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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Optimal Design of a Dual Stator Winding Induction Motor With Minimum Rate Reduction Level
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Optimal Design of a Dual Stator Winding Induction Motor With Minimum Rate Reduction Level

机译:具有最小速率降低电动机的双定子绕组感应电动机的最优设计

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Flux estimation of single winding induction machines (SWIMs) operating in a zero-speed region is challenging, since in this operation region, the voltage drop on the stator resistance value, which varies with the operating point, is not negligible. Furthermore, in this operation region, because of the interference between higher band frequencies of a dc-rejection filter with low-pass filter of the stator currents, the dc-offset of measured currents may distort the true values of the stator current. Dual stator winding induction machines (DSWIMs), which have two sets of three-phase windings with different number of pole pairs and adapt a standard squirrel cage rotor, have overcame the associated problems of SWIMs in the zero-speed region. Nevertheless, DWSIMs have lower power rating than SWIMs if they use the same stator and rotor frames. In this article, an optimal design procedure is proposed for DSWIMs, which benefits the advantages of DSWIMs and surmounts the rate reduction problem as much as possible. In this regard, the optimal flux levels ratio of winding sets and the best pole pair ratio are determined first. Afterward, the winding specifications are designated to have maximum output power, while the DSWIM advantages, especially the zero-speed region operation capability, remain valid. A DSWIM is designed, simulated in ANSYS/MAXWELL and fabricated based on the proposed method and utilizing commercially available standard stator and rotor frames. Experimental assessments verify that the DSWIM prototype has improved the rate-reduction problem up to 19% in comparison to similar proposed DSWIMs.
机译:在零速度区域操作的单绕绕组感应机器(游泳)的磁通估计是具有挑战性的,因为在该操作区域中,与操作点变化的定子电阻值上的电压降不可忽略不计。此外,在该操作区域中,由于使用定子电流的低通滤波器的DC抑制滤波器的高频频率之间的干扰,所测量电流的DC偏移可能扭曲定子电流的真实值。双定子绕组感应机(DSWIMS),具有两组三相绕组,具有不同数量的杆对和调整标准的鼠笼式转子,在零速度区域中越过游泳的相关问题。然而,如果使用相同的定子和转子框架,Dwsims的功率额定值比游泳更低。在本文中,为DSWIM提出了最佳设计程序,这使得DSWIMS的优势和超越速率降低问题尽可能多。在这方面,首先确定卷绕组和最佳磁极对比的最佳通量水平比。之后,绕组规格指定为具有最大输出功率,而DSWIM优点,尤其是零速度区域操作能力保持有效。设计了一种DSWIM,模拟ANSYS / MAXWELL和基于所提出的方法制造,并利用市售的标准定子和转子框架。实验评估验证了与类似提出的DSWIM相比,DSWIM原型提高了高达19%的速度减少问题。

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