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Stator and Rotor Flux Based Deadbeat Direct Torque Control of Induction Machines

机译:基于定子和转子磁通的感应电机无差拍直接转矩控制

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摘要

A new, deadbeat type of direct torque control is proposed, analyzed, and experimentally verified in this paper. The control is based on stator and rotor flux as state variables. This choice of state variables allows a graphical representation which is transparent and insightful. The graphical solution shows the effects of realistic considerations such as voltage and current limits. A position and speed sensorless implementation of the control, based on the self-sensing signal injection technique, is also demonstrated experimentally for low speed operation. The paper first develops the new, deadbeat DTC methodology and graphical representation of the new algorithm. It then evaluates feasibility via simulation and experimentally demonstrates performance of the new method with a laboratory prototype including the sensorless methods.
机译:本文提出了一种新型的无差拍类型的直接转矩控制,并进行了实验验证。该控制基于定子和转子磁通作为状态变量。状态变量的这种选择允许透明而有见地的图形表示。图形解决方案显示了实际考虑因素的影响,例如电压和电流限制。还针对低速操作通过实验证明了基于自感应信号注入技术的控制的位置和速度无传感器实现。本文首先开发了新的无差拍DTC方法和新算法的图形表示。然后,通过仿真评估可行性,并通过实验室原型(包括无传感器方法)通过实验证明该新方法的性能。

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