Long Time-delay Control of Cement Slurry Density Based on Smith-fuzzy PID Decoupling

The cement slurry mixing system has the characteristics of nonlinearity,time variation and long time-delay, which make it impossible to achieve stable and accurate control of automatic cementing devices by traditional techniques. This paper presents an advanced strategy of control based on Smith pre...

Full description

Saved in:
Bibliographic Details
Main Authors: Li Yong, Fan Heng, Ji Yu, Cheng Sida, Meng Jiansheng
Format: Article
Language:zho
Published: Editorial Office of China Petroleum Machinery 2025-07-01
Series:Shiyou jixie
Subjects:
Online Access:http://www.syjxzz.com.cn/en/#/digest?ArticleID=4978
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849338878679318528
author Li Yong
Fan Heng
Ji Yu
Cheng Sida
Meng Jiansheng
author_facet Li Yong
Fan Heng
Ji Yu
Cheng Sida
Meng Jiansheng
author_sort Li Yong
collection DOAJ
description The cement slurry mixing system has the characteristics of nonlinearity,time variation and long time-delay, which make it impossible to achieve stable and accurate control of automatic cementing devices by traditional techniques. This paper presents an advanced strategy of control based on Smith predictive compensation and fuzzy PID decoupling(Smith-fuzzy PID decoupling).Firstly, through the mathematical modeling and coupling analysis of the cement slurry mixing system, the feedforward compensator was used to compensate for the possible disturbances in the system in advance, which effectively reduces the coupling effect. Then, the Smith-fuzzy PID decoupling controller was designed, and the PID parameters were adjusted through fuzzy logic to adapt to the nonlinear and time-varying characteristics of the system,so as to achieve accurate control of density. Finally,simulation experiments and anti-interference analysis were carried out on the Matlab/Simulink platform. The results show that compared with Smith predictive compensation and fuzzy PID control, the proposed control based on Smith-fuzzy PID decoupling is significantly superior in dynamic performance, steady-state performance and anti-interference ability, and has a strong robustness. This control strategy can effectively reduce the overshoot, speed up the system adjustment, and improve the system stability. It provides a reliable solution to the accurate control of cement slurry density, and will play a theoretical guiding role in the intelligent development of cement slurry mixing system.
format Article
id doaj-art-e9efa2bc06b74460b31608d78a8dd9cd
institution Kabale University
issn 1001-4578
language zho
publishDate 2025-07-01
publisher Editorial Office of China Petroleum Machinery
record_format Article
series Shiyou jixie
spelling doaj-art-e9efa2bc06b74460b31608d78a8dd9cd2025-08-20T03:44:17ZzhoEditorial Office of China Petroleum MachineryShiyou jixie1001-45782025-07-01537324110.12473/CPM.2024060641001-4578(2025)07-0032-10Long Time-delay Control of Cement Slurry Density Based on Smith-fuzzy PID DecouplingLi Yong0Fan Heng1Ji Yu2Cheng Sida3Meng Jiansheng4CNPC Engineering Technology R & D Company LimitedCollege of Electronic Engineering, Xi’an Shiyou UniversityCollege of Electronic Engineering, Xi’an Shiyou UniversityCNPC Engineering Technology R & D Company LimitedCollege of Electronic Engineering, Xi’an Shiyou UniversityThe cement slurry mixing system has the characteristics of nonlinearity,time variation and long time-delay, which make it impossible to achieve stable and accurate control of automatic cementing devices by traditional techniques. This paper presents an advanced strategy of control based on Smith predictive compensation and fuzzy PID decoupling(Smith-fuzzy PID decoupling).Firstly, through the mathematical modeling and coupling analysis of the cement slurry mixing system, the feedforward compensator was used to compensate for the possible disturbances in the system in advance, which effectively reduces the coupling effect. Then, the Smith-fuzzy PID decoupling controller was designed, and the PID parameters were adjusted through fuzzy logic to adapt to the nonlinear and time-varying characteristics of the system,so as to achieve accurate control of density. Finally,simulation experiments and anti-interference analysis were carried out on the Matlab/Simulink platform. The results show that compared with Smith predictive compensation and fuzzy PID control, the proposed control based on Smith-fuzzy PID decoupling is significantly superior in dynamic performance, steady-state performance and anti-interference ability, and has a strong robustness. This control strategy can effectively reduce the overshoot, speed up the system adjustment, and improve the system stability. It provides a reliable solution to the accurate control of cement slurry density, and will play a theoretical guiding role in the intelligent development of cement slurry mixing system.http://www.syjxzz.com.cn/en/#/digest?ArticleID=4978cement slurrysmith predictive controldensity controllong time-delayfuzzy control pid decoupling
spellingShingle Li Yong
Fan Heng
Ji Yu
Cheng Sida
Meng Jiansheng
Long Time-delay Control of Cement Slurry Density Based on Smith-fuzzy PID Decoupling
Shiyou jixie
cement slurry
smith predictive control
density control
long time-delay
fuzzy control pid decoupling
title Long Time-delay Control of Cement Slurry Density Based on Smith-fuzzy PID Decoupling
title_full Long Time-delay Control of Cement Slurry Density Based on Smith-fuzzy PID Decoupling
title_fullStr Long Time-delay Control of Cement Slurry Density Based on Smith-fuzzy PID Decoupling
title_full_unstemmed Long Time-delay Control of Cement Slurry Density Based on Smith-fuzzy PID Decoupling
title_short Long Time-delay Control of Cement Slurry Density Based on Smith-fuzzy PID Decoupling
title_sort long time delay control of cement slurry density based on smith fuzzy pid decoupling
topic cement slurry
smith predictive control
density control
long time-delay
fuzzy control pid decoupling
url http://www.syjxzz.com.cn/en/#/digest?ArticleID=4978
work_keys_str_mv AT liyong longtimedelaycontrolofcementslurrydensitybasedonsmithfuzzypiddecoupling
AT fanheng longtimedelaycontrolofcementslurrydensitybasedonsmithfuzzypiddecoupling
AT jiyu longtimedelaycontrolofcementslurrydensitybasedonsmithfuzzypiddecoupling
AT chengsida longtimedelaycontrolofcementslurrydensitybasedonsmithfuzzypiddecoupling
AT mengjiansheng longtimedelaycontrolofcementslurrydensitybasedonsmithfuzzypiddecoupling