• DocumentCode
    3678089
  • Title

    Amplitude control of the cantilever of the transverse dynamic force microscope

  • Author

    Thang Nguyen;Christopher Edwards;Guido Herrmann;Toshiaka Hatano;Stuart C. Burgess;Mervyn Miles

  • Author_Institution
    School of Electrical Engineering, International University, Vietnam National University- HCM city, Thu Duc, Ho Chi Minh city, Vietnam
  • fYear
    2015
  • Firstpage
    701
  • Lastpage
    706
  • Abstract
    In this paper, the problem of amplitude control of the cantilever in a Transverse Dynamic Force Microscope (TDFM) is considered. The dynamics of the cantilever are initially presented as a partial differential equation which is subsequently approximated by a finite dimensional model. The unknown shear force parameters which affect the amplitude of the cantilever are estimated by an adaptive scheme. A controller which utilizes the parameter estimates of the cantilever shear force model is proposed to regulate the amplitude of the cantilever. This is achieved by an adaptive internal model based feedforward approach using a novel estimation scheme, to create an overall feedforward model with unity gain. To counter the effect of model uncertainty of the cantilever, a feedback scheme senses the difference between the expected unity gain model and the actual cantilever tip position, and feeds back this error dynamically. Numerical simulations are presented to illustrate the effectiveness of the method.
  • Keywords
    "Force","Adaptation models","Dynamics","Transfer functions","Mathematical model","Yttrium","Microscopy"
  • Publisher
    ieee
  • Conference_Titel
    Intelligent Control (ISIC), 2015 IEEE International Symposium on
  • ISSN
    2158-9860
  • Electronic_ISBN
    2158-9879
  • Type

    conf

  • DOI
    10.1109/ISIC.2015.7307292
  • Filename
    7307292