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Stator Flux Vector Control of Induction Motor Drives in the Field-Weakening Region

机译:弱磁场感应电动机驱动的定子磁通矢量控制

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A torque control scheme that utilizes the stator flux components as control variables, applied to a speed-sensorless induction motor drive, is presented. The proposed scheme allows the motor to exploit the maximum torque capability in the whole speed range, and shows a reduced dependence from the motor parameters. It is based on a control algorithm that decreases the d-component of the stator flux as soon as the voltage corresponding to the maximum torque exceeds the available voltage. The control scheme produces a smooth transition into and out of the field weakening region and preserves the torque dynamic. The feasibility of the field weakening technique is confirmed by computer simulations and experimental tests.
机译:提出了一种将定子磁通分量作为控制变量的转矩控制方案,该方案应用于无速度传感器的感应电动机驱动器。所提出的方案允许电动机在整个速度范围内利用最大转矩能力,并减少了对电动机参数的依赖性。它基于一种控制算法,一旦对应于最大转矩的电压超过可用电压,该控制算法便会降低定子磁通量的d分量。该控制方案可平稳地过渡到磁场弱化区域和从其中出来,并保持转矩动态。磁场削弱技术的可行性已通过计算机仿真和实验测试得到了证实。

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