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Sensorless Indirect Field Oriented Control of induction motors with rotor resistance adaptation

机译:具有转子电阻适应的传感器间接电磁场控制电动机控制

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This paper presents a controller for speed-sensorless induction motors which is adaptive with respect to the rotor resistance. The non-adaptive solution presented by the authors in Automatica, vol. 42, no. 10, October 2006 is revised to plug-in a rotor resistance adaptation mechanism. The solution presented in this paper provides local asymptotic speed and flux amplitude tracking together with local asymptotic field orientation and asymptotic convergence of rotor resistance and load torque estimation, under assumptions of unknown and constant rotor resistance and load torque and provided that a physically meaningful persistency of excitation condition is satisfied. No simplifying hypothesis such as the knowledge of stator fluxes, pure integration of the stator flux dynamics or stator current differentiation are introduced. The speed-flux controller is based on the Improved Indirect Field Oriented Control approach, while the speed is estimated by a high-gain reduced-order speed observer. The rotor resistance adaptation law is designed taking into account the peculiarities of the original non-adaptive solution. The achievable performances are tested by simulation.
机译:本文介绍了一种用于无传感器感应电动机的控制器,其相对于转子电阻适应。作者呈现的非自适应解决方案,Vol。 42,不。 10月10日,2006年10月被修改为插入式转子电阻适应机构。本文中提出的解决方案提供了局部渐近速度和磁通幅度跟踪以及局部渐近场取向和转子电阻和负载扭矩估计的渐近收敛,在未知和恒定的转子电阻和负载扭矩的假设下,并且提供了物理上有意义的持久性励磁条件满意。没有简化假设,例如定子通量的知识,引入了定子通量动力学或定子电流分化的纯集成。速度通量控制器基于改进的间接场取向控制方法,而速度由高增益减小速度观测器估计。考虑到原始非自适应解决方案的特点,设计了转子电阻适应法。可实现的性能通过模拟测试。

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