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FOOT AND BODY CONTROL OF HUMANOID ROBOTS USING FUZZY CONTROLLER
Farshad Samadi, Sohrab Khanmohammadi, and Amir R. Ghiasi
References
[1] M. Vukobratovic and D. Juricic, Contribution to the synthesisof biped gait, IEEE Transactions on Bio-Medical Engineering,16, 1969, 1–6.
[2] A. Takanish, M. Tochizawa, H. Karaki, and I. Kato, Dynamicbiped walking stabilized with optimal trun and waist mo-tion, Proc. IEEE/RSJ International Workshop on IntelligentRobotics and Systems, 1989, 187–192.
[3] J. Yamaguchi, A. Takanish, and I. Kato, Development of abiped walking robot compensating for three-axis moment bytrunk motion, Proc. IEEURSJ International Workshop onIntelligent Robotics and Systems, 1993, 561–566.
[4] S. Kajita, F. Kanehiro, K. Kaneko, K. Fujiwara, K. Harada,K. Yokoi, and H. Hirukawa, Biped walking pattern generationby using preview control of zero-moment point, Proc. IEEEInternational Conf. Robotics and Automation, 2003, 1620–1626.
[5] S. Kajita and K. Tani, Experimental study of biped dynamicwalking in the linear inverted pendulum mode, Proc. IEEEInternational Conf. Robotics and Automation, 1995, 2885–2891.
[6] Y. Fujimoto and A. Kawamura, Three dimensional digital sim-ulation and autonomous walking control for eight-axis bipedrobot, Proc. IEEE International Conf. Robotics and Automa-tion, 1995, 2877–2884.
[7] J.H. Park and K.D. Kim, Biped robot walking using gravitycompensated inverted pendulum mode and computed torquecontrol, Proc. IEEE International Conf. Robotics and Automa-tion, 1998, 3528–3533.
[8] F. Samadi and H. Moghadam-Fard, Pattern generation forhumanoid robot with natural ZMP trajectory, 2014 Sec-ond RSI/ISM International Conf. Robotics and Mechatronics(ICRoM), Tehran, 2014, 570–575.
[9] Z. Li, N.G. Tsagarakis, and D.G. Caldwell, Walking pat-tern generation for a humanoid robot with compliant joints,Autonomous Robots, 35, 2013, 1–14.
[10] K. Suzuki, H. Imai, Y. Kawamura, and Y. Sankai, Gaitcontrol of human and humanoid on irregular terrain consideringinteraction with environment, Proc. IEEE Int. Workshop onRobot Human Interactive Communication, 2003, 277–284.
[11] S. Kajita and K. Tani, Adaptive gait control of a biped robotbased on realtime sensing of the ground profile, Proc. IEEEInt. Conf. on Robotics and Automation, 1996, 570–577.
[12] T. Sato, S. Sakaino, and K. Ohnishi, Walking stabilizationcontrol of biped robot using virtual plane, Proc. JIASC, pp.11–557, August 2009 (in Japanese).
[13] S. Shimmyo, T. Sato, and K. Ohnishi, Biped walking patterngeneration by using preview control with virtual plane method,IEEE Int. Workshop on Advanced Motion Control, 2010, 21–24.
[14] J.H. Park, Impedance control for biped robot locomotion,IEEE Transactions on Robotics and Automation, 17(6), 2001,870–882.322
[15] J.S. Kong, E.H. Lee, B.H. Lee, and J.G. Kim, Study on thereal-time walking control of a humanoid robot using fuzzyalgorithm, International Journal of Control, Automation, andSystems, 6(4), 2008, 551–558.
[16] J.H. Park and E.S. Kim, Foot and body control of bipedrobots to walk on irregularly protruded uneven surfaces, IEEETransactions on Systems, Man, and Cybernetics Part B:Cybernetics, 39(1), 2009, 289–297.
[17] Y.-D. Hong and J.-H. Kim, Walking pattern generation oninclined uneven terrains for a humanoid robots, Robot Intelli-gence Technology and Applications, 208, 2013, 209–221.
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Abstract
DOI:
10.2316/Journal.206.2017.4.206-4004
From Journal
(206) International Journal of Robotics and Automation - 2017
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