首页> 外文会议>Industry Applications Conference, 1997. Thirty-Second IAS Annual Meeting, IAS '97., Conference Record of the 1997 IEEE >A new vector control scheme considering iron loss for electric vehicle induction motors
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A new vector control scheme considering iron loss for electric vehicle induction motors

机译:电动汽车感应电动机考虑铁损的新型矢量控制方案

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Electric vehicle (EV) motors are characterized for their low inductance and high current density, so that they run at high speed and produce a high starting torque. Due to the low inductance coil design, the current ripple caused by PWM switching makes a significant amount of eddy current loss and hysteresis loss, especially in the high speed operation. If one simply neglects the iron loss, then overall vector control scheme is detuned, resulting in an error in the torque control. The iron loss is modeled, in general, by a parallel resistor R/sub M/ to the magnetizing inductor L/sub M/. The authors propose a series R-L model that can account for the effects of the iron loss. A major advantage of the series model is that it does not increase the number of state variables in developing a vector control. In this work, they derive a rotor flux oriented vector control scheme for the series model, and analyze the flux error, orientation angle error, torque error caused by iron loss. Finally, the demonstrate the effectiveness of the proposed control method through computer simulation and experimental results.
机译:电动汽车(EV)电动机具有低电感和高电流密度的特点,因此它们可以高速运行并产生高启动转矩。由于采用低电感线圈设计,PWM开关引起的电流纹波会产生大量的涡流损耗和磁滞损耗,尤其是在高速操作中。如果简单地忽略了铁损,那么整个矢量控制方案就会失谐,从而导致转矩控制出现错误。铁损通常通过并联电感器R / sub M /到励磁电感器L / sub M /来建模。作者提出了一个可以说明铁损影响的串联R-L模型。序列模型的主要优点是,在开发矢量控件时,它不会增加状态变量的数量。在这项工作中,他们推导了串联模型的转子磁链定向矢量控制方案,并分析了由铁损引起的磁链误差,定向角误差,转矩误差。最后,通过计算机仿真和实验结果证明了该控制方法的有效性。

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