Enhanced Linear Active Disturbance Rejection Speed Control of IPMSM Based on Interference Differential Compensation and Cascaded Linear Extended State Observer

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Abstract

—Due to the influence of bandwidth, the interior permanent magnet synchronous motor (IPMSM) control system based on a traditional linear active disturbance rejection controller has a coupling issue between tracking and interference compensation capability. To deal with the above issue, an enhanced linear active disturbance rejection controller (E-LADRC) combining interference differential compensation and cascaded linear extended state observer (IDC-C-LESO) is proposed in this article. Based on the traditional LESO, the lumped interference differential signal is introduced into the E-LADRC so that the scope observation of the lumped interference is widened by LESO, and the system instability caused by the oversized bandwidth of the observer is avoided. C-LESO is used to reduce the observation error of LESO to the lumped interference. The IPMSM outer loop controller based on E-LADRC is established in this article, and its control characteristic is analyzed. Finally, the control characteristic of E-LADRC is verified through experiment.

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APA

Cui, Y., Yin, Z., Cao, X., Zhang, Y., & Liu, Y. (2024). Enhanced Linear Active Disturbance Rejection Speed Control of IPMSM Based on Interference Differential Compensation and Cascaded Linear Extended State Observer. IEEE Transactions on Power Electronics, 39(10), 13582–13596. https://doi.org/10.1109/TPEL.2024.3419247

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