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首页> 外文期刊>Journal of Microelectromechanical Systems >Microfabricated High-Speed Axial-Flux Multiwatt Permanent-Magnet Generators—Part I: Modeling
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Microfabricated High-Speed Axial-Flux Multiwatt Permanent-Magnet Generators—Part I: Modeling

机译:微型高速轴向通量多瓦永磁发电机—第一部分:建模

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This paper presents the modeling of permanent-magnet (PM) generators for use in microscale power generation systems. The generators are three-phase, axial-flux, synchronous machines, each consisting of a multipole, surface-wound stator and PM rotor. The machines are modeled by analytically solving two-dimensional (2-D) magneto-quasi-static Maxwell's equations as a function of radius. The 2-D field solutions are then integrated over the radial span of the machine to determine circuit parameters such as open-circuit voltage and inductance as well as hysteresis loss in the stator core and eddy current losses in the stator core and windings. The model provides a computationally fast method to determine power and efficiency of an axial-flux PM machine as a function of geometry, speed, and material properties. The open-circuit voltage predictions are also shown to agree well with 3-D finite-element analysis simulation results. 1700
机译:本文介绍了用于微型发电系统的永磁(PM)发电机的建模。发电机是三相轴向磁通的同步电机,每个发电机都由一个多极,表面绕线定子和永磁转子组成。通过解析求解二维(2-D)磁准静态Maxwell方程作为半径的函数来对机器进行建模。然后,将二维磁场解决方案在电机的径向范围内进行积分,以确定电路参数,例如开路电压和电感以及定子铁芯中的磁滞损耗以及定子铁芯和绕组中的涡流损耗。该模型提供了一种计算快速的方法,可根据几何形状,速度和材料属性确定轴向磁通永磁电机的功率和效率。还显示了开路电压预测与3-D有限元分析仿真结果非常吻合。 1700

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