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A study on Design and Kinematics Analysis of Robot Hand Fingers

로봇핸드 핑거의 설계 및 운동학적 해석에 관한 연구

  • Received : 2015.09.25
  • Accepted : 2015.10.29
  • Published : 2015.11.30

Abstract

In this paper, it was presented to design and analyze the kinematics of grasping a rigid object by means of multi-degrees-of-freedom hand fingers. It is shown firstly that a set of kinematic equation describing dynamics system of the arm and object together with geometric constraint of tight area-contacts is formulated by Lagrange's equation. It has been presented secondly that the problems of controlling both the forces of pressing object and the rotation angle of the object under the geometric constraints are discussed. In this research, the control method for static stable grasping and enhancing dexterity in manipulating things is proposed. It is illustrated by computer simulation that the control system gives the performance improvement in the kinematic grasping of the hand fingers of robot.

Keywords

References

  1. K. T. Park, S. S. Kim, S. Y. Yang, B. R. Lee and K. K. Ahn, "Research of Static Grasping for Handling Tasks in Field- Robot", ICASE, pp. 2895-2898, 2001.
  2. R. S. Fearing, "Simplified grasping and manipulation with dexterous robot hand", IEEE Trans. Robot. Autom., pp. 188-195, 1986.
  3. Y. Yokokohji, M. Sakamoto and T. Yoshikawa, "Vision aided object manipulation by a multifingered hand with soft fingertips", Proc. IEEE Int. Conf. Robot. Autom., pp. 3201-3208, 1999.
  4. T. Schlegl, M. Buss, T. Omata, G. Schmidt, "Fast dextrous re-grasping with optimal contact forces and contact sensor-based impedance control", Robot. Autom., Proceedings 2001 ICRA. IEEE Int. Conf. Vol. 1,pp. 103-108, 2001.
  5. J. C. Trinkle, "A quasi-static analysis of dexterous manipulation sliding and rolling contact", Proc. IEEE Int. Conf. Robot. Autom., Scotsdale, AZ, pp. 788-793, 1989.
  6. N. Y. Chong, D. Choi and H. Suh, "A generalized motion/force planning strategy for multifingered hands using both rolling and sliding contacts", Proc. IEEE/RSJ Int. Conf. Intell. Robots Syst., Yokohama, Japan, pp. 113-120, 1993.
  7. A. B. A. Cole, J. E. Hauser and S. S. Sastry, "Kinematics and control of multifingered hands with rolling contact", IEEE Trans. Autom. Control, Vol. 34, No. 4, pp. 398-404, 1989. https://doi.org/10.1109/9.28014
  8. E. Paljug, X. Yun and V. Kumar, "Control of rolling contacts in multi-arm manipulation", IEEE Trans. Robot. Autom., Vol. 10, No. 4, pp. 441-452, 1994. https://doi.org/10.1109/70.313095
  9. H. Kaswasaki, S. Ito and R. B. Ramli, "Adaptive decentralized coordinated control of multiple robot arms", Preprints IFAC Symp. Robot Control, pp. 461-466, 2003.
  10. S. Arimoto, Pham T, Hyun-Yong H, Zoe. D, "Dynamics and control of a set of dual fingers with soft tips", Robotica, Vol. 18, No. 1, pp. 71-80, 2000. https://doi.org/10.1017/S0263574799002441
  11. S. Arimoto, K. Tahara, M. Yamaguchi, P. T. Nguyen, H. Y. Han, "Principle of Superposition for Controlling Pinch Motions by Means of Robot Finger with Soft Tips", Robotica, Vol. 19, pp. 39-47, 2001.
  12. T. Naniwa, S. Arimoto, L. Whitcomb, "Learning control for robot tasks under geometric constraints", IEEE Trans. on Robot. Autom., Vol. 11, No. 3, pp. 432-441, 1995.
  13. P. Akella, M. Cutkosky, "Manipulating with soft fingers", Proc. IEEE Int. Conf. Robot. Autom., Vol. 2, pp. 764-769, 1989.
  14. 심재군, 한현용, 양순용, 이병룡, 안경관, 김성수, "소프트-팁이 장착된 듀얼-핑거의 안정적 파지 제어에 관한 연구", 한국공작기계학회 추계학술대회 논문집, pp. 219-224, 2002.
  15. C. C. Cheah, S. Kawamura, S. Arimoto, "Feedback Control for Robotic Manipulator with Uncertain Kinematics and Dynamics", IEEE Int. Conf. Robot. Autom., pp. 3607-3612, 1998.
  16. 엄혁, 최종환, 김승수, 한현용, 양순용, 이진걸, "듀얼-핑거의 안정적 파지 운동 제어에 관한 연구", 한국공작기계학회논문집, Vol.14, No. 4, pp. 81-88, 2005.