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基于模糊控制的仿人机器人步态稳定性研究

The Study of Humanoid Robot Gait Stability Based on Fuzzy Control Method
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摘要 仿人机器人在步行过程中会遇到不可预见的干扰而导致机器人不能稳定的行走。因此,本文提出一种模糊控制的方法调整机器人走路姿态以增加步行的抗干扰性。该方法以MF (Metal Fight)仿人机器人为对象,用参考轨迹的方法对机器人进行步态规划,得到保证机器人稳定的步行关节参数;针对步行过程中出现的干扰使机器人稳定裕度降低的情况,先根据干扰对机器人稳定裕度的影响程度进行分级,然后通过模糊逻辑调整机器人双足的关节参数,最终使稳定裕度回归期望值,从而实现对步态稳定性的控制。实验结果表明该方法能有效的克服环境中未知干扰对机器人步行的影响。 The unforeseen disturbance will cause the instability during the process of humanoid robot’s walking. So, a gait stability control method based on fuzzy control is proposed, and the purpose is to enhance the anti-interference performance of humanoid robot. Implemented in MF (Metal Fight) humanoid robot, the proposed method accomplishes the gait planning along the reference trajectory and through the method, we obtain the walking joint parameters which are used to control the humanoid robot. In more detail, firstly, to classify ranks for the disturbances according to the disturbance severity which may reduce the stability margin of the robot. Secondly, the joint parameters can be adjusted through fuzzy logic control. Thirdly, to control the gait stability by adjusting the stability margin within the excepted value. The experiment results show that this method can effectively get over the unknown environment impact of interference on the robot.
出处 《人工智能与机器人研究》 2014年第1期11-17,共7页 Artificial Intelligence and Robotics Research
基金 宁波市自然科学基金资助项目(2012A610010) 浙江省教育厅资助项目(Y201122103)。
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  • 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
  • 3郝宗波,洪炳熔.未知环境下基于传感器的移动机器人路径规划[J].电子学报,2006,34(5):953-956. 被引量:14
  • 4棍田秀司.仿人机器人[M].北京:清华大学出版社,2007.
  • 5Kim J H,Kim J Y, Oh J H.Adjustment of home posture of biped humanoid robot using sensory feedback control[J].Joumal of Intelligent and Robotic Systems,2008,51(4) :421-438.
  • 6Park I W, Kim J Y, Park S W, et al.Development of humanoid robot platform KHR-2[C]//4th IEEE/RAS International Conference on Humanoid Robots,Santa Moniea,CA,2004:292-310.
  • 7Friedmarm M,Petersen K, Petters S,et al.Darrnstadt dribblers: Team description for humanoid kidsize league of robocup 2009[R]. German: Technic University Darmstadt, 2009.
  • 8Hemker T, Sakamoto H, Stelzer M, et al.Efficient walking speed optimization of a humanoid robot[l].International Journal of Robotics Research,2009,28(2):303-314.
  • 9Fu Chenglong, Chen Ken.Gait synthesis and sensory control of stair climbing for a httmanoid robot[J].IEEE Transactions on Industrial Electronics, 2008,55 (5) : 2111-2120.
  • 10Wang Jian, Sheng Tao, Ma Hongxu, et al.Design and dynamic walking control of humanoid robot Blackmann[C]//Proceedings of the 6th World Congress on Intelligent Control and Automation, IEEE, 2006: 8848-8852.

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