TY - GEN
T1 - Touchdown angle's impact on bounding gait of the quadrupeds
AU - Wang, Haowei
AU - Wang, Pengfei
AU - Wang, Xin
AU - Li, Mantian
AU - Sun, Lining
PY - 2011
Y1 - 2011
N2 - The study of touchdown angle's impact on quadrupeds such as gait, stability, speed, height is valuable. This paper unifies two common models for quadrupeds-SLIP and planar model, gets a feasible and efficient fixed point search strategy, and proposes a gait classification method based on the event sequence. On this basis, we study the influence of touchdown angle on quadruped robot in a variety of energy levels, and find that the change of touchdown angle would cause cycle bifurcation and chaos phenomena. Meanwhile, we notice in certain energy level and reasonable parameters configuration, different touchdown angles mean different gaits and only change of touchdown angle can make gait transition. In a fixed energy level, the impact of touchdown angle on horizontal speed, apex height and pitch angle is not obvious, but for pitch angular velocity it has obvious effect, and we reveal the importance of pitch angle and related variables such as inertia, mass distribution for quadruped control. Under the meaning of stable fixed points, speed adjust by changing touchdown angle is of little effect; however energy control is a feasible method.
AB - The study of touchdown angle's impact on quadrupeds such as gait, stability, speed, height is valuable. This paper unifies two common models for quadrupeds-SLIP and planar model, gets a feasible and efficient fixed point search strategy, and proposes a gait classification method based on the event sequence. On this basis, we study the influence of touchdown angle on quadruped robot in a variety of energy levels, and find that the change of touchdown angle would cause cycle bifurcation and chaos phenomena. Meanwhile, we notice in certain energy level and reasonable parameters configuration, different touchdown angles mean different gaits and only change of touchdown angle can make gait transition. In a fixed energy level, the impact of touchdown angle on horizontal speed, apex height and pitch angle is not obvious, but for pitch angular velocity it has obvious effect, and we reveal the importance of pitch angle and related variables such as inertia, mass distribution for quadruped control. Under the meaning of stable fixed points, speed adjust by changing touchdown angle is of little effect; however energy control is a feasible method.
UR - https://www.scopus.com/pages/publications/82955221785
U2 - 10.1109/RAMECH.2011.6070478
DO - 10.1109/RAMECH.2011.6070478
M3 - 会议稿件
AN - SCOPUS:82955221785
SN - 9781612842509
T3 - IEEE Conference on Robotics, Automation and Mechatronics, RAM - Proceedings
SP - 178
EP - 183
BT - Proceedings of the 2011 IEEE 5th International Conference on Robotics, Automation and Mechatronics, RAM 2011
T2 - 2011 IEEE 5th International Conference on Robotics, Automation and Mechatronics, RAM 2011
Y2 - 17 September 2011 through 19 September 2011
ER -