期刊文献+

Adaptive PI Control Strategy for Flat Permanent Magnet Linear Synchronous Motor Vibration Suppression 被引量:5

Adaptive PI Control Strategy for Flat Permanent Magnet Linear Synchronous Motor Vibration Suppression
在线阅读 下载PDF
导出
摘要 Due to low damping ratio, fiat permanent magnet linear synchronous motor's vibration is difficult to be damped and the accuracy is limited. The vibration suppressing results are not good enough in the existing research because only the longitudinal direction vibration is considered while the normal direction vibration is neglected. The parameters of the direct-axis current controller are set to be the same as those of the quadrature-axis current controller commonly. This causes contradiction between signal noise and response. To suppress the vibration, the electromagnetic force model of the flat permanent magnet synchronous linear motor is formulated first. Through the analysis of the effect that direct-axis current noise and quadrature-axis current noise have on both direction vibration, it can be declared that the conclusion that longitudinal direction vibration is only related to the quadrature-axis current noise while the normal direction vibration is related to both the quadrature-axis current noise and direct-axis current noise. Then, the simulation test on current loop with a low-pass filter is conducted and the results show that the low-pass filter can not suppress the vibration but makes the vibration more severe. So a vibration suppressing strategy that the proportional gain of direct-axis current controller adapted according to quadrature-axis reference current is proposed. This control strategy can suppress motor vibration by suppressing direct-axis current noise. The experiments results about the effect of Kp and Ti on normal direction vibration, longitudinal vibration and the position step response show that this strategy suppresses vibration effectively while the motor's motion performance is not affected. The maximum reduction of vibration can be up to 40%. In addition, current test under rated load condition is also conducted and the results show that the control strategy can avoid the conflict between the direct-axis current and the quadrature-axis current under typical load. Adaptive PI control strategy can effectively suppress the flat permanent magnet linear synchronous motor's vibration without affecting the motor's performance. Due to low damping ratio, fiat permanent magnet linear synchronous motor's vibration is difficult to be damped and the accuracy is limited. The vibration suppressing results are not good enough in the existing research because only the longitudinal direction vibration is considered while the normal direction vibration is neglected. The parameters of the direct-axis current controller are set to be the same as those of the quadrature-axis current controller commonly. This causes contradiction between signal noise and response. To suppress the vibration, the electromagnetic force model of the flat permanent magnet synchronous linear motor is formulated first. Through the analysis of the effect that direct-axis current noise and quadrature-axis current noise have on both direction vibration, it can be declared that the conclusion that longitudinal direction vibration is only related to the quadrature-axis current noise while the normal direction vibration is related to both the quadrature-axis current noise and direct-axis current noise. Then, the simulation test on current loop with a low-pass filter is conducted and the results show that the low-pass filter can not suppress the vibration but makes the vibration more severe. So a vibration suppressing strategy that the proportional gain of direct-axis current controller adapted according to quadrature-axis reference current is proposed. This control strategy can suppress motor vibration by suppressing direct-axis current noise. The experiments results about the effect of Kp and Ti on normal direction vibration, longitudinal vibration and the position step response show that this strategy suppresses vibration effectively while the motor's motion performance is not affected. The maximum reduction of vibration can be up to 40%. In addition, current test under rated load condition is also conducted and the results show that the control strategy can avoid the conflict between the direct-axis current and the quadrature-axis current under typical load. Adaptive PI control strategy can effectively suppress the flat permanent magnet linear synchronous motor's vibration without affecting the motor's performance.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第1期11-20,共10页 中国机械工程学报(英文版)
基金 supported by National Science and Technology Major Projects of China (Grant Nos. 2011ZX04016-011,2009ZX04010-022)
关键词 permanent magnet motor linear motor motor vibration vibration suppression permanent magnet motor, linear motor, motor vibration, vibration suppression
  • 相关文献

参考文献1

二级参考文献19

  • 1徐月同,傅建中,陈子辰.永磁直线同步电机推力波动优化及实验研究[J].中国电机工程学报,2005,25(12):122-126. 被引量:96
  • 2林家春,李伟,赵彤,王先逵,刘成颖.永磁直线同步电动机推力波动抑制策略[J].控制理论与应用,2007,24(3):449-452. 被引量:16
  • 3Youn S W, Lee J J, Yoon H S, et al. A new cogging-free permanent-magnet linear motor[J]. IEEE Transactions on Magnetics, 2008, 44(7): 1785-1790.
  • 4Jang Seokmyeong, Lee Sungho, Yoon Inki, et al. Design criteria for detent force reduction of permanent magnet linear synchronous motor with Halbach array[J]. IEEE Transactions onMagnetics, 2002, 38(5): 3261-3263.
  • 5Kim Y, Watada M, Dohmeki H. Reduction of the cogging force at the outlet edge of a stationary discontinuous primary linear synchronous motor[J]. IEEE Transactions on Magnetics, 2007, 43(1): 40-45.
  • 6Zhu YW, Lee SG, Chtmg KS, et al. Investigation of auxiliary poles design criteria on reduction of end effect of detent force for PMLSM[J]. IEEE Transactions on Magnetics, 2009, 45(6): 2863-2866.
  • 7Kim Yongjae, Masaya Watada, Hideo Dohmeki. Reduction of the cogging force at the outlet edge of a stationary discontinuous primary linear synchronous motor[J]. IEEE Transactions onMagnetics, 2007, 43(1): 40-45.
  • 8Wang ShyhJier, Lin ShirKuan. Analytical prediction of the incremental inductance of the permanent magnet synchronous motors[J]. IEEE Transactions on Magnetics, 2004, 40(4): 2044-2046.
  • 9Su W T, Liaw C M. Adaptive positioning control for a LPMSM drive based on adapted inverse model and robust disturbance observer[J]. Ieee Transactions on Power Electronics. 2006, 21(2): 505-517.
  • 10Zhu Yuwu, Jin Sangmin, Chung Koonseok. Control-based reduction of detent force for permanent magnet linear synchronous motor[J]. IEEE Transactions on Magnetics, 2009, 45(6): 2827-2830.

共引文献24

同被引文献50

引证文献5

二级引证文献18

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部