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Integral Sliding-Mode Direct Torque Control of Sensorless Induction Motor Drives

机译:无传感器感应电动机驱动器的整体滑模直扭矩控制

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The paper deals with a full sliding mode approach for induction motor drives direct torque and flux control. The proposed solution is composed by an integral sliding-mode control and by a speed-sensorless sliding mode observer. The suggested Integral Sliding-Mode Direct Torque Control (ISMDTC) is formulated in the stator flux reference frame, without employing current regulators. The adopted sliding mode observer provides stator-flux and torque estimation, without rotor-speed adaptation. The numerical results show that the ISMDTC maintains the robustness of the sliding controller, reducing the chattering during the steady state. Moreover, it consents to achieve similar performance like more complex second-order SMC offering more simple implementation. The ISMDTC assures good accuracy and robustness to parameters deviations at low-speed operations as well as in all the operative range of the IM drives. For proving the goodness of the proposal the suggested control is also compared with a conventional DTC control.
机译:本文涉及一种充分的滑模方法,用于感应电机驱动直接扭矩和磁通控制。所提出的解决方案由整体滑动模式控制和通过速度传感器滑动模式观察者组成。建议的整体滑模直接扭矩控制(ISMDTC)在定子磁通参考框架中配制,无需采用电流调节器。采用的滑动模式观察器提供定子通量和扭矩估计,而没有转子速度适应。数值结果表明,ISMDTC保持了滑动控制器的稳健性,在稳定状态期间减少了抖动。此外,它同意实现类似的性能,如更复杂的二阶SMC提供更简单的实现。 ISMDTC确保低速操作的参数偏差以及IM驱动器的所有操作范围的良好准确性和鲁棒性。为了证明该提案的善良,也与传统的DTC控制进行了建议的控制。

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