首页 /研究 /Safety-Critical Kinematic Control of Robotic Systems
MANIPULATION

Safety-Critical Kinematic Control of Robotic Systems

Andrew Singletary, Shishir Kolathaya, Aaron D. Ames

发表年份
2021
引用次数
2

摘要

Over the decades, kinematic controllers have proven to be practically useful for applications like set-point and trajectory tracking in robotic systems. To this end, we formulate a novel safety-critical paradigm by extending the methodology of control barrier functions (CBFs) to kinematic equations governing robotic systems. We demonstrate a purely kinematic implementation of a velocity-based CBF, and subsequently introduce a formulation that guarantees safety at the level of dynamics. This is achieved through a new form of CBFs that incorporate kinetic energy with the classical forms, thereby minimizing model dependence and conservativeness. The approach is then extended to underactuated systems. This method and the purely kinematic implementation are demonstrated in simulation on two robotic platforms: a 6-DOF robotic manipulator, and a cart-pole system.

关键词

KinematicsControl theory (sociology)Computer scienceUnderactuationTrajectoryControl engineeringSet (abstract data type)RobotControl (management)Engineering

相关论文

查看 MANIPULATION 分类全部论文