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首页> 外文期刊>Annals of the American Thoracic Society >Simulation and Control of the Velocity and Electromagnetic Torque of a Three-Phase Induction Motor: An Electric Vehicles Approach
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Simulation and Control of the Velocity and Electromagnetic Torque of a Three-Phase Induction Motor: An Electric Vehicles Approach

机译:三相感应电动机速度和电磁扭矩的仿真和控制:电动汽车方法

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摘要

In this study we present the results obtained in simulation and control of a three-phase induction motor using MATLAB / Simulink The analysis includes the study of the transient response of the MTI in open loop and in closed loop using two types of controllers: Direct Torque Control (DTC) and Scalar Control. The most relevant results of this work are obtained when the performance of each controller, whose main objective is to follow the desired speed profile, is assessed, attending to the dynamic responses of the rotor's mechanical velocity, electromagnetic torque, rotor's and stator's magnetic flux and currents, as well as the excitation voltages. Two operation scenarios are considered: in the first case the MTI operates without mechanical load and in the second one it operates as a propulsion system of a vehicle with mechanical parameters close to those of a conventional car. Likewise, it was demonstrated that the DTC provides the system with a more optimal dynamic behavior, minimizing the speed and electromagnetic torque tracking errors, minimizing the ripple in the torque and estimated flow values.
机译:在这项研究中,我们介绍了使用MATLAB / Simulink的三相感应电动机的模拟和控制获得的结果,分析包括使用两种控制器中的开环和闭环中MTI的瞬态响应的研究:直接扭矩控制(DTC)和标量控制。当每种控制器的性能进行评估时,可以获得这项工作的最相关结果,其主要目的是进行评估,其主要是遵循所需的速度轮廓,参加转子机械速度,电磁扭矩,转子和定子磁通量的动态响应和电流,以及激励电压。考虑了两个操作场景:在第一种情况下,MTI在没有机械负载的情况下操作,并且在第二个中,它作为车辆的推进系统,其具有接近传统汽车的机械参数。同样地,证明DTC提供了具有更优选的动态行为的系统,最小化速度和电磁扭矩跟踪误差,最小化扭矩和估计的流量值中的纹波。

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