DocumentCode
249075
Title
CPG-based locomotion control of a snake-like robot for obstacle avoidance
Author
Nor, N.M. ; Ma, Siwei
Author_Institution
Dept. of Robot., Ritsumeikan Univ., Kusatsu, Japan
fYear
2014
fDate
May 31 2014-June 7 2014
Firstpage
347
Lastpage
352
Abstract
This paper presents a biomimetic approach based on central pattern generator (CPG), to control turning motion of a snake-like robot. One of the interesting features of a biological snake is its ability to avoid obstacles or a barrier by turning its whole body from its trajectory. This special obstacle avoidance motion is different from other types of animal, and thus, it is worth to be analyzed and realized into a snake-like robot. The paper first briefly explains: 1) the phase oscillator model which represents the CPG model and 2) the CPG network. Next, we address several issues related to the existing/typical turning control of a snake-like robot. We then propose the phase transition method utilizing the phase difference control parameter to realize the turning motion of a snake-like robot. We also introduce a new parameter to control the turning of the robot, where it provides a way to incorporate sensory feedback into the CPG model. Simulation results show that the proposed turning method can be used efficiently as an obstacle avoidance method for a snake-like robot.
Keywords
collision avoidance; mobile robots; motion control; CPG network; CPG-based locomotion control; biological snake; central pattern generator; obstacle avoidance; obstacle avoidance motion; phase difference control parameter; phase oscillator model; phase transition method; sensory feedback; snake-like robot; turning motion control; Friction; Joints; Mobile robots; Robot kinematics; Robot sensing systems; Turning; Central pattern generator; snakelike robot; turning motion;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation (ICRA), 2014 IEEE International Conference on
Conference_Location
Hong Kong
Type
conf
DOI
10.1109/ICRA.2014.6906634
Filename
6906634
Link To Document