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基于ITCM-MOGWO-PSO的钻机滚筒钢丝绳张力控制分析

沙林秀 同雅倩 王万礼 王旭伟

石油钻采工艺2026,Vol.48Issue(2):167-176,10.
石油钻采工艺2026,Vol.48Issue(2):167-176,10.DOI:10.13639/j.odpt.202509033

基于ITCM-MOGWO-PSO的钻机滚筒钢丝绳张力控制分析

Tension control of drilling winch drum wire rope based on ITCM-MOGWO-PSO algorithm

沙林秀 1同雅倩 1王万礼 1王旭伟1

作者信息

  • 1. 西安石油大学电子工程学院,陕西 西安 710000
  • 折叠

摘要

Abstract

To address the strong nonlinearity,large disturbances,and slow response inherent in drilling winch drum wire rope tension control systems,this study proposes an ITCM-MOGWO-PSO algorithm that integrates Tent chaotic mapping and a dual-chaotic learning mechanism to optimize PID parameters,thereby achieving high-precision and robust dynamic tension regulation of wire rope.First,a multi-physics field coupled Simulink simulation system was constructed based on the dynamic model of winch wire rope tension.Then,PID parameters were optimized using ITCM-MOGWO-PSO algorithm with the objectives of enhancing tension control accuracy,improving energy consumption smoothness,and reducing tension fluctuation.Simulation results demonstrate that,compared with MOPSO,MOGWO,and MOGWO-PSO,the optimized controller parameters obtained via ITCM-MOGWO-PSO reduce overshoot by 97.7%,91.7%,and 95.9%,shorten the settling time by 23.9%,4.1%,and 7.2%,and decrease steady-state error by 1.18%,0.91%,and 1.09%,respectively.Furthermore,the proposed algorithm achieves faster convergence,yields the lowest average fitness value,and produces a more concentrated solution set distribution,thereby significantly improving the response speed,control accuracy,and robustness of the tension control system,and offers an effective method for intelligent optimization and control of rig hoisting system.

关键词

钢丝绳张力控制/双混沌学习机制/ITCM-MOGWO-PSO算法/PID参数优化/动态调节/钻机起升系统

Key words

wire rope tension control/dual-chaotic learning mechanism/ITCM-MOGWO-PSO algorithm/PID parameters optimization/dynamic regulation/rig hoisting system

分类

能源科技

引用本文复制引用

沙林秀,同雅倩,王万礼,王旭伟..基于ITCM-MOGWO-PSO的钻机滚筒钢丝绳张力控制分析[J].石油钻采工艺,2026,48(2):167-176,10.

基金项目

西安石油大学研究生教育综合改革项目(编号:2025-X-YJG-003). (编号:2025-X-YJG-003)

石油钻采工艺

1000-7393

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