[go: up one dir, main page]
More Web Proxy on the site http://driver.im/ skip to main content
10.1145/3548608.3559216acmotherconferencesArticle/Chapter ViewAbstractPublication PagesiccirConference Proceedingsconference-collections
research-article

Application of genetic fuzzy Smith PID in water pressure control of dry fog dust removal

Published: 14 October 2022 Publication History

Abstract

The stability of water pressure is a considerable part of ultrasound dry dust removal, which greatly affects dust removal efficiency. The current hydraulic control system generally adopts fuzzy PID control combined with the fuzzy control algorithm and the PID algorithm, but the effect of fuzzy control depends greatly from expert experience, in which the proportional factors in the blur controller Kp, Ki, Kd and quantification After the factor Ke, Kec settings cannot be dynamically changed as the error changes, and dynamic adaptability is lacking. This paper uses genetic algorithm to optimize the above factor, and incorporate the SMITH estimation control algorithm, apply MATLAB to simulate. The simulation results show that the fuzzy PID control after the optimization of genetic algorithm is more excellent in response speed, overshoot control, steady state time.

References

[1]
Shan Rui. Fully promote the prevention and control of air pollution and continuously improve the air quality in our region [N].Huaxing times, November 26, 2021 (003).
[2]
Chen Qingfeng.Application of dry fog dust suppression in dust control of iron and steel plant [J].Comprehensive utilization of resources in China, 2021,39 (08): 175-178.
[3]
You Yi.Application of dry fog dust reduction technology in high pass of underground mine [J]. Nonferrous Metals (mine part), 2021,73 (02): 110-114 + 134.
[4]
Xu Yun, Kang Xuhui, Liu Ye, Fu huansen, Zhang Yifei.Research on variable frequency constant pressure water supply system based on PLC Fuzzy PID control [J].Industrial control computer, 2021,34 (10): 130-131.
[5]
Fan Zirong.Application of fuzzy PID control in variable frequency constant pressure water supply system [J].Electric drive automation, 2020,42 (03): 26-29.
[6]
Yin Chao, Li Maojun, Zhang Jing.PID fuzzy control of pure delay system [J].Industrial control computer, 2013,26 (01): 41-42 + 44.
[7]
Yu Zhe, Wang Zhiguo, Liu Fei.Optimization of fuzzy internal model PID controller based on genetic algorithm [J].Chemical automation and instrumentation, 2020,47 (04): 294-298 + 321.
[8]
Wang Tingting, Wang Hongzhi, Liu Qingxue, Hu Huangshui, Wang chuhang.Design of fuzzy PID controller for brushless DC motor optimized by genetic algorithm [J].Journal of Jilin University (SCIENCE EDITION), 2020,58 (06): 1421-1428.
[9]
Zeng Minghai, Guan Fei.Research on control algorithm of variable frequency constant pressure water supply system based on Fuzzy PID [J]. Times agricultural machinery, 2019,46 (08): 45-46.
  1. Application of genetic fuzzy Smith PID in water pressure control of dry fog dust removal

    Recommendations

    Comments

    Please enable JavaScript to view thecomments powered by Disqus.

    Information & Contributors

    Information

    Published In

    cover image ACM Other conferences
    ICCIR '22: Proceedings of the 2022 2nd International Conference on Control and Intelligent Robotics
    June 2022
    905 pages
    ISBN:9781450397179
    DOI:10.1145/3548608
    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: 14 October 2022

    Permissions

    Request permissions for this article.

    Check for updates

    Qualifiers

    • Research-article
    • Research
    • Refereed limited

    Conference

    ICCIR 2022

    Acceptance Rates

    Overall Acceptance Rate 131 of 239 submissions, 55%

    Contributors

    Other Metrics

    Bibliometrics & Citations

    Bibliometrics

    Article Metrics

    • 0
      Total Citations
    • 14
      Total Downloads
    • Downloads (Last 12 months)2
    • Downloads (Last 6 weeks)1
    Reflects downloads up to 15 Jan 2025

    Other Metrics

    Citations

    View Options

    Login options

    View options

    PDF

    View or Download as a PDF file.

    PDF

    eReader

    View online with eReader.

    eReader

    HTML Format

    View this article in HTML Format.

    HTML Format

    Media

    Figures

    Other

    Tables

    Share

    Share

    Share this Publication link

    Share on social media