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Optimal Control Method of an Asynchronous Traction Motor

机译:异步牵引电动机的最优控制方法

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In the paper, an algorithm for the analysis of induction motors dedicated to the electric traction of the autonomous vehicles, with emphasis on the energetic performances, is grounded. The problem is not simple, as the motors operate at voltage and frequency different from the rated values. The authors have developed an original algorithm for estimating the variable parameters, namely the resistance and the inductance related to the magnetization circuit. On this basis, the energetic analysis of the control at constant rotor frequency was performed in two aspects: the mechanical characteristics and the speed control at constant torque or constant power, respectively. Starting from the high energetic performance of the control at constant rotor frequency, the optimal control that maximizes the motor efficiency is investigated.
机译:本文提出了一种用于分析自动驾驶汽车电动牵引的感应电动机的算法,该算法着重于能量性能。问题并不简单,因为电动机的工作电压和频率与额定值不同。作者已经开发出一种原始算法来估算可变参数,即与磁化电路有关的电阻和电感。在此基础上,从两个方面进行了恒定转子频率控制的能量分析:分别是恒定转矩或恒定功率的机械特性和速度控制。从恒定转子频率下的高能量控制性能出发,研究了使电机效率最大化的最佳控制。

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