期刊文献+

拟人机器人未知环境下稳定行走控制方法

Control Methods for a Humanoid Robot Walking Stably on the Unknown Ground
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摘要 拟人机器人是机器人研究领域的重点研究方向之一,研究主要集中在实现双足行走,在平整地面上和已知地面环境下的稳定行走,但是在未知地面环境下实现稳定行走一直是研究的难点和热点.本文研究了在未知环境下通过调整落地时间、落地位置、落地减振控制三种方法控制稳定.这些控制方法使得机器人在未知环境下摆动腿落地瞬间冲击力较大时能保持良好的稳定性. A humanoid robot is one of the key research directions in the area of robots research. The present study focuses on the realization of bipedal on the flat ground and stable walking in the known ground environment, but how to realize stable walking on unknown ground has always been a difficulty and a focus of research. This paper conducted a research on the three control methods of the unknown environment by adjusting the landing time, the landing position and ground vibration stability control. These control methods could maintain stabil- ity during the whole working process, especially when the ground is uneven and the swing leg is landing.
出处 《常熟理工学院学报》 2015年第4期92-95,共4页 Journal of Changshu Institute of Technology
基金 常熟理工学院青年教师科研基金资助项目"基于FZMP的仿人机器人稳定性分析"(KYZ20122032)
关键词 拟人机器人 未知环境 稳定行走 控制方法 biped robot unknown ground stable walking control method
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参考文献8

  • 1Harada K, Kajita S. Real-Time Planning of Humanoid Ro- bot's Gait for Force Controlled Manipulation[C]. New Or- leans: Proceedings of the 2004 IEEE International Confer- ence on Robotics and Automation, 2004: 616-622.
  • 2Eaton M, Thomas J, Davitt. Evolutionary Control of Bipedal Locomotion in High Degree-of-freedom Humanoid Robot: First Steps[J]. Artificial Life and Robotics, 2007 11(1): 112-115.
  • 3付根平,杨宜民,陈建平,李静.基于ZMP误差校正的仿人机器人步行控制[J].机器人,2013,35(1):39-44. 被引量:18
  • 4J H Kim, J H Oh. Walking Control of the Humanoid Platform KHR-1 based on Torque Feedback Control[C]. New Orleans:Proceed- ings of the 2004 IEEE International Conference on Robotics and Automation, 2004: 623-628.
  • 5陈磊,张国良,张维平,敬斌.基于模糊控制的仿人机器人零力矩点在线调整[J].计算机应用,2013,33(A01):298-300. 被引量:4
  • 6Napoleon, Nakaura S, Sampei M. Balance Control Analysis of Humanoid Robot based on ZMP Feedback Control[C]. Lausanne: Pro- ceedings of the 2002 IEEE/RSJ International Conference on Intelligent Robots and System, 2002: 2437-2442.
  • 7肖乐,常晋义,殷晨波.仿人机器人行走稳定性分析[J].常熟理工学院学报,2011,25(2):109-112. 被引量:1
  • 8胡凌云,孙增圻.双足机器人步态控制研究方法综述[J].计算机研究与发展,2005,42(5):728-733. 被引量:36

二级参考文献70

  • 1付根平,杨宜民,黄春林.基于粒子群优化算法的双足机器人步态优化[J].华中科技大学学报(自然科学版),2011,39(S2):355-358. 被引量:10
  • 2胡凌云,孙增圻.双足机器人步态控制研究方法综述[J].计算机研究与发展,2005,42(5):728-733. 被引量:36
  • 3Plestan F,Grizzle W,Wesrervelt R,et al.Stable Walking of a 7-DOF Biped Robot[J].IEEE Transactions on Robotics and Automation,2004,19(4):653-668.
  • 4Napoleon S,Nakaura M.Sampol Balance Control Analysis of Humanoid Robot based on ZMP Feedback Control[C].Proceedings of the 2002 IEEE/RSJ International Conference on Intelligent Robots and System.Lausanne (Swizerland):2002:2437-2442.
  • 5Vukobratovic M,Juricic D.Contributions to the synthesis of biped gait[J].IEEE Trans on Bio-Medical Engineerin,1969,16(1):1-6.
  • 6Yin Chenbo,Albert Albers,et al.Stability Maintenance of a Humanoid Robot under Disturbance with Fictitious Zero-Moment Point[C].IEEE/RSJ International Conference on Intelligent Robots and Systems.Edmonton Alberta (Canada):2005:1780-1787.
  • 7J.E. Pratt. Virtual model control of a biped walking robot:[ master's dissertation ] . Cambridge, MA: Massachusetts Institute of Technology, 1995.
  • 8A. Goswami. Postural stability of biped robots and the footrotation indicator point. International Journal of Robotics Research, 1999, 18(6): 523~533.
  • 9H. Adachi. Development of quadruped walking robots and their gait study. Journal of Robotics and Mechatronics, 1993, 6 (5):548 ~ 560.
  • 10E. Muybridge. Animals in Motion. New York: Dower Publications, 1901.

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