磁悬浮轴承研究综述

被引:48
作者
刘迎澍
黄田
机构
[1] 天津内燃机研究所!天津
[2] 天津大学
关键词
磁悬浮轴承; 超导磁轴承; 主动控制; 无传感器磁轴承;
D O I
暂无
中图分类号
学科分类号
摘要
旋转机械正在朝高转速、高精度和高柔性等多方向发展,这在很大程度上得益于轴承技术的不断改进。磁悬浮轴承由于具有转速高、无磨损、无需润滑、可靠性好和动态特性可调等突出优点,近20年来已在许多工业部门得到广泛应用。针对该领域近年来的研究成果及发展动向进行了全面的综述。
引用
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页码:5 / 9
页数:5
相关论文
共 25 条
[1]  
Imbalance compensation and automation balancing in magnetic bearing systems using the q-parameterization theory. Mohamed A,Busch-Vishniac H J. IEEE Transactions on Control Systems Technology . 1995
[2]  
Magnetic bearing control systems and adaptive fored balancing. Shafai B,et al. IEEE Control Systems Magazine . 1994
[3]  
Real Time Balance of a Flexible Rotor Supported by Magnetic Bearing. Kanemitsu Y,Ohsawa M,Watanabe,et al. 2nd International Symposium on Magnetic Bearing . 1990
[4]  
Electromagnetic suspension∶new results using neural networks. Sinha P k,et al. IEEE Transactions on Magnetics . 1993
[5]  
Stability analysis of self-sensing magnetic bearing controllers. Mizuno T,Araki K,Bleuler H. IEEE Transactions on Control Systems Technology . 1996
[6]  
Self-sensing active magnetic levitation. Vischer D,Bleuler H. IEEE Transactions on Magnetics . 1993
[7]  
Balancing Measurement System Using Magnetic Bearing. Highchi T. Proceedings of 1st International Symposium on Magnetic Bearing . 1988
[8]  
Active vibration control of a flexible rotor using H∞ control theory. Nonami K,et al. JSME International Journal . 1992
[9]  
Modal testing and suboptimal vibration control of flexible rotor bearing system by using a magnetic bearing. Lee C W,Kim J S. ASME Journal of Dynamic System, Measurement, and Control . 1992
[10]  
Analysis of self-sensing active magnetic bearings working on inductance measurement principle. Sivadasan K K. IEEE Transactions on Magnetics . 1996