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A Kind of New Simulation of Electric Field Distribution in A PWM Inverter-Fed Motor Stator Winding Subjected to Steep-Fronted Surge Voltages

机译:PWM逆变器供给电机定子绕组中的一种新型电场分布模拟,经受陡峭的浪涌电压的绕组

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Before, the methode of simulating the high-frequency contents of inverter-fed traction motor and the winding inter-turn voltage distribution has been the equivalent circuit model. The main simulating tool has been MATLAB. But now another method may be better than this one. Based on electromagnetic field theories, this paper researches the effect of steep-fronted voltage wave-shapes infringing on a pulse-width-modulated (PWM) inverter fed induction motor. Its work is finished by using ANSYS simulation software. It main offers a new simulation method for overvoltage pulse exerting in the motor stator windings. And the method predicts the voltage stress distribution among the coils of the stator winding. Since the new method utilized the 3 D transient field analyzing module and 3D static field module of ANSYS software and coupled them correctly. It is a breakthrough comparing with the traditional circuitry simulation method. The coupling progress is that the transient magnetic field caused by over-voltage pulse is computed firstly. Then at this time that the over-voltage is reached its peak, the static electric field caused by the results from the former transient magnetic field is computed secondly. So the progress is called indirect coupling. At last the new method can offer the whole electric stress distribution in detail in the motor stator windings. It is more conformable to research or design the stator insulation structure for a PWM inverter motor.
机译:之前,模拟逆变器牵引电动机的高频含量和绕组互通电压分布的甲型仪已经是等效电路模型。主要的模拟工具已成为Matlab。但现在另一种方法可能比这个方法更好。基于电磁场理论,本文研究了侵扰脉冲宽度调制(PWM)逆变器馈电电动机的垂直电压波形的效果。它的工作是通过使用ANSYS仿真软件完成的。它主要提供一种用于在电机定子绕组中施加过电压脉冲的新模拟方法。该方法预测定子绕组的线圈之间的电压应力分布。由于新方法利用了ANSYS软件的3D瞬态场分析模块和3D静态场模块,并正确耦合它们。与传统电路仿真方法相比,这是一种突破。耦合进度是首先计算由过电压脉冲引起的瞬态磁场。然后此时达到过电压达到其峰值,由前瞬态磁场引起的静态电场被计算得其次。因此,进度称为间接耦合。最后,新方法可以在电机定子绕组中详细提供整个电力应力分布。更适合于研究或设计PWM逆变器电机的定子绝缘结构。

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