煤炭工程 ›› 2025, Vol. 57 ›› Issue (9): 217-224.doi: 10. 11799/ ce202509028

• 装备技术 • 上一篇    

永磁外转子提升机复合滑模控制系统联合仿真分析

张泰广,吴娟   

  1. 1. 太原理工大学 机械工程学院,山西 太原 030024

    2. 太原理工大学 山西省矿山流体控制工程实验室,山西 太原 030024 

    3. 太原理工大学 矿山流体控制国家地方联合工程实验室,山西 太原 030024

  • 收稿日期:2024-12-09 修回日期:2025-02-25 出版日期:2025-09-10 发布日期:2025-10-13
  • 通讯作者: 吴娟 E-mail:wujuanz@163.com

Simulation and Analysis of Composite Sliding Mode Control System for Mine Permanent Magnet External Rotor Hoist

  • Received:2024-12-09 Revised:2025-02-25 Online:2025-09-10 Published:2025-10-13

摘要:

为了改善永磁外转子提升机的速度控制性能和对负载扰动变化的鲁棒性能,提出了基于改进扰动补偿的滑模控制器和正弦切换的滑模扰动观测器结合的复合滑模控制方法,对负载变化实时观测,将观测值融入到了控制中,提高了在负载突变时的动态响应能力。之后利用Simulation X建立了永磁外转子提升机多体动力学负载模型进行联合仿真,研究了永磁外转子提升机在多种工况下的动力学特性。联合仿真结果表明,负载观测器能够准确的观测负载变化并对扰动值进行补偿,所设计的复合滑模控制系统相比传统滑模控制具有更好的动态性能,基于复合滑模控制策略的永磁外转子提升机能够满足不同工况下的重载平稳运行。

关键词:

低速大惯量 , 永磁外转子提升机 , 改进滑模控制 , 滑模扰动观测器 , Simulation X

Abstract:

The permanent magnet external rotor hoist has subverted the traditional driving mode, enhanced the energy efficiency ratio, and facilitated the green, efficient, and energy-saving development of mining hoisting equipment. To enhance the speed control performance and robustness against load disturbance variations of the permanent magnet external rotor hoist, a composite sliding mode control method combining an improved disturbance compensation-based sliding mode controller and a sinusoidal switching sliding mode disturbance observer was proposed. The load changes were observed in real time, and the observed values were integrated into the control, improving the dynamic response capability during sudden load changes. Subsequently, a multibody dynamics load model of the permanent magnet external rotor hoist was established using Simulation X for joint simulation, and the dynamic characteristics of the permanent magnet external rotor hoist under multiple working conditions were investigated. The joint simulation results indicate that the load observer can accurately observe load changes and compensate for the disturbance values. The designed composite sliding mode control system exhibits superior dynamic performance compared to the traditional sliding mode control. The permanent magnet external rotor hoist based on the composite sliding mode control strategy can fulfill the requirements of stable heavy-load operation under diverse working conditions.

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