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Core Loss Analysis of Transverse Flux Tubular Motor in Variable-Speed Reciprocating Periodic Motion Mode

机译:变速往复周期运动模式下横向磁通管状电动机的核心损失分析

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As a novel tubular motor, the merits of transverse flux tubular motor different from other traditional linear motors are as follows: there is no competition between the space requirement of flux carrying core irons and the space occupied by armature windings. It can increase the force density due to the magnetic load and the electric load are decoupled. Transverse flux tubular motor seems to be suitable for some fields requiring high force density. This paper investigates the stator core loss of transverse flux tubular motor. The influences on the stator core loss are analyzed in detail, including the speed, load current, and the lead-lag control load current. Besides, the calculation of core loss in a variable speed reciprocating periodic motion mode is given the special attention. It is proposed a method of calculating the variable speed reciprocating periodic motion of the stator core loss in this paper. In order to verify the accuracy of calculation, the core loss measurement is designed and the comparison results are analyzed.
机译:作为一种新型管状电机,与其他传统的线性电机不同的横向磁通管状电机的优点如下:携带芯铁芯的空间要求与电枢绕组占据的空间之间没有竞争。它可以增加由于磁负荷引起的力密度,并且电负载分离。横向磁通管电机似乎适用于需要高力密度的某些领域。本文研究了横向磁通管状电动机的定子芯损失。详细分析了对定子芯损耗的影响,包括速度,负载电流和引线滞后控制负载电流。此外,赋予了可变速度往复周期运动模式的核心损失的计算特别注意。提出了一种计算本文中定子芯损耗的变速往复周期运动的方法。为了验证计算的准确性,设计了核心损耗测量并分析了比较结果。

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