首页 /研究 /Dynamic modeling and analysis of pitch motion of a basilisk lizard inspired quadruped robot running on water
LOCOMOTION

Dynamic modeling and analysis of pitch motion of a basilisk lizard inspired quadruped robot running on water

Hyun Soo Park, Steven Floyd, Metin Sitti

发表年份
2009
引用次数
20

摘要

A quadrupedal robot inspired by the basilisk lizard was developed and modeled with a 3D real time simulation. Due to the robot's geometry, leg motion, and water interactions, the net pitch moment at the center of mass is not zero making pitch motion unstable. This paper introduces two types of tails, passive and active, to stabilize pitch motion and analyzes the advantages and disadvantages of each. It is shown in simulation that a purely passive tail can stabilize pitch motion and lead to a steady state robot pitch angle in the absence of disturbances. It is further shown that an active tail can compensate for disturbances and correct any drift in the robot body pitch angle due to changes in robot running speed.

关键词

Pitch angleRobotQuadrupedalismMotion (physics)Computer scienceSimulationControl theory (sociology)PhysicsArtificial intelligenceGeology

相关论文

查看 LOCOMOTION 分类全部论文