电梯用高效永磁同步减速电机的设计

Jonq-Chin Hwang, Chuan-Sheng Liu, Po-Cheng Chen
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引用次数: 8

摘要

针对智能电梯的特点,研制了高效永磁同步减速电机。传统齿轮减速器的效率(66%-76%)太低,无法在电梯中运行,因此取而代之的是高效节能的再生技术。永磁同步电机的设计目标面临转矩密度、效率和转矩脉动问题。提出了一种新的多目标优化设计方法。基于田口法的杆形优化提供了这些目标之间的关键因素分析,然后进行单因素优化方法求解。最后,确定了电机的协议类型,3.0 KW永磁同步电动机。得到了电机在负载作用下的性能和参数。电机的效率接近92%,达到了设计目标。得到了电机的d轴电抗、q轴电抗、电阻、磁链等关键参数。该新型电机的实测结果与仿真结果接近。在空间上,总谐波失真(THD)较低,表明该电机能够提供良好的转矩撕裂器实现性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of permanent-magnet synchronous gear motor with high efficiency for elevators
The high efficiency permanent-magnet synchronous gear-motor (PMSGM) is developed for smart elevators. The efficiency of the traditional gear reducers (66%-76%) is too low to run in the elevator, so the energy saving and reproduction technology with high efficiency is instead. The design objectives of PMSGM face torque density, efficiency and torque ripple questions. This paper presents new optimization design methods for the multi objectives. The pole shape optimization based on Taguchi method provides the key factor analysis between those objectives, then proceeds the one factor optimization method to obtain the solution. Finally, the protocol type of the motor, the 3.0 KW PMSGM is made. The performance and parameters of the motor is obtained under the load. The efficiency of the motor is near 92% and meets the design goal. The key parameters of the motor are obtained, such as d-axis reactance, q-axis reactance, resistance, and flux linkage. The field results about the new motor are closed to that of the simulation. Spatially, the lower total harmonics distortion (THD) shows that the motor will provide a good performance of the implementation about the torque ripper.
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