基于改进ADRC的永磁同步电机矢量控制
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1.新疆大学智能科学与技术学院 乌鲁木齐 830017; 2.清华大学航空发动机研究院 北京 100084

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TM341;TN60

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国家自然科学基金(62422309) 项目资助


Vector control of PMSM based on improved active disturbance rejection control
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1.School of Intelligence Science and Technology, Xinjiang University,Urumqi 830017, China; 2.Institute for Aero Engine, Tsinghua University,Beijing 100084, China

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    摘要:

    为有效抑制垂直起降无人机(UAV)动力系统中的时变负载,模型精确度不足对系统控制性能的影响,提出了一种ISTSM-ADRC策略。利用自抗扰控制不完全依赖于系统精确数学模型的优势,设计了转速环扩张状态观测器(ESO),对系统综合扰动进行在线估计与补偿。利用滑模面函数鲁棒性强的特点替代自抗扰控制(ADRC)中非线性误差反馈环节,提高转速环控制器的鲁棒性。设计新型超螺旋滑模(STSM)趋近律实现自适应增益,减少抖振,增强对扰动的鲁棒性。通过进行阶跃响应测试、负载突变测试和参数摄动实验,相较于STSM-ADRC改进后的稳态误差减少50%,参数摄动后稳态波动范围较STSM-ADRC减少46%。验证了ISTSM-ADRC相较于STSM-ADRC、PI控制策略具有动态性能好、鲁棒性强的特点。

    Abstract:

    To effectively suppress the influence of time-varying loads and insufficient model accuracy on the control performance of vtol UAV power systems, an ISTSM-ADRC strategy is proposed. By leveraging the characteristic that ADRC is not completely dependent on the accurate mathematical model of the system, a speed-loop expansion state observer(ESO) is designed to online estimate and compensate for the comprehensive system disturbances. The sliding mode surface function with strong robustness is adopted to replace the nonlinear error feedback link in active disturbance rejection control(ADRC), thus enhancing the robustness of the speed-loop controller. A novel super-twisting sliding mode (STSM) reaching law is developed to achieve adaptive gain, reduce chattering and strengthen robustness against disturbances. Step response tests, load mutation tests and parameter perturbation experiments are conducted. The results indicate that compared with STSM-ADRC, the steady-state error of the proposed strategy is reduced by 50% and the steady-state fluctuation range after parameter perturbation is decreased by 46%. These findings verify that ISTSM-ADRC exhibits better dynamic performance and stronger robustness than STSM-ADRC and PI control strategies.

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刘兴旺,王向阳.基于改进ADRC的永磁同步电机矢量控制[J].电子测量技术,2026,49(10):97-106

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  • 在线发布日期: 2026-08-25
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