面向输电线路机器人的双电机转速协同控制方法
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1.南京信息工程大学自动化学院 南京 210044; 2.无锡学院自动化学院 无锡 214105

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TN98

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江苏省自然科学基金青年基金(BK20230173)、无锡学院引进人才科研启动专项(2024r023)资助


Dual-motor speed cooperative control method for transmission line robots
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1.School of Automation, Nanjing University of Information Science and Technology, Nanjing 210044, China; 2.School of Automation, Wuxi University, Wuxi 214105, China

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    摘要:

    针对输电线路机器人双永磁同步电机转速协同控制的关键问题,提出了一种改进的控制策略。首先,在转速环控制方面,设计了一种基于新趋近律的非奇异终端滑模控制器,并结合扩张状态观测器对系统不确定扰动进行实时观测与补偿,提高电机速度跟踪性能;其次,在同步控制方面,采用交叉耦合控制架构,设计了基于改进粒子群算法(PSO)的模糊控制误差补偿器,通过优化算法对模糊控制参数进行整定,从而降低外部扰动下的双电机转速同步误差。仿真实验结果表明,所提出的控制策略在鲁棒性、转速跟踪精度和同步性能等方面均表现出显著优势,为带电作业机器人的高精度控制提供了有效的解决方案。

    Abstract:

    Aiming at the key issues of speed cooperative control of dual permanent magnet synchronous motors for transmission line robots, an improved control strategy is proposed. Firstly, in terms of rotational speed loop control, a non-singular terminal sliding mode controller based on the new approach law was designed, and combined with the expanded state observer to conduct real-time observation and compensation of uncertain disturbances in the system, thereby improving the speed tracking performance of the motor. Secondly, in terms of synchronous control, a cross-coupling control architecture was adopted, and a fuzzy control error compensator based on the improved particle swarm optimization (PSO) algorithm was designed. The fuzzy control parameters were tuned through the optimization algorithm, thereby reducing the synchronous error of the dual-motor rotational speed under external disturbances. The simulation experiment results show that the proposed control strategy exhibits significant advantages in terms of robustness, rotational speed tracking accuracy and synchronization performance, providing an effective solution for the high-precision control of live-line operation robots.

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丁林豪,董禹,黄兴,花国祥,王升旭.面向输电线路机器人的双电机转速协同控制方法[J].电子测量技术,2026,49(10):51-59

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  • 在线发布日期: 2026-08-25
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