• DocumentCode
    1712155
  • Title

    A proposal for manipulating Nafion micro actuators using neural-fuzzy based control

  • Author

    Wenli Zhou ; Lei, Kin-fong ; Li, Wen J. ; Yam, Yeung

  • Author_Institution
    Dept. of Autom. & Comput.-Aided Eng., Chinese Univ. of Hong Kong, Shatin, China
  • Volume
    3
  • fYear
    2001
  • fDate
    6/23/1905 12:00:00 AM
  • Firstpage
    1327
  • Lastpage
    1330
  • Abstract
    The ability to manipulate and control biological cells with reflective-force information is a key technology necessary for many new applications in Bio-MEMS, but is currently lacking in all cellular manipulators. We report in this paper our preliminary experimental work in using an ionic conducting polymer film (ICPF) to develop a biological cellular robotic gripper with force sensing capability. ICPF actuators are able to give large deflection with small input voltage (~5V) in aqueous environments, and also able to give relatively large output voltage due to deflection by mechanical forces. Thus, ICPF actuators are investigated as possible cellular force-reflection controlled manipulators in our work. However, an universally accepted or accurate dynamic model for ICPF actuators does not exit yet due to the complex interdependent physical mechanisms which govern their actuation behavior electrical, chemical, and mechanical. This makes grasping control and manipulation hard ID achieve, especially if the ICPF actuators are to be used in manipulating moving biological targets. In this paper we propose a neural-fuzzy based scheme to control the movement of ICPF micro actuators
  • Keywords
    biological techniques; biotechnology; cellular biophysics; fuzzy control; fuzzy neural nets; ionic conductivity; microactuators; neurocontrollers; polymer films; Bio-MEMS; ICPF; Nafion microactuator manipulation; aqueous environments; biological cells; biological cellular robotic gripper; cellular force-reflection controlled manipulators; dynamic model; force sensing capability; grasping control; ionic conducting polymer film; manipulation; neural-fuzzy based control; reflective-force information; Actuators; Biological cells; Biological control systems; Grippers; Manipulators; Microactuators; Polymer films; Proposals; Robot sensing systems; Voltage;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Fuzzy Systems, 2001. The 10th IEEE International Conference on
  • Conference_Location
    Melbourne, Vic.
  • Print_ISBN
    0-7803-7293-X
  • Type

    conf

  • DOI
    10.1109/FUZZ.2001.1008903
  • Filename
    1008903