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A comparative performance study of four-pole induction motors and synchronous reluctance motors in variable speed drives

机译:变速驱动器中四极感应电动机和同步磁阻电动机的比较性能研究

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摘要

Design aspects of the Transversally Laminated Anisotropic (TLA) Synchronous Reluctance Motor (SynRM) are studied and the machine performance analysis compared to the Induction Motor (IM) is done. The SynRM rotor structure is designed and manufactured for a30 kW, four-pole, three-phase squirrel cage induction motor stator. Both the IMand SynRM were supplied by a sensorless Direct Torque Controlled (DTC) variablespeed drive. Attention is also paid to the estimation of the power range where the SynRM may compete successfully with a same size induction motor. A technicalloss reduction comparison between the IM and SynRM in variable speed drives is done. The Finite Element Method (FEM) is used to analyse the number, location and width of flux barriers used in a multiple segment rotor. It is sought for a high saliency ratio and a high torque of the motor. It is given a comparison between different FEM calculations to analyse SynRM performance. The possibility to take into account the effect of iron losses with FEM is studied. Comparison between the calculated and measured values shows that the design methods are reliable. A new application of the IEEE 112 measurement method is developed and used especially for determination of stray load losses in laboratory measurements. The study shows that, with some special measures, the efficiency of the TLA SynRM is equivalent to that of a high efficiency IM. The power factor of the SynRM at rated load is smaller than that of the IM. However, at lower partial load this difference decreases and this, probably, brings that the SynRM gets a better power factor in comparison with the IM. The big rotor inductance ratio of the SynRM allows a good estimating of the rotor position. This appears to be very advantageous for the designing of the rotor position sensor-less motor drive. In using the FEM designed multi-layer transversally laminated rotor with damper windings it is possible to design a directly network driven motor without degrading the motorefficiency or power factor compared to the performance of the IM.
机译:研究了横向叠片各向异性(TLA)同步磁阻电动机(SynRM)的设计方面,并完成了与感应电动机(IM)相比的机器性能分析。 SynRM转子结构是为30 kW四极三相鼠笼式感应电动机定子设计和制造的。 IMand SynRM均由无传感器直接转矩控制(DTC)变速驱动器提供。还需要注意功率范围的估计,在该功率范围内,SynRM可以与相同尺寸的感应电动机成功竞争。进行了IM和SynRM在变速驱动器中的技术损失减少比较。有限元方法(FEM)用于分析多段转子中使用的磁通屏障的数量,位置和宽度。寻求高凸度比和高转矩的电动机。在不同的FEM计算之间进行了比较,以分析SynRM性能。研究了将有限元法考虑铁损影响的可能性。计算值和测量值的比较表明,设计方法是可靠的。开发了IEEE 112测量方法的新应用,并将其特别用于确定实验室测量中的杂散负载损耗。研究表明,通过采取一些特殊措施,TLA SynRM的效率与高效IM相当。 SynRM在额定负载下的功率因数小于IM的功率因数。但是,在较低的部分负载下,此差异减小,这很可能使SynRM与IM相比获得了更好的功率因数。 SynRM的大转子电感比可以很好地估算转子位置。这对于无转子位置传感器的电动机驱动器的设计看来是非常有利的。通过使用FEM设计的带有阻尼绕组的多层横向叠片转子,可以设计直接网络驱动的电动机,而与IM的性能相比,不会降低电动机的效率或功率因数。

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    Haataja Jorma;

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  • 年度 2003
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