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Optimal design of a high-speed slotless permanent magnet synchronous generator with soft magnetic composite stator yoke and rectifier load

机译:具有软磁复合定子轭和整流器负载的高速无槽永磁同步发电机的优化设计

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摘要

This paper presents a specific design methodology of a DC generation system using a high-speed slotless generator with surface-mounted magnets and soft magnetic composite (SMC) stator yoke connected to a rectifier. The method is based on an analytical design model of the machine, an electrical model of the machine-rectifier system and a non-linear optimization procedure. The coupling between both models is achieved by a specific correction mechanism during the iterative process that performs an efficient convergence of the optimization procedure. The machine design model is derived from an analytical computation of the two-dimensional magnetic field distribution created by the magnets, the armature currents and the stator eddy currents that circulate in the SMC material. It has been cross-validated by 2D finite element analysis. The design approach is applied to the specifications of a 1.5 MW, 18,000 rpm slotless permanent magnet generator with a rated DC output voltage of 1500 V.
机译:本文提出了一种直流发电系统的特定设计方法,该系统使用具有表面安装磁体和连接到整流器的软磁复合(SMC)定子轭的高速无槽发电机。该方法基于机器的分析设计模型,机器-整流器系统的电气模型和非线性优化程序。这两个模型之间的耦合是通过在执行优化过程的有效收敛的迭代过程中使用特定的校正机制实现的。机器设计模型是通过对在SMC材料中循环的磁体,电枢电流和定子涡流产生的二维磁场分布进行分析计算得出的。它已经通过2D有限元分析进行了交叉验证。该设计方法适用于额定直流输出电压为1500 V的1.5 MW,18,000 rpm无槽永磁发电机的规格。

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