Downloads provided by UsageCounts
{"references": ["Capi, Masao Yokota, \"Optimal Multi -criteria humanoid robot gait\nsynthesis-an evolutionary approach\", Int. Journal of Innovative\nComputing, Information and Control, Vol.2, 2006, pp. 1249-1258", "M.-y.Cheng, C.-S. Lin, \"Genetic Algorithm for Control Design of Biped\nLocomotion\", Journal of Robotic System, Vol.5, , 1997, pp. 365-373.", "Hasagawa Y, Arakawa T, Fukuda T, \"Trajectory generation for biped\nlocomotion robot\" ,Mechatronics, Vol.10, 2000, pp. 67-89", "Jong Hyeon Park, Moosung Choi, \"Genration of an Optimal Gait\nTrajectory for Biped Robots Using a Genetic Algorithm\", JSME\nInternational Journal, Vol.47, No.2, 2004, pp. 715-721", "Genci Capi, Masao Yokota, and Kazuhisa Mitobe, \"A new Humanoid\nRobot Gait Generation based on Multiobjective Optimization,\" in Proc.\n2005 IEEE Int. Conf. Advanced Intelligent Mechatronics, 2005, pp.\n450-454.", "Zhe Tang, Zengqi Sun, Changjiu Zhou, \"GA Based Optimization for\nHumanoid Walking,\" ICGST-ARAS international Journal on Automation,\nRobotics and Autonomous Systems, vol 5, 2006, pp. 1-10.", "A. Borghese, L Bianchi, F Lacquaniti, \"Kinematic determinants of human\nlocomotion,\" Journal of Physiology, 1996, pp. 863 - 879", "Xiuping Mu, \"A Complete Dynamic Model of Five-Link Biped\nWalking,\" in Proc. American Control Conf, vol 1, 2003, pp.4926 - 4931", "Miomir Vokobratovic, Branislav Borovac, \"Zero-Moment Point - Thirty\nFive Years of its Lift,\" Int. Journal of Humanoid Robotics, vol 1, 2004, pp.\n157 - 173\n[10] David A. Winter, \"Biomechanics and Motor Control of Human\nMovement,\" Wiley, 1990."]}
This paper proposes a method of adaptively generating a gait pattern of biped robot. The gait synthesis is based on human's gait pattern analysis. The proposed method can easily be applied to generate the natural and stable gait pattern of any biped robot. To analyze the human's gait pattern, sequential images of the human's gait on the sagittal plane are acquired from which the gait control values are extracted. The gait pattern of biped robot on the sagittal plane is adaptively generated by a genetic algorithm using the human's gait control values. However, gait trajectories of the biped robot on the sagittal plane are not enough to construct the complete gait pattern because the biped robot moves on 3-dimension space. Therefore, the gait pattern on the frontal plane, generated from Zero Moment Point (ZMP), is added to the gait one acquired on the sagittal plane. Consequently, the natural and stable walking pattern for the biped robot is obtained.
genetic algorithm., gait pattern, Biped robot
genetic algorithm., gait pattern, Biped robot
| selected citations These citations are derived from selected sources. This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | 0 | |
| popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network. | Average | |
| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Average | |
| impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network. | Average |
| views | 3 | |
| downloads | 2 |

Views provided by UsageCounts
Downloads provided by UsageCounts