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Comparative Study of Axial Flux Magnetically Geared Machine with Conventional Axial Flux YASA Machine.

机译:轴向通量轴向通量亚达机的轴向磁通机的比较研究。

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Summary form only given. Magnetic gears (MGs) have recently been proposed to replace conventional mechanical gears in various electromechanical systems. MGs have competitive torque transmission capability compared with their mechanical counterpart[1]. Moreover, by integrating an MG into a conventional PM machine, a magnetically geared machine has emerged, greatly broadening the machine topology. It always has the merits of high torque density and reduced overall size in comparison with conventional PM machine axially combined with MGs[2]. In general, the same as conventional machines, magnetically geared machines can be considered by their flux orientations, i.e. radial and axial flux machines. Axial flux permanent magnet (AFPM) machines have unique advantages over radial flux PM (RFPM) machines, such as high torque density, low rotor losses, and high efficiency. Among various AFPM machines, the yokeless and segmented armature (YASA) machine has shown to exhibit superior performance. The machine has a unique design in which the stator is formed by separated segments with windings, and moreover, two identical surface mounted PM rotors are axially located on both stator sides[3]. Based on YASA machine, a new axial flux magnetically geared machine for power split applications has been presented in[4]. The presented machine essentially has the same stator structure as the conventional YASA machine. However, by employing different rotor pole pairs in the YASA machine, a new axial flux magnetically geared machine can be created. In this study, the axial flux magnetically geared machine and the conventional YASA machine with the same volume will be comparatively studied. Individual optimizations have been carried out to maximize the average torque of two machines. Moreover, the machine performance at no load and on load will be compared.
机译:摘要表格仅给出。最近已经提出了磁齿轮(MGS)以取代各种机电系统中的传统机械齿轮。与其机械对手相比,MGS具有竞争力的扭矩传递能力[1]。此外,通过将Mg集成到传统的PM机器中,出现了磁齿轮机,大大拓宽了机器拓扑。它始终具有高扭矩密度的优点,并且与传统的PM机器轴向结合MGS [2]相比,其始终具有高扭矩密度和整体尺寸。通常,与传统机器相同,可以通过它们的磁通方向考虑磁齿轮机,即径向和轴向磁通机。轴向磁通永磁体(AFPM)机器与径向磁通PM(RFPM)机器(如高扭矩密度,低转子损耗和高效率)具有独特的优势。在各种AFPM机器中,Yokeless和分段电枢(Yasa)机器已经显示出卓越的性能。该机器具有独特的设计,其中定子由具有绕组的分离的区段形成,而且,两个相同的表面安装的PM转子轴向位于两个定子侧上[3]。基于Yasa机器,在[4]中,已介绍了一种用于电力分配应用的新型轴向通量磁齿轮机。所提出的机器基本上具有与传统的yasa机器相同的定子结构。然而,通过在Yasa机器中采用不同的转子杆对,可以创建一种新的轴向磁通磁齿轮机。在该研究中,磁齿轮磁齿轮和具有相同体积的传统Yasa机器将进行比较。已经进行了个性化优化以最大化两台机器的平均扭矩。此外,将比较无负载和负载的机器性能。

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