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Modelling and performance analysis on a bearingless fixed-pole rotor induction motor

机译:无轴承定极转子感应电动机的建模与性能分析

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摘要

Both torque winding magnetic field and suspension force winding magnetic field induce currents in the rotor in conventional bearingless induction motors (BIMs). Owing to the induced currents of suspension force winding, the air gap magnetic field is affected, which results in amplitude and phase error of torque and radial suspension forces. To overcome such drawbacks, a novel BIM with a fixed-pole rotor is proposed, which is called bearingless fixed-pole rotor induction (BFPRI) motor. First, the structure of the BFPRI motor is designed and introduced. Second, the mathematical models of radial suspension forces and torque are deduced. Third, the corresponding electromagnetic characteristics, including induced currents, radial suspension forces, and torque, are investigated and compared with the conventional BIM. Finally, the prototype motor equipped with a fixed-pole rotor is constructed and experimental research is carried out. According to the finite element analysis and experimental results, for the proposed BFPRI motor, only the torque winding magnetic field induces currents in the rotor, which makes the precision of torque and radial suspension forces higher and improves the accuracy of the BIM control system.
机译:在传统的无轴承感应电动机(BIM)中,转矩绕组磁场和悬浮力绕组磁场都会在转子中感应出电流。由于悬浮力绕组的感应电流,气隙磁场受到影响,从而导致扭矩和径向悬浮力的幅度和相位误差。为了克服这些缺点,提出了一种带有固定极转子的新型BIM,称为无轴承固定极转子感应(BFPRI)电动机。首先,设计并介绍了BFPRI电机的结构。其次,推导了径向悬架力和转矩的数学模型。第三,研究了相应的电磁特性,包括感应电流,径向悬浮力和扭矩,并将其与常规BIM进行了比较。最后,构造了带有定极转子的原型电动机,并进行了实验研究。根据有限元分析和实验结果,对于所提出的BFPRI电动机,只有转矩绕组磁场在转子中感应出电流,这使得转矩和径向悬浮力的精度更高,并提高了BIM控制系统的精度。

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