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Comparison of apparent power consumption in Synchronous Reluctance and Induction Motor under vector control

机译:在载体控制下同步磁阻和感应电动机的表观功耗比较

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The advances in power electronics devices have opened the possibility of counting on Synchronous Reluctance Motors (SynRM) where variation of speed is required. However, Induction Motors (IM) have successfully supplied this demand in industrial applications. As for traction applications, SynRM aided by Permanent Magnet is also an alternative to Interior Permanent Magnet Motors (IPM). In this study, a 55kW Inverter-Driven Induction Motor (IDIM) was designed and evaluated through Indirect Field Oriented Current Control (IFOCC) strategy. Likewise, an equivalent Synchronous Reluctance Motor with inductance ratio in the range of 6-10 was also designed by using the same stator as IDIM. A Vector Control (VC) strategy based upon the point of maximum power factor was implemented to test its performance. Both motors optimized for variable speed applications were compared under the same variations of load, voltage and frequency in order to assess their consumption from an input apparent power point of view. By assuming a limit for the input power provided by the same Variable Frequency Driver (VFD), the Induction Motor was able to bear a higher overload, whereas the Synchronous Reluctance Motor compared favorably and showed lower power consumption in average under intermittent loads.
机译:电力电子设备的进步开通了计算所需速度变化的同步磁阻电动机(Synrm)的可能性。然而,感应电机(IM)已成功在工业应用中提供了这一需求。对于牵引应用,由永磁体辅助的Synrm也是内部永磁电动机(IPM)的替代方案。在本研究中,通过间接场导向电流控制(IFOCC)策略设计和评估了55kW逆变器驱动的感应电动机(IDIM)。同样地,通过使用与IDIM的相同定子相同的定子,也设计了具有6-10范围内的电感比的等效同步磁阻电动机。基于最大功率因数点的矢量控制(VC)策略实现了测试其性能。在相同的负载,电压和频率变化下比较了针对可变速度应用优化的两个电动机,以便从输入表观功率的角度评估它们的消耗。通过假设由相同的可变频率驱动器(VFD)提供的输入功率的限制,感应电动机能够承受更高的过载,而同步磁阻电动机有利地比较并且在间歇负载下平均较低的功耗。

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