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Reduction of Cogging Torque in Dual Rotor Permanent Magnet Generator for Direct Coupled Wind Energy Systems

机译:用于直接耦合风能系统双转子永磁发电机中齿槽扭矩的减少

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In wind energy systems employing permanent magnet generator, there is an imperative need to reduce the cogging torque for smooth and reliable cut in operation. In a permanent magnet generator, cogging torque is produced due to interaction of the rotor magnets with slots and teeth of the stator. This paper is a result of an ongoing research work that deals with various methods to reduce cogging torque in dual rotor radial flux permanent magnet generator (DRFPMG) for direct coupled stand alone wind energy systems (SAWES). Three methods were applied to reduce the cogging torque in DRFPMG. The methods were changing slot opening width, changing magnet pole arc width and shifting of slot openings. A combination of these three methods was applied to reduce the cogging torque to a level suitable for direct coupled SAWES. Both determination and reduction of cogging torque were carried out by finite element analysis (FEA) using MagNet Software. The cogging torque of DRFPMG has been reduced without major change in induced emf. A prototype of 1 kW, 120 rpm DRFPMG was fabricated and tested to validate the simulation results. The test results have good agreement with the simulation predictions.
机译:在采用永磁发电机的风能系统中,需要减小齿槽扭矩以进行光滑可靠的操作。在永磁发电机中,由于转子磁铁与定子的槽和齿的相互作用而产生齿槽扭矩。本文是持续的研究工作,该工作涉及各种方法来减少双转子径向磁通永磁发电机(DRFPMG)中的齿槽扭矩,用于直接耦合单独的风能系统(锯)。应用三种方法以减少DRFPMG中的齿槽扭矩。该方法正在改变槽开口宽度,改变磁极电弧宽度和槽开口的移位。应用这三种方法的组合以将齿槽扭矩减少到适合于直接耦合锯的水平。通过使用磁体软件的有限元分析(FEA)进行齿槽扭矩的确定和降低。 DRFPMG的齿槽扭矩已经减少,没有诱导EMF的重大变化。制造和测试1 kW,120rpm DRFPMG的原型,以验证模拟结果。测试结果与模拟预测有良好的一致性。

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