首页 /研究 /EELS-DARTS: A Planetary Snake Robot Simulator for Closed-Loop Autonomy Development
PERCEPTION

EELS-DARTS: A Planetary Snake Robot Simulator for Closed-Loop Autonomy Development

Tristan Hasseler, Carl Leake, Aaron Gaut, Asher Elmquist, R. Michael Swan, Rob Royce, Bryson Jones, Ben Hockman, Michael John Paton, Guglielmo Daddi, Masahiro Ono, Rohan Thakker, Abhinandan Jain

发表年份
2024
引用次数
4

摘要

EELS-DARTS is a simulator designed for autonomy development and analysis of large degree of freedom snake-like robots for space exploration. A detailed description of the EELS-DARTS simulator design is presented. This includes the versatile underlying multibody dynamics representation used to model a variety of distinct snake robot configurations as well as an anisotropic friction model for describing screw–ice interaction. Additional simulation components such as graphics, importable terrain, joint controllers, and perception are discussed. Methods for setting up and running simulations are discussed, including how a snake robot’s autonomy stack closes the commands and information loop with the simulation via ROS. Multiple use cases are described to illustrate how the simulation is used to aid and inform robot design, autonomy development, and field test use throughout the project’s life cycle. A validation analysis of the screw–ice contact model is performed for the surface mobility case. Lastly, an overview of simulation use for planning operations during a recent field test to the Athabasca Glacier in Canada is discussed.

关键词

SimulationRobotClosed loopLoop (graph theory)Computer scienceMarine engineeringHuman–computer interactionAerospace engineeringEngineeringControl engineering

相关论文

查看 PERCEPTION 分类全部论文