Design of a High Torque Density Interior Permanent Magnet Synchronous Machine with improved Efficiency using Amorphous Magnetic Material

Malik Muhammad Zaid, H. Ahmad, I. Sami, Abdul Waheed, Syed Sabir Hussain Bukhari, J. Ro
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Abstract

Several novel designs and techniques are available in the literature for achieving higher torque density in electrical machines. This higher torque density usually comes at the cost of lowered efficiency or power factor of the machine. In this paper, an interior permanent magnet synchronous machine with an additional inner stator is proposed for achieving higher torque density. There are certain issues that arise with the employment of an additional stator. Firstly, the problem of temperature rise is dealt with by using a cup-shaped rotor for exhausting heat from the inner stator core. The current density of the inner stator is also kept lower, for the same reason. Hence, two separate inverters of different current ratings are used to feed current to the windings of the inner and outer stator. Secondly, the problem of increased iron losses (thereby lowered efficiency) that arises due to an additional stator is resolved by using an amorphous material as a stator core instead of silicon steel sheets. The conventional single stator machine and proposed dual stator machines with silicon steel and amorphous material are analyzed and compared using 2D-FE Analysis. The back emf, output torque, losses, and efficiency of all three machines are compared. It is showed that the proposed dual stator machine with an amorphous material core significantly improves the torque density of the machine without lowering its efficiency.
利用非晶磁性材料设计高转矩密度、提高效率的内部永磁同步电机
一些新颖的设计和技术可以在文献中实现更高的电机扭矩密度。这种更高的扭矩密度通常是以降低机器的效率或功率因数为代价的。为了获得更高的转矩密度,本文提出了一种内置定子的内置式永磁同步电机。使用额外的定子会产生一些问题。首先,采用杯形转子从定子内铁芯排出热量来解决温升问题。由于同样的原因,内部定子的电流密度也保持较低。因此,两个不同额定电流的独立逆变器被用来向内外定子的绕组提供电流。其次,通过使用非晶材料代替硅钢片作为定子铁芯,解决了由于增加定子而引起的铁损耗增加(从而降低效率)的问题。采用二维有限元分析的方法对传统的单定子电机和采用硅钢和非晶材料的双定子电机进行了分析和比较。对这三种机器的反电动势、输出转矩、损耗和效率进行了比较。结果表明,采用非晶材料铁心的双定子电机在不降低电机效率的前提下,显著提高了电机的转矩密度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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