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High-Performance Speed Servo System Considering Voltage Saturation of a Vector-Controlled Induction Motor

机译:考虑矢量控制感应电动机电压饱和的高性能速度伺服系统

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摘要

Generally, a speed servo system of a vector-controlled induction motor has limitations of motor voltage and current. When the speed servo system has a large torque reference, the output of its PI controller is often saturated. In this case, the conventional servo system stops the integral calculation of its PI controller. However, this system often has a large overshoot and/or an oscillated response caused by both a windup phenomenon and phase error on the vector control condition. This paper proposes a new speed servo system considering voltage saturation for the vector-controlled induction motor. The proposed control method compensates the phase error on vector control condition quickly, and always keeps the vector control condition. The experimental results show that the proposed system well regulates the motor speed and the secondary magnetic flux for a large torque reference without a windup phenomenon.
机译:通常,矢量控制感应电动机的速度伺服系统具有电动机电压和电流的限制。当速度伺服系统的转矩参考值较大时,其PI控制器的输出通常会饱和。在这种情况下,常规伺服系统将停止对其PI控制器的积分计算。然而,由于矢量控制条件下的缠绕现象和相位误差,该系统通常具有较大的过冲和/或振荡响应。本文提出了一种考虑矢量饱和感应电动机电压饱和的新型速度伺服系统。提出的控制方法可以快速补偿矢量控制条件下的相位误差,并始终保持矢量控制条件。实验结果表明,对于大转矩参考,该系统能够很好地调节电动机速度和次级磁通量,而不会出现加速现象。

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