Comparative Study of Linear Variable Flux Reluctance Machine with Linear Wound Field Flux Reversal Machine

Tingting Jiang;Liang Xu;Jinghua Ji;Wenxiang Zhao
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Abstract

As members of doubly salient magnetless linear machines, linear variable flux reluctance (LVFR) and wound field flux reversal (LWFFR) machines inherit the merits of conventional magnetless linear machines such as low cost, high flux adjustment capability and high reliability. Furthermore, like linear switched reluctance machine, they have a very simple and compact long secondary, which are very attractive for long stroke applications. However, low force capability is their major defect. To solve this issue, new LVFR and LWFFR machine topologies were proposed in recent work, while lacking studies on their force improvement mechanism and further force evaluation. In this paper, LVFR and LWFFR machines with improved force performance are comparatively studied with the emphasis on their force capabilities. The operation principle of the two machines is analyzed based on magnetic field harmonics produced by flux modulation. Contributions of air-gap flux density harmonic components to no-load back electromagnetic forces of the two machines are analyzed and the average force equation is derived. Moreover, force capabilities of the both machines are investigated by means of the time-stepping finite-element analysis to verify the theoretical analysis.
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线性变磁通磁阻电机与线性绕线磁场磁通反转电机的比较研究
作为双凸极无磁直线电机的组成部分,线性可变磁通磁阻(LVFR)和绕场磁通反转(LWFFR)电机继承了传统无磁直线机的低成本、高通量调节能力和高可靠性等优点。此外,与线性开关磁阻电机一样,它们有一个非常简单紧凑的长次级,这对长行程应用非常有吸引力。然而,低兵力能力是他们的主要缺陷。为了解决这个问题,最近的工作中提出了新的LVFR和LWFFR机器拓扑,但缺乏对其力改进机制和进一步的力评估的研究。本文对具有改进的受力性能的LVFR和LWFFR机器进行了比较研究,重点研究了它们的受力能力。基于磁通调制产生的磁场谐波,分析了两种电机的工作原理。分析了气隙磁通密度谐波分量对两台电机空载反电磁力的贡献,导出了平均力方程。此外,通过时间步进有限元分析的方法对两种机械的受力性能进行了研究,以验证理论分析的正确性。
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