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Experimental Verification of Conventional Phase Advancement Method for Surface Permanent Magnet Motor with Fractional-Slot Concentrated Windings

机译:具有分数槽浓缩绕组的表面永磁电动机常规相位促进方法的实验验证

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The ability of permanent magnet synchronous motors to operate over a wide constant power speed ratio depends on the motor winding inductance [1]. Previous work has shown that PM motors with "sufficiently high" inductance, if operated with conventional phase advancement [4] method, can widen the CPSR significantly [3]. Compared to traditional vector control, this method is computationally very simple and does not involve any transformations. Only speed and rotor angle feedback is needed to produce the required power. It does not require any motor current or voltage feedback. Surface PM machines with distributed windings have lower phase winding inductance. Recently a method has been developed to use fractional slot concentrated windings to significantly increase the surface PM machine inductance [5]. The increased inductance method is compatible with a voltage source inverter (VSI) controlled by the sinusoidal pulse width modulation (PWM). This paper presents the analysis of the CPA controller for high inductance PM machines for traction drive application.
机译:永磁同步电动机的一个宽恒定功率速比上操作的能力依赖于电机绕组的电感[1]。以前的工作已经表明,PM电动机用“足够高”的电感,如果与常规相位超前[4]的方法操作时,可以拓宽CPSR显著[3]。相对于传统的矢量控制,这种方法在计算非常简单,不涉及任何转换。仅需要的速度和转子角反馈,以产生所需的电力。它不需要任何电机电流或电压反馈。表面PM机器与分布绕组具有较低的相绕组的电感。最近已经开发了一种方法以使用分数槽集中绕组到显著增加表面PM电机电感[5]。增加电感方法是与由所述正弦脉冲宽度调制(PWM)控制的电压源逆变器(VSI)兼容。本文提出了高的电感永磁电机的牵引驱动应用的CPA控制器的分析。

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