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A Class of Linear–Nonlinear Switching Active Disturbance Rejection Speed and Current Controllers for PMSM

Ping Lin, Zhen Wu, Kun‐Zhi Liu, Xi‐Ming Sun

2021IEEE Transactions on Power Electronics89 citationsDOI

Abstract

This article investigates a class of linear-nonlinear switching active disturbance rejection control (ADRC) to design speed controllers and current controllers for permanent magnet synchronous machine (PMSM) in servo systems, which aims at enhancing the ability of disturbance rejection of speed and current controllers for PMSM. First, the mathematical model of PMSM is introduced. Next, the design of a class of linear-nonlinear switching ADRCs is introduced in details. Then, the stability of linear-nonlinear switching extended state observers (ESOs) is proved by multiple Lyapunov functions. Lastly, the effectiveness of the speed and current controllers based on the linear-nonlinear active disturbance rejection technique is validated by experiments results of a 5.5-kW PMSM platform. Specially, the experiment results of the speed controllers illustrate that the amplitude of speed change of the proposed ADRCs is smaller than that of the linear ADRC (LADRC) when the step load torque disturbance occurs. The proposed ADRCs can overcome the overshoot of speed response caused by improper parameter setting of LADRC. The experiment results of the current controllers show that the proposed LNSADRC type 2 has greater robustness than the other ADRC controllers when b <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">02</sub> is not estimated accurately.

Topics & Concepts

Control theory (sociology)Active disturbance rejection controlRobustness (evolution)Nonlinear systemOvershoot (microwave communication)Electronic speed controlServomechanismLyapunov functionComputer scienceControl engineeringRobust controlEngineeringState observerPhysicsArtificial intelligenceGeneBiochemistryTelecommunicationsChemistryElectrical engineeringQuantum mechanicsControl (management)Sensorless Control of Electric MotorsMicrogrid Control and OptimizationMultilevel Inverters and Converters
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