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General Airgap Field Modulation Theory for Electrical Machines

机译:电机的通用气隙场调制理论

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This paper proposes a general field modulation theory for electrical machines by introducing magnetomotive force modulation operator to characterize the influence of short-circuited coil, variable reluctance, and flux guide on the primitive magnetizing magnetomotive force distribution established by field winding function multiplied by field current along the airgap peripheral. Magnetically anisotropic stator and rotor behave like modulators to produce a spectrum of field harmonics and the armature winding plays the role of a spatial filter to extract effective field harmonics to contribute the corresponding flux linkage and induce the electromotive force. The developed field modulation theory not only unifies the principle analysis of a large variety of electrical machines, including conventional dc machine, induction machine, and synchronous machine which are just special cases of the general field modulated machines, thus eliminating the problem of the machine theory fragmentation, but also provides a powerful guidance for inventing new machine topologies.
机译:通过引入磁通势调制算子来表征短路线圈,可变磁阻和磁通量导引对由励磁绕组函数乘以励磁电流形成的原始磁化磁势分布的影响,提出了一种通用的电机调制理论。气隙外围设备。磁各向异性的定子和转子的行为就像调制器一样,产生频谱的谐波,而电枢绕组则起到空间滤波器的作用,以提取有效的磁场谐波,从而贡献相应的磁链并感应电动势。发达的场调制理论不仅统一了包括常规直流电机,感应电机和同步电机在内的多种电机的原理分析,这些电机只是一般场调制电机的特例,从而消除了电机理论的问题。碎片化,也为发明新的计算机拓扑提供了有力的指导。

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