A novel hierarchical control strategy for biped robot walking on uneven terrain
作者:Chencheng Dong, Xuechao Chen, Zhangguo Yu, Zelin Huang, Qingqing Li, Qinqin Zhou, Qiang Huang · 年份:2019 · DOI:10.1109/humanoids43949.2019.9035039 · 被引用次数:14 · 研究领域:Robotic Locomotion and Control、Prosthetics and Rehabilitation Robotics、Neurogenetic and Muscular Disorders Research
When position-controlled biped robot is blind walking on a uneven terrain at a high speed, huge foot contact impacts will be generated. However, traditional admitance control can't absorb the impact and stabilize the robot due to its slow response and Incompleteness. In this paper, we propose a control strategy including respectively designed swing leg control and support leg control with a new approach of control transition. For Swing leg control, double spring damping model is presented to optimize the admitance controller with faster response and better robustness, and a active foot height controller is also proposed to reduce the impact further. On the other hand, the control transition is accomplished by using a bionic fuzzy control. As a result, the foot contact impact can be reduced and the robot can blind walk fast on uneven terrain. Finally, the validity of the proposed strategy is confirmed by the simulation.