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Linear Modulation Range and Torque Ripple Profile Improvement of PPMIM Drives

机译:PPMIM驱动器的线性调制范围和转矩纹波曲线改善

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The pole-phase modulated induction motor (PPMIM) drives facilitate the extended range of speed-torque characteristics, which is an essential requirement for traction and electric vehicle applications. For getting the wider speed-torque variations, 15 - Phi PPMIM drive is analyzed, which is capable to operate at 2-pole 15-phase, 6-pole 5-phase, and 10-pole 3-phase modes. In these pole-phase operations, in high-phase and low-pole mode of operation, the increment in the linear modulation range with space s ector pulsewidth modulation (SVPWM) is not significant. In the low-phase and high-pole mode of operation, there will be higher torque ripples due to the higher magnitude of space harmonics. In this paper, these issues are addressed by using carrier phase-shifted SVPWM (CPS-SVPWM) and phase grouping concepts. In low-pole operation, the linear modulation is enriched by using conventional 3 - Phi SVPWM to drive 15-phase machine by appropriately reorganizing the phase winding connections. Similarly, in 6-pole 5-phase mode of operation, the linear modulation range of PPMIM drive is enriched by using 5 - Phi SVPWM. It is known that in high-pole mode of PPMIM drive operation, each effective phase is formed by the multiple number of equal voltage potential coils (EVPCs), which are electrically in phase. The carriers of these EVPCs per phase are phase shifted by an appropriate angle to minimize the harmonics in the effective phase voltage, which results in better torque ripple profile. In addition, the detailed comparison of three possible different CPS-SVPWMs is presented, with their pros and cons for selecting the proper carrier phase shift angle. The performance of the proposed scheme has been validated by ANSYS Maxwell two-dimensional as well as laboratory prototype on 5-hp, 15 - Phi PPMIM drive.
机译:极相调制感应电动机(PPMIM)驱动器有助于扩大速度转矩特性范围,这是牵引和电动汽车应用的基本要求。为了获得更大的速度转矩变化,对15-Phi PPMIM驱动器进行了分析,该驱动器能够在2极15相,6极5相和10极3相模式下运行。在这些极相位操作中,在高相位和低极操作模式下,带有空间扇区脉宽调制(SVPWM)的线性调制范围的增量并不重要。在低相和高极运行模式下,由于空间谐波的幅度较高,因此会产生较高的转矩脉动。本文通过使用载波相移SVPWM(CPS-SVPWM)和相位分组概念解决了这些问题。在低极运行中,通过使用常规的3-Phi SVPWM通过适当地重组相绕组连接来驱动15相电机,从而丰富了线性调制。同样,在6极5相工作模式下,通过使用5-Phi SVPWM可以丰富PPMIM驱动器的线性调制范围。众所周知,在PPMIM驱动操作的高极模式下,每个有效相位由多个同相的等电位线圈(EVPC)形成。这些EVPC的每个相的载波相移一个合适的角度,以最大程度地减小有效相电压中的谐波,从而产生更好的转矩纹波曲线。此外,还介绍了三种可能的不同CPS-SVPWM的详细比较,以及它们在选择合适的载波相移角时的利弊。拟议方案的性能已在5 hp,15-Phi PPMIM驱动器上通过ANSYS Maxwell二维以及实验室原型进行了验证。

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