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Modified DTC of a Six-Phase Induction Motor With a Second-Order Sliding-Mode MRAS-Based Speed Estimator

机译:具有基于MRAS的二阶滑模速度估计器的六相感应电动机的修正DTC

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This paper deals with a model reference adaptive system (MRAS) estimator based on the second-order sliding-mode (SOSM) strategy for speed-sensorless direct torque control (DTC) of a six-phase induction motor. A compensated flux observer is proposed using the well-known supertwisting algorithm, which is inherently an SOSM technique. This observer is adopted as the reference model in the MRAS-based speed estimator to overcome the chattering problem of the classical sliding-mode techniques. The estimator is robust against parameter uncertainties and dc offsets. In addition, a supertwisting-algorithm-based second-order sliding-mode (ST-SOSM) controller is designed for the speed loop in the DTC strategy to increase its robustness under applying external load disturbances. The speed control loop needs the load torque signal. For this purpose, an ST-SOSM load torque observer is proposed, where it provides a robust performance without the penalty of high chattering. Simulation and experimental results confirm the validity and the effectiveness of the proposed approaches.
机译:本文针对六相感应电动机的无速度传感器直接转矩控制(DTC),基于二阶滑模(SOSM)策略,研究了模型参考自适应系统(MRAS)估计器。使用众所周知的超扭曲算法提出了一种补偿通量观测器,该算法本质上是SOSM技术。该观察器被用作基于MRAS的速度估计器中的参考模型,以克服经典滑模技术的抖动问题。估计器对于参数不确定性和直流偏移具有鲁棒性。此外,针对DTC策略中的速度环,设计了基于超扭曲算法的二阶滑模(ST-SOSM)控制器,以在施加外部负载干扰的情况下提高其鲁棒性。速度控制回路需要负载转矩信号。为此,提出了一种ST-SOSM负载扭矩观测器,它提供了强大的性能而不会产生高抖动的影响。仿真和实验结果证实了所提方法的有效性和有效性。

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