Page 238 - 《振动工程学报》2026年第2期
P. 238

554                                振     动     工     程     学     报                     第 39 卷

                  2020,26(11-12):1081-1091.                     [10]  王丛涛,郭辉,孙凤. 不平衡磁悬浮转子自动平衡仿真分
              [3]  OKAMOTO E, ISHIDA Y, YANO T,et al. Passive magnetic  析  [J]. 机械工程与自动化,2021(5):60-62.
                  bearing  in  the  3rd  generation  miniature  axial  flow  pump-the  WANG Congtao,GUO Hui,SUN Feng. Simulation analy-
                  valvo  pump  2[J].  Journal  of  Artificial  Organs, 2015,  sis of automatic balancing of unbalanced magnetic suspension
                  18(2):181-184.                                    rotor[J].  Mechanical  Engineering  &Automation, 2021( 5) :
              [4]  MISGELD  B  J  E, STILLE  J, POMPRAPA  A, et  al.  60-62.
                  EPAIA: design, modelling  and  control  of  a  novel  electro-  [11]  JIANG K J,ZHU C S,CHEN L L. Unbalance compensa-
                  pneumatic  adaptable  impedance  actuator[J].  IFAC  Proceed-  tion  by  recursive  seeking  unbalance  mass  position  in  active
                  ings,2014,47(3):6599-6605.
                                                                    magnetic bearing-rotor system[J]. IEEE Transactions on Indus-
              [5]  MILECKI  A,  ORTMANN  J.  Electrohydraulic  linear  actuator
                                                                    trial Electronics,2015,62(9):5655-5664.
                  with  two  stepping  motors  controlled  by  overshoot-free  algo-
                                                                [12]  CHEN Q,LIU G,HAN B C. Unbalance vibration suppres-
                  rithm[J]. Mechanical Systems and Signal Processing,2017,
                                                                    sion for AMBs system using adaptive notch filter[J]. Mechani-
                  96:45-57.
                                                                    cal Systems and Signal Processing,2017,93:136-150.
              [6]  GENG Z X, LI X N, LIU R X, et al. Development of a stator-
                                                                [13]  CUI P L,DU L,ZHOU X X,et al. Synchronous vibration
                  rotor integrated piezoelectric actuator for precise joint rotation
                                                                    moment  suppression  for  AMBs  rotor  system  in  control
                  of  the  robotic  arm[J].  Precision  Engineering, 2023, 82:
                                                                    moment  gyros  considering  rotor  dynamic  unbalance[J].
                  360-369.
                                                                    IEEE/ASME Transactions on Mechatronics,2022,27(5):
              [7]  孟建军,叶晓宇,刘洋,等. 基于超磁致伸缩作动器的高
                                                                    3210-3218.
                  速列车主动悬挂垂向振动控制研究            [J]. 磁性材料及器件,
                                                                [14]  XU Y P,SHEN Q,ZHANG Y,et al. Dynamic modeling of
                  2022,53(5):6-12.
                                                                    the active magnetic bearing system operating in base motion
                  MENG Jianjun,YE Xiaoyu,LIU Yang,et al. Research on
                                                                    condition[J]. IEEE Access,2020,8:166003-166013.
                  vertical  vibration  control  of  active  suspension  of  high-speed
                                                                [15]  MATSUSHITA O,IMASHIMA T,HISANAGA Y,et al.
                  train  based  on  giant  magnetostrictive  actuator[J].  Journal  of
                                                                    Aseismic  vibration  control  of  flexible  rotors  using  active
                  Magnetic Materials and Devices,2022,53(5):6-12.
                                                                    magnetic  bearing[J].  Journal  of  Vibration  and  Acoustics,
              [8]  谢振宇,牟伟兴,周红凯,等. 基于转速的磁悬浮轴承转
                                                                    2002,124(1):49-57.
                  子系统变参数控制      [J]. 振动工程学报,2012,25(6):739-
                                                                [16]  CHEN  L  Q, WANG  J  J, HAN  Q  K, et  al.  Nonlinear
                  744.
                                                                    dynamic modeling of a simple flexible rotor system subjected
                  XIE Zhenyu,MOU Weixing,ZHOU Hongkai,et al. Vari-
                                                                    to time-variable base motions[J]. Journal of Sound and Vibra-
                  able parameter control of active magnetic bearing rotor system
                  based on rotation speed[J]. Journal of Vibration Engineering,  tion,2017,404(1):58-83.
                                                                [17]  KANG M S, LYOU J, LEE J K. Sliding mode control for an
                  2012,25(6):739-744.
              [9]  宋腾,韩邦成,郑世强,等. 基于最小位移的磁悬浮转子                       active  magnetic  bearing  system  subject  to  base  motion[J].
                  变极性   LMS  反馈不平衡补偿      [J]. 振动与冲击,2015,          Mechatronics,2010,20(1):171-178.
                  34(7):24-32.
                  SONG  Teng, HAN  Bangcheng, ZHENG  Shiqiang, et  al.  第一作者:杨天舒(1998—),男,硕士。
                  Variable polarity LMS feedback based on displacement nulling  E-mail:332725@whut.edu.cn
                  to  compensate  unbalance  of  magnetic  bearing[J].  Journal  of  通信作者:吴华春(1976—),男,博士,教授。
                  Vibration and Shock,2015,34(7):24-32.                 E-mail:whc@whut.edu.cn
   233   234   235   236   237   238   239   240   241   242   243