloud Platform and WiFi Remote Control. [J]. Modern Electronics Technique, 2020, 43(14): 25-29.

Li, Wenqin, Zhong, Yimin, and Fang, Ting. Design of High-precision Monitoring System for Furnace Wall Water Temperature Difference Based on MAX31865. [J]. Journal of Lanzhou University of Technology, 2020, 27(06): 62-66.

Wang, Huaqiang, and Fan, Xianwen. Optimal Design of Brushless Motor Speed Control System Based on PID Algorithm. [J]. Manufacturing Automation, 2022, 44(07): 110-112+144.

Liu, Zhongchao, and Fan, Lingyan. Design of Cow Pedometer System Based on STM32 and OneNet Cloud Platform. [J]. Transactions of the Chinese Society of Agricultural Machinery, 2022, 43(07): 31-35.

Liu, Zhongchao, Ding, Qianhua, Fan, Lingyan, et al. Design of Cow Body Temperature Monitoring System Based on WiFi and Cloud Platform. [J]. Heilongjiang Animal Husbandry & Veterinary Medicine, 2022(08): 55-59.

Feng, Dongdong, Wang, Juan, Zhu, Jiajun, et al. Development of Cattle Farming Environmental Monitoring System Based on Internet of Things. [J]. Journal of Hebei Agricultural University, 2023, 46(01): 103-109.

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Published

28-12-2023

Issue

Section

Articles

How to Cite

Yang, X., Yang, D., & Wang, Y. (2023). Laboratory Reactor Monitoring System Based on IoT. Academic Journal of Science and Technology, 8(3), 14-18. https://doi.org/10.54097/w4182n55