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MTPA and FW based robust nonlinear speed control of IPMSM drive using Lyapunov stability criterion

机译:基于Lyapunov稳定性准则的基于MTPA和FW的IPMSM驱动器鲁棒非线性速度控制。

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摘要

This paper presents a robust nonlinear control technique for wide range speed operation of interior permanent magnet (IPM) synchronous machines based on the use of maximum torque per ampere (MTPA) and flux weakening (FW) controls. The global asymptotic stability of the drive is demonstrated by Lyapunov stability criterion in conjuncture with Barbalat's lemma. For the proposed nonlinear controller the MTPA and FW schemes are used to control the d-axis stator current below and above the rated speed, respectively. Control laws are developed based on adaptive backstepping technique to ensure robust system stability. The system nonlinearities are also accommodated through the online estimation of critical parameters. The control and adaptive backstepping laws have been successfully implemented in a MATLAB/Simulink simulation environment. Simulation results indicate robust speed tracking performance for the IPM synchronous motor ensuring global stability of the drive system.
机译:本文基于最大每安培转矩(MTPA)和弱磁通(FW)控制的使用,提出了一种鲁棒的非线性控制技术,用于内部永磁体(IPM)同步电机的大范围速度运行。 Lyapunov稳定性准则与Barbalat引理结合证明了该驱动器的全局渐近稳定性。对于提出的非线性控制器,MTPA和FW方案分别用于控制d轴定子电流低于和高于额定速度。基于自适应反推技术开发了控制律,以确保鲁棒的系统稳定性。系统非线性也可以通过在线估算关键参数来解决。控制和自适应反推定律已在MATLAB / Simulink仿真环境中成功实现。仿真结果表明,IPM同步电动机具有强大的速度跟踪性能,可确保驱动系统的整体稳定性。

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