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MTPA control of mechanical sensorless IPMSM based on adaptive nonlinear control

机译:基于自适应非线性控制的机械无传感器IPMSM的MTPA控制

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摘要

In this paper, an adaptive nonlinear control scheme has been proposed for implementing maximum torque per ampere (MTPA) control strategy corresponding to interior permanent magnet synchronous motor (IPMSM) drive. This control scheme is developed in the rotor d-q axis reference frame using adaptive input-output state feedback linearization (AIOFL) method. The drive system control stability is supported by Lyapunov theory. The motor inductances are online estimated by an estimation law obtained by AIOFL. The estimation errors of these parameters are proved to be asymptotically converged to zero. Based on minimizing the motor current amplitude, the MTPA control strategy is performed by using the nonlinear optimization technique while considering the online reference torque. The motor reference torque is generated by a conventional rotor speed PI controller. By performing MTPA control strategy, the generated online motor d-q reference currents were used in AIOFL controller to obtain the SV-PWM reference voltages and the online estimation of the motor d-q inductances. In addition, the stator resistance is online estimated using a conventional PI controller. Moreover, the rotor position is detected using the online estimation of the stator flux and online estimation of the motor q-axis inductance. Simulation and experimental results obtained prove the effectiveness and the capability of the proposed control method. (C) 2016 ISA. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种自适应非线性控制方案,用于实现对应于内部永磁同步电动机(IPMSM)驱动器的最大每安培转矩(MTPA)控制策略。该控制方案是使用自适应输入输出状态反馈线性化(AIOFL)方法在转子d-q轴参考系中开发的。李雅普诺夫理论支持驱动系统的控制稳定性。电机电感通过AIOFL获得的估算定律在线估算。这些参数的估计误差被证明渐近收敛于零。基于最小化电动机电流幅度,在考虑在线参考转矩的同时,通过使用非线性优化技术来执行MTPA控制策略。电动机参考转矩由常规的转子速度PI控制器生成。通过执行MTPA控制策略,在AIOFL控制器中使用生成的在线电动机d-q参考电流来获得SV-PWM参考电压和电动机d-q电感的在线估计。此外,可使用常规PI控制器在线估算定子电阻。此外,使用定子磁通的在线估算和电动机q轴电感的在线估算来检测转子位置。仿真和实验结果证明了该控制方法的有效性和能力。 (C)2016 ISA。由Elsevier Ltd.出版。保留所有权利。

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