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Adaptive backstepping based Controller design for Interior type PMSM using Maximum Torque Per Ampere Strategy

机译:基于自适应的BackStepping用于室内型PMSM的控制器设计,使用每个安培策略的最大扭矩

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In this paper, a nonlinear adaptive backstepping controller is discussed for Interior type Permanent Magnet Synchronous Motor (IPMSM) drive which is designed on the basis of Maximum Torque per Ampere (MTPA) control strategy related to this motor. Using a general non-overparameterized adaptive backstepping procedure, it will be proved that the system control variables are asymptotically stable. In addition, it is also shown that the estimation errors in the motor two axis inductances and rotor permanent magnet flux linkages, asymptotically converge to zero if the system persistency of Excitation condition is also satisfied (PE). The PE condition is satisfied if the low amplitude low frequency ac signals are superimposed to the d-axes reference current (i{sub}d{sup}*). Simulation results clearly show that the proposed adaptive control scheme can track the speed reference signal successfully, and that it can compensates all the electromechanical parameters variation so that no priori knowledge of real parameters is required.
机译:在本文中,讨论了用于内部型永磁同步电动机(IPMSM)驱动器的非线性自适应BackStepping控制器,其基于与该电动机相关的最大扭矩(MTPA)控制策略设计。使用一般的非共同分子化的自适应反斜步骤程序,事实证明系统控制变量是渐近稳定的。另外,还示出了电动机两个轴电感和转子永磁磁通连杆中的估计误差,如果还满足激励条件的系统持久性(PE),则渐近地会聚到零。如果低幅度低频AC信号叠加到D轴参考电流(i {sub} d {sup} *),则满足PE条件。仿真结果清楚地表明,所提出的自适应控制方案可以成功跟踪速度参考信号,并且它可以补偿所有机电参数变化,以便不需要先验的真实参数知识。

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