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Navigation of Car-Like Robots in Three-Dimensional Space

Jai Raj, Krishna Raghuwaiya, Jito Vanualailai, Bibhya Sharma

Year
2018
Citations
22

Abstract

In this paper, we propose a new solution to the motion plan- ning and control problem via the Lyapunov-based Control Scheme for car-like mobile robots in three-dimension space navigating in a workspace cluttered with obstacles. To achieve this, a set of nonlinear continuous controllers for obstacle and collision avoidance is presented. The con- trollers provide a collision-free trajectory within a constrained workspace whilst satisfying the nonholonomic and kinodynamic constraints associated with the vehicular robotic system. In essence, the motion planner computes and generates a feasible collision-free path in the 3D workspace. The effectiveness of the control laws is demonstrated via computer simulations, which showcases the simplicity and effectiveness of the control technique.

Keywords

WorkspaceNonholonomic systemMobile robotMotion planningComputer scienceCollision avoidanceTrajectoryRobotObstacle avoidancePath (computing)

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