IMS를 위한 로봇 군 제어방법 : 이종 협조 로봇의 톱질 작업

Control Methodology of Multiple Arms for IMS : Experimental Sawing Task by Nonidentical Cooperating Arms

  • 여희주 (대진대 공대 전자공학과) ;
  • 서일홍 (한양대 공대 전자공학과) ;
  • 이병주 (한양대 공대 제어계측공학과) ;
  • 오상록 (한국과학기술연구원 지능제어 연구센타)
  • 발행 : 1999.04.01

초록

Sawing experiments using a two-arm system have been performed in this work. The two-arm system under consideration of two kinematically-nonidentical arms. A passive joint is inserted at the end-point of one robot in order to increase the mobility up to the motion degree required for sawing tasks. A hybrid control algorithm for control of the two-arm system is designed. We experimentally show that the performance of the velocity and force response are satisfactory, and that one additional passive joint not only prevents the system from unwanted yaw motion in the sawing task, but also allows an unwanted pitch motion to be notably reduced by an internal load control. To show the general applicability of the proposed algorithms, we perform experimentation under several different conditions for saw, such as three saw blades, two sawing speeds, and two vertical forces.

키워드

참고문헌

  1. Proc. IEEE Trans. on System, man, Cybernetics Compliance and Force Control for Computer Controlled Manipulators M. T. Mason
  2. Int. J. of Dynamic System Measurement Control v.102 Hybrid Position/Force Control of Manipulators M. W. Raibert;J. J. Craig
  3. Part I, Part II and Part III. Int. J. of Dynamics System Measurement Control v.107 Impedance Control : an Approach to Manipulation N. Hogan
  4. Int. J. of Mechatronics v.5 no.8 Fuzzy Adaptation Force Control of Industrial Robot Manipulators with Position Servos I. H. Suh;K. S. Eom;H. J. Yeo;S.-R. Oh
  5. IEEE Trans. on Robotics & Automation v.6 no.3 Compliant Coordination Control of Two Moving Industrial Robots J. M. Tao;J. Y. S. Luh;Y. F. Zheng
  6. Proc. IEEE Int. Conf. on Robotics & Automation An Adaptive Compliance Motion Controller for Robot Manipulators Based on Damping Control M. Pelletier;L. D. Daneshmend
  7. Int. J. Robotics Research v.12 no.3 Coordinated Dynamic Hybrid Position/Force Control for Multiple Robot Manipulators Handling One Constrained Object T. Yoshikawa;X. Z. Zheng
  8. Proc. IEEE/ RSJ Int. Conf. on Intelligent Robots and Systems Decentralized Control of Robots for Dynamic Coordination K. Kosuge(et al.)
  9. Proc. 4th IFTIMM World Congress Coordinated Computer Control of a Pair of Manipulators S. Fujii;S. Kurono
  10. IEEE Trans. on Robotics & Automation v.12 no.1 Internal Force-Based Impedance Control for Coorperating Manipulators R. G. Bonitz;T. C. Hsia
  11. Proc. IEEE Int. Conf. on Robotics & Automation A Symmetric Hybrid Position/Force Control Scheme for the Coordination of Two robots M. Uchiyama;P. Dauchez
  12. CPU-30 User's Manual Force Computers Inc.
  13. Int. J. Robotics Research v.10 no.4 Analysis of Motion and Internal Loading of Objects Grasped by Multiple Coordinating Manipulators I. D. Walker;R. A. Freeman;S. I. Marcus
  14. Proc. IEEE Int. Conf. on Robotics & Automation A Closed-Chain Jacobian-Based Hybrid Control for Two Coordinating Arms with a Passive Joint : An Application to Sawing Task H. J. Yeo;I. H. Suh;B. J. Yi;S. R. Oh;B. H. Lee
  15. J. of IEEE Industrial Electronics v.15 Industrial Fuzzy Expert PID Control S. Tzafetas