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Design, construction, and analysis of a large scale inner stator radial flux magnetically geared generator for wave energy conversion

机译:大型内定子径向通量磁齿轮发电机波能转换的设计,构造与分析

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A magnetically geared machine (MGM) integrates a magnetic gear with a low torque, high speed electric machine to create a single compact high torque, low speed device with the size advantages of a mechanically geared system and the reliability of a direct drive machine. This work investigates the use of MGMs for wave energy conversion through the development of a large scale magnetically decoupled inner stator radial flux magnetically geared generator rated for 10 kW at an input speed of 30 rpm. Critical design trends are illustrated using parametric 2D and 3D finite element simulation results. Information is also provided about the prototype's mechanical structure and key magneto-mechanical design considerations, including the impact of modulator bridges and the extent of axially escaping leakage flux. The prototype's experimental stall torque of 3870 N·m represents a 99.1% match with the simulated stall torque and corresponds to volumetric and gravimetric torque densities of 82.8 kN·m/m3 and 14.5 N·m/kg, respectively. Additionally, the prototype achieves an experimental efficiency of approximately 90% over much of its operating range.
机译:磁力齿轮机(MGM)与低扭矩,高速电机的磁齿轮集成在一起,以产生单个紧凑的高扭矩,低速装置,具有机械齿轮系统的尺寸优势和直接驱动机的可靠性。这项工作通过开发大规模磁性解耦的内定子径向通量磁齿轮发电机以30 rpm的输入速度的输入速度来调查MGMS对波能量转换的使用。使用参数2D和3D有限元模拟结果来说明关键设计趋势。还提供了关于原型的机械结构和关键磁力机械设计考虑的信息,包括调制器桥梁的影响以及轴向逸出泄漏通量的影响。原型的实验失调扭矩为3870n·m表示99.1 \%与模拟的失速扭矩匹配,并且对应于82.8kn·m / m 3 和14.5 n·m / m / m / m / m / m / m / m / m /)的体积和重量扭矩密度。 kg分别。另外,原型达到了其在其工作范围内大约90±90℃的实验效率。

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