Reactive Robot Navigation Utilizing Nonlinear Control:
[摘要] In this paper, we propose a computationally efficient heuristic solution to choosing a path around obstacles in the face of limited sensor information. Specifically, we propose a navigation algorithm for a mobile robot that reaches a measured target position while avoiding obstacles, making decisions in real-time (without stopping) and relying strictly on information obtained from limited and noisy robot-mounted sensors to determine the location and severity of obstacles. The solution utilizes fuzzy processing to encode the environment â the fuzzy encoding is used both in deciding on an intermediate target direction and in a collision-avoidance strategy. A closed-loop nonlinear feedback control provides a smooth motion with stability guarantees. Simulation results in a corridor environment demonstrate expected collision-free trajectories.
[发布日期] [发布机构]
[效力级别] [学科分类] 自动化工程
[关键词] Mobile Robot Navigation;Reactive Control;BEAM Robotics;Lyapunov Backstepping Control [时效性]