Improved Sliding Mode Model Reference Adaptive System Observer

Authors

  • Gang Li School of Electronic and Information Engineering,  Sichuan Geely University, China

DOI:

https://doi.org/10.15837/ijccc.2024.5.6620

Keywords:

Permanent magnet synchronous motor, Buffeting, Robustness, Non-singular fast terminal sliding mode, Model reference adaptive system

Abstract

In order to improve the accuracy and stability of sensorless control system of permanent magnet synchronous motor, considering the influence of external load torque on system performance, the symbol function of sliding mode control system of vehicle-mounted permanent magnet synchronous motor is prone to chattering and the robustness of traditional PI control is insufficient. In this paper, a method of combining Non-singular Fast Terminal Sliding Mode (NFTSM) and Model Reference Adaptive System (MRAS) is proposed. A Non-singular Fast Terminal Sliding Mode Controller (NFTSMC) is designed. A control strategy combining NFTSMC and Model Reference Adaptive System Observer (MRASO) (NFTSMC-MRASO) converts the observed torque value into torque current feedforward compensation to the current loop input. The large sliding mode gain is avoided, and the chattering problem of the system is overcome when the external disturbance is suddenly added. At the same time, the robustness of the system is improved under the premise of suppressing the chattering.

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Published

2024-09-02

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