基于滑模和扩张状态观测器的双绕组无轴承磁通 切换电机转子悬浮控制策略研究
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TM341 TH165 + . 2

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福建省自然科学基金项目(重点)(2021J02023)资助


Research on rotor suspension control strategy of dual-winding bearingless flux-switching permanent magnet machines based on sliding mode control and extended state observer
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    摘要:

    双绕组无轴承磁通切换电机是非线性多变量的复杂对象,传统的转速 PI 与径向位移 PI 控制存在超调大,系统易受外 界扰动影响等缺点。 基于滑模变结构控制思想,提出一种转子径向位移滑模控制策略。 针对滑模控制中存在建模不准确,以及 转子动力学模型中存在陀螺效应等问题,通过建立一种扩张状态观测器对系统扰动进行观测,并在滑模控制基础上加入扰动前 馈补偿,设计出一种径向位移滑模控制与扩张状态观测器的复合控制策略。 实验结果表明,所提径向位移滑模控制相比传统 PI 控制具有响应速度快、径向位移脉动小、抗负载扰动性强等优点。 所提径向位移滑模与扩张状态观测器的复合控制策略,相 比于径向位移滑模控制可有效减小转子径向位移脉动约 30% ,进一步增强了系统的鲁棒性。

    Abstract:

    The dual-winding bearingless flux-switching permanent magnet machines ( BFSPMM) is a non-linear and multi-variable complex system. The traditional speed PI and radial displacement PI control have disadvantage of large overshoot. The system is susceptible to external disturbances. Based on the idea of sliding mode variable structure control, this article proposes a sliding mode control (SMC) strategy for the radial displacement of Dual-winding BFSPMM to control the suspension plane. In view of the inaccurate mathematical model in sliding mode control, the gyro effect in the rotor dynamics, etc. An extended state observer (ESO) is established to observe the system disturbance, and the disturbance feedforward compensation control is added to SMC. Thus, a compound control strategy of SMC and ESO is formed. Compared with the traditional PI control, experimental results show that the proposed radial displacement SMC has advantages of faster response speed, smaller radial displacement pulsation, and strong resistance to load disturbances. Compared with the radial displacement SMC, the proposed composite control strategy of radial displacement SMC and ESO can effectively reduce the radial displacement pulsation of the rotor by about 30% , and further enhance the robustness of the system.

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崔征山,周扬忠,张 竞,周祎豪.基于滑模和扩张状态观测器的双绕组无轴承磁通 切换电机转子悬浮控制策略研究[J].仪器仪表学报,2022,43(6):269-279

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  • 在线发布日期: 2023-02-06
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