A Hierarchical Path Planning Approach Using Waypoint Visibility-Based Target Planner

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초록

This paper presents a hierarchical path planning framework for efficient and practical robot navigation in environments with unknown obstacles that are not registered in a given map. While existing path planning approaches primarily focus on separately enhancing the performance of either the local or global planner, we propose a novel framework that employs a target planner to integrate the two, enabling adaptive navigation toward the final goal position via reachable waypoints. The proposed framework integrates a visibility-based target planner to dynamically evaluate the distance and heading visibility of the current target waypoint along a global path computed by the global planner. By dynamically assessing visibility, the visibility-based target planner autonomously updates the robot's target waypoint if the current waypoint becomes unreachable owing to obstacles, thereby ensuring that the local planner efficiently navigates the robot to the updated target. Experiments were conducted to validate the proposed framework against a conventional sequential waypoint assignment approach. The results demonstrate that, compared to the conventional approach, the hierarchical framework using the visibility-based target planner reduces the overall navigation time by 49.6 % and 52.6 % in two different experiments while requiring fewer control commands. These improvements indicate that the proposed framework effectively minimized unnecessary detours and enabled the robot to reach the final goal position more efficiently, even in the presence of unmapped obstacles.

키워드

RobotsNavigationReal-time systemsPath planningHeuristic algorithmsRobot sensing systemsTrajectoryCostsCollision avoidanceVehicle dynamicsMobile robotsnavigationpath planningnearness diagramrapidly-exploring random treeA-STAR ALGORITHMASTERISKDWA
제목
A Hierarchical Path Planning Approach Using Waypoint Visibility-Based Target Planner
저자
Ryu, Hyejeong
DOI
10.1109/ACCESS.2025.3559234
발행일
2025
유형
Article
저널명
IEEE Access
13
페이지
63627 ~ 63639