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Advanced Hybrid Information Processing. 4th EAI International Conference, ADHIP 2020, Binzhou, China, September 26-27, 2020, Proceedings, Part I

Research Article

Design of Temperature Measurement and Control System of Chemical Instrument Based on Internet of Things

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  • @INPROCEEDINGS{10.1007/978-3-030-67871-5_3,
        author={Xiu-hong Meng and Shui Cao and You-hua Zhang and Lin-hai Duan},
        title={Design of Temperature Measurement and Control System of Chemical Instrument Based on Internet of Things},
        proceedings={Advanced Hybrid Information Processing. 4th EAI International Conference, ADHIP 2020, Binzhou, China, September 26-27, 2020, Proceedings, Part I},
        proceedings_a={ADHIP},
        year={2021},
        month={2},
        keywords={Internet of things Temperature measurement and control of chemical instruments Temperature measurement and control system Design of measurement and control system},
        doi={10.1007/978-3-030-67871-5_3}
    }
    
  • Xiu-hong Meng
    Shui Cao
    You-hua Zhang
    Lin-hai Duan
    Year: 2021
    Design of Temperature Measurement and Control System of Chemical Instrument Based on Internet of Things
    ADHIP
    Springer
    DOI: 10.1007/978-3-030-67871-5_3
Xiu-hong Meng1, Shui Cao1, You-hua Zhang1, Lin-hai Duan1,*
  • 1: Guangdong University of Petrochemical Technology
*Contact email: lhduan@126.com

Abstract

The traditional temperature measurement and control system of chemical instruments can not accurately grasp the basic condition of temperature data, resulting in low efficiency of measurement and control. Therefore, a temperature measurement and control system of chemical instruments based on the Internet of things is designed. According to the relevant performance of the hardware components of the system, the system information of the control center is studied, and the correlation of the internal system is studied. Based on this, the command of hardware mode transformation is executed. After the hardware design is realized, the system software design is realized on the premise of hardware data. Combined with the measurement and control algorithm, the measurement and control mode of the center is continuously studied, the data difference between the systems is adjusted, and the contradiction between the measurement and control data is avoided. The experimental results show that the design of chemical instrument temperature measurement and control system based on Internet of things has higher measurement and control efficiency, shorter measurement and control time, and improves the accuracy of measurement and control.

Keywords
Internet of things Temperature measurement and control of chemical instruments Temperature measurement and control system Design of measurement and control system
Published
2021-02-03
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-030-67871-5_3
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