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Coreless Dual-rotor Disc Hysteresis Motor, Modeling, and Performance Prediction

机译:无铁芯双转子盘磁滞电机,建模和性能预测

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摘要

Due to their robust structure, low and constant starting current, constant torque, and smooth and noiseless operation, small- and medium-sized power rating hysteresis motors are commonly employed in high-speed applications. However, hysteresis motors, in general, have a comparatively low power factor, efficiency, and torque density. In this article, a new structure, the coreless dual-rotor disc hysteresis motor, is introduced. Electromagnetic field analysis of the machine is performed, and its steady-state equivalent circuit is deduced. An algorithm employed in a computer simulation predicts the operating characteristics of the new machine. In comparison with common hysteresis machines, the superiority of the coreless dual-rotor disc hysteresis motor in regards to efficiency and power factor is revealed. Moreover, a sensitivity analysis is accomplished, and impacts of some structural parameters on the performance of the machine are illustrated. Simulation and a few experimental results for a prototype machine are given, and these validate the equivalent circuit and proposed model of the coreless dual-rotor disc hysteresis motor.
机译:由于其坚固的结构,低且恒定的启动电流,恒定的转矩以及平稳无噪音的运行,因此,中小型额定功率磁滞电动机通常用于高速应用中。然而,磁滞电动机通常具有相对较低的功率因数,效率和转矩密度。本文介绍了一种新型结构,即无铁芯双转子盘磁滞电机。对机器进行电磁场分析,推导出其稳态等效电路。计算机仿真中采用的算法可预测新机器的运行特性。与普通的磁滞电机相比,无芯双转子盘磁滞电机在效率和功率因数方面具有优越性。此外,完成了灵敏度分析,并说明了一些结构参数对机器性能的影响。给出了原型机的仿真结果和一些实验结果,这些结果验证了无芯双转子盘式磁滞电机的等效电路和提出的模型。

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