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Rotor Design of Permanent Magnet Synchronous Machine for Pumped-storage Plant

机译:抽水蓄能电站永磁同步电机转子设计

摘要

This master thesis is partly a deeper study of which was presented in the specialization project, fall of 2014. The main objective have been to develop and design a permanent magnet synchronous machine for hydro power plant application. In this study, an analytical design tool for this purpose was developed through a Matlab script. The analytical calculations have been veried by use of nite element method analysis in machine no-load operation, and the design tool is found suciently accurate for this study.As background, a literature survey was performed, which resulted in the base for developing the analytical design tool. The relevant equations are presented in the theoretical part of this thesis.A synchronous machine at 18 MVA with eld windings have been redesigned by use of permanent magnet magnetization. The stator bore diameter was kept constant at 3.51 m in all machines simulated. At a decreased air gap of 11.0 mm, the synchronous reactance of the permanent magnet synchronous machine was computed to be 0.6 pu, and the usage of permanent magnet material to 1247 kg at minimum, in case of the desired input parameters. In this machine, the height of the surface mounted magnets were 35.3 mm, distributed in 12 poles.It has been observed possibilities for reduction in both mass and size by redesign to a permanent magnet synchronous machine, the former in greatest extent. The machine eciency was also raised in case of the permanent magnet synchronous machine, from 97.6 to 98.0 %.
机译:本硕士论文在2014年秋季的专业化项目中进行了部分更深入的研究。主要目标是开发和设计用于水电厂的永磁同步电机。在本研究中,通过Matlab脚本开发了用于此目的的分析设计工具。在机器空载运行中使用了有限元方法进行了分析计算,并找到了非常准确的设计工具。作为背景,进行了文献调查,为开发分析方法奠定了基础。设计工具。本文的理论部分提出了相关的方程式。利用永磁磁化技术对具有磁场绕组的18 MVA同步电机进行了重新设计。在所有模拟的机器中,定子孔直径保持恒定在3.51 m。在减小的11.0 mm气隙下,永磁同步电机的同步电抗计算为0.6 pu,并且在需要输入参数的情况下,永磁材料的最小使用量为1247 kg。在这台机器中,表面安装磁铁的高度为35.3毫米,分布在12极中。已经观察到通过重新设计成永磁同步电机(最大程度地减小前者)可以减小质量和尺寸。在永磁同步电机的情况下,电机效率也从97.6%提高到98.0%。

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    Wedum Svein Christian;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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