Home /Research /Non-smooth 3D Modeling of a Snake Robot with Frictional Unilateral Constraints
OTHER

Non-smooth 3D Modeling of a Snake Robot with Frictional Unilateral Constraints

Aksel A. Transeth, Remco I. Leine, Christoph Glocker, Kristin Y. Pettersen

Year
2006
Citations
15

Abstract

A non-smooth 3D mathematical model of the dynamics of a snake robot (without wheels) is developed in this paper. The model is based on the framework of non-smooth dynamics and convex analysis which allows us to easily incorporate unilateral contact forces and friction forces based on Coulomb's law of dry friction. Impact and stick-slip transitions are modeled as instantaneous. A numerical integrator on impulse- velocity level, the time-stepping method, is used for simulation, which helps avoid an explicit switch between equations of motion during simulation. Numerical results are presented for a snake robot with 26 degrees of freedom and 22 possible contact points along its body. Simulation results of the snake motion pattern 'lateral undulation' are shown.

Keywords

Coulomb frictionImpulse (physics)Contact forceControl theory (sociology)Slip (aerodynamics)RobotIntegratorComputer simulationRegular polygonMotion (physics)

Related papers

Browse all OTHER papers