Design and simulation of a conical rotor axial -radial flux permanent magnet generator of power 1.1kW for micro wind turbines

被引:1
作者
Nourifard, Shiva [1 ]
Hasheminejad, Seyyed Mahmoud [1 ]
Jami, Majid [1 ]
机构
[1] Mat & Energy Res Ctr, Karaj, Iran
来源
REVISTA INNOVACIENCIA | 2019年 / 7卷 / 02期
关键词
direct-drive wind turbine; permanent magnet machines; permanent magnet generator; coneshaped rotor; finite element method;
D O I
10.15649/2346075X.770
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In this study, design, design calculations and simulation of a permanent magnet generator, which includes two sections of radial and axial flux, are discussed. The output power from the generator is 1.1 kilowatt. In the design of the generator, a cone-shaped structure with a 90-degree cone angle of 45 degrees from the sides is used for the rotor. In order to compare the various structures of the synchronous generator, and given that today, permanent magnet generators have been considered with regard to features such as lower weight, higher yields and higher power density than other conventional generators. A finite element analysis of the generator developed in Maxwell software. In the radial flux section, the generator includes a conical rotor and a cone stator. The windings on the external stator are trapezoidal and are located in stator racks. The finite element analysis of the generator confirms that permanent magnet magnets designed on the inner rotor have provided a magnetic flux equal to 1.2 Tesla in the air gap between the generator and the winding of the stator. The rotor magnetic field analysis, rotor magnetic field strength, magnetic field intensity, and magnetic field density at a speed of 500 rpm for cone structure have been performed. In the axial flux section, the generator consists of two rotors and a grooved stator, which is obtained by simulating a 1.1 kW power with a sinusoidal three-phase voltage. Iwo sections of radial flux with a cone-shaped rotor and axial flux side by side make up the generator.
引用
收藏
页数:18
相关论文
共 26 条
  • [1] Design Study of 10 kW Superconducting Generator for Wind Turbine Applications
    Abrahamsen, A. B.
    Mijatovic, N.
    Seiler, E.
    Sorensen, M. P.
    Koch, M.
    Norgard, P. B.
    Pedersen, N. F.
    Traeholt, C.
    Andersen, N. H.
    Ostergard, J.
    [J]. IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2009, 19 (03) : 1678 - 1682
  • [2] [Anonymous], 2010, THESIS
  • [3] [Anonymous], 2017, Global Status Report 2017
  • [4] [Anonymous], 2016, P 2016 2 INT C INTEL
  • [5] Aydin M., 2004, AXIAL FLUX PERMANENT
  • [6] Basar M.F., 2010, P INT C EN SUST DEV, DOI [10.1109/esd.2010.5598773, DOI 10.1109/ESD.2010.5598773]
  • [7] Carlin P. W., 2001, HIST STATE ART VARIA, DOI [10.2172/776935, DOI 10.2172/776935]
  • [8] PM wind generator topologies
    Chen, YC
    Pillay, P
    Khan, A
    [J]. IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2005, 41 (06) : 1619 - 1626
  • [9] Low-voltage ride-through of a full converter wind turbine with permanent magnet generator
    Conroy, J. F.
    Watson, R.
    [J]. IET RENEWABLE POWER GENERATION, 2007, 1 (03) : 182 - 189
  • [10] Axial Flux PM Machines With Concentrated Armature Windings: Design Analysis and Test Validation of Wind Energy Generators
    Di Gerlando, Antonino
    Foglia, Gianmaria
    Iacchetti, Matteo Felice
    Perini, Roberto
    [J]. IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2011, 58 (09) : 3795 - 3805