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Simulation of Wireless Rotor Induction Machine with Wound Secondary Windings

机译:绕线式二次绕组无线转子感应电机的仿真

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The suggested new wireless rotor induction machine consists of two sets of stator windings: primary and secondary. Each winding consists of one, two, or three phases. The laminated steel rotor, in wireless rotor machine, serves as a switcher of the magnetic field through output windings. By changing the configuration of the rotor poles, it is possible to create the sinusoidal waveform in the output windings. The rotor of the wireless rotor machine is rugged and cold. The cold rotor facilitates the cooling of the AC machine. In the wireless rotor induction machine, it needs double frequency of the voltage source for the same rotor speed as in the regular induction machines. That means that the suggested machine weightless than the regular induction machine with the same rating speed. In this case, the wireless rotor induction machine can find application, for example, as powertrain for the vehicles. The theory of wireless rotor induction machines now is not developed. In the paper, we consider the simulation of the wireless rotor induction machine to show that the principle operation of the wireless rotor induction machine is identical to a regular induction machine with a wound rotor. We use a phasor and vector representation of electrical and magnetic values. For simulation, we utilize graphical language, Simulink. The graphical language Simulink is visible, simple, and flexible. It allows designing the model according to the physical nature of the machine. We consider the induction machine as a close control system with feedback proportional to the motor torque. This new approach allows separate analyses of open and closed-loop control systems. After adjustment of all elements in the open control system, we insert feedback proportional to the motor torque. The results of this work can find the application for engineering education and professional design prototypes of the wireless rotor induction machines.
机译:建议的新型无线转子感应电机由两组定子绕组组成:一次绕组和二次绕组。每个绕组由一相,两相或三相组成。无线转子电机中的叠层钢质转子通过输出绕组作为磁场的切换器。通过改变转子磁极的配置,可以在输出绕组中产生正弦波形。无线转子电机的转子坚固耐用。冷转子有利于交流电机的冷却。在无线转子感应电机中,与常规感应电机中相同的转子速度,它需要双倍的电压源频率。这意味着在额定速度相同的情况下,建议的机器比常规感应机器轻便。在这种情况下,无线转子感应机可以找到应用,例如作为车辆的动力总成。现在尚未开发无线转子感应电机的理论。在本文中,我们考虑了无线转子感应电机的仿真,以表明无线转子感应电机的原理操作与带有绕线转子的常规感应电机相同。我们使用电和磁值的相量和矢量表示。为了进行仿真,我们使用图形语言Simulink。图形语言Simulink可见,简单且灵活。它允许根据机器的物理性质设计模型。我们将感应电机视为具有与电动机转矩成比例的反馈的紧密控制系统。这种新方法允许对开环和闭环控制系统进行单独分析。调整开放式控制系统中的所有元件后,我们插入与电动机转矩成比例的反馈。这项工作的结果可以为无线转子感应机的工程教育和专业设计原型找到应用。

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