• DocumentCode
    2743221
  • Title

    Embedded Piezo-actuation System for Automatic Motion Control of a Fleet of Miniature Robots Operating on a Synchronized Vibrating Platform

  • Author

    Nguyen, Anh Tuan ; Martel, Sylvain

  • Author_Institution
    Dept. of Comput. Eng. & Inst. of Biomed. Eng., Univ. de Montreal, Que.
  • Volume
    2
  • fYear
    0
  • fDate
    0-0 0
  • Firstpage
    8412
  • Lastpage
    8415
  • Abstract
    A piezo-actuation system based on a three-legged pyramidal configuration with the apex pointing upward and designed to be embedded onto miniature instrumented robots conceived for operations at the nanometer-scale is briefly introduced. The piezo-actuation system is designed to provide small increments required to position an embedded scanning probe microscope (SPM) tip within the range of the instrument. The deflection amplitude of the piezo-actuators provides the SPM tip with a dynamic range appropriate to achieve atomic resolution. The locomotion system operates at high resonant frequencies in order to achieve higher displacement speeds through a larger number of steps executed per second. To achieve high-throughput operations throughout the platform, the displacement speed of the robots become a critical issue since no SPM-based operations can be performed during travel. To provide a supplemental force, a software-controlled vibrating platform is used to increase the displacement speed of each robot. Synchronization between the piezo-actuation system of each robot and the vibrating platform is done through software interrupts generated by an embedded inertial micro-switch
  • Keywords
    control system synthesis; microrobots; mobile robots; motion control; multi-robot systems; piezoelectric actuators; synchronisation; atomic resolution; automatic motion control; bimorph; deflection amplitude; embedded inertial microswitch; embedded piezoactuation system; embedded scanning probe microscope; locomotion system; miniature instrumented robots; miniature robots; nanorobotics; robot displacement speed; software-controlled vibrating platform; synchronization; synchronized vibrating platform; three-legged pyramidal configuration; Dynamic range; Embedded software; Frequency synchronization; Instruments; Motion control; Motion planning; Resonant frequency; Robotics and automation; Robots; Scanning probe microscopy; Piezo-actuators; automatic control; bimorph; nanorobotics; vibrating platform;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Intelligent Control and Automation, 2006. WCICA 2006. The Sixth World Congress on
  • Conference_Location
    Dalian
  • Print_ISBN
    1-4244-0332-4
  • Type

    conf

  • DOI
    10.1109/WCICA.2006.1713618
  • Filename
    1713618