Heuristic Expanding Disconnected Graph: A Rapid Path Planning Method for Mobile Robots

运动规划 任意角度路径规划 计算机科学 Dijkstra算法 数学优化 偏移量(计算机科学) 图形 最短路径问题 冗余(工程) 路径长度 路径(计算) 评价函数 机器人 算法 人工智能 数学 理论计算机科学 计算机网络 操作系统 程序设计语言
作者
Yong Tao,Lian Duan,He Gao,Yufan Zhang,Yian Song,Tianmiao Wang
出处
期刊:Chinese journal of mechanical engineering [China Machine Press]
卷期号:37 (1) 被引量:3
标识
DOI:10.1186/s10033-024-01014-8
摘要

Abstract Existing mobile robots mostly use graph search algorithms for path planning, which suffer from relatively low planning efficiency owing to high redundancy and large computational complexity. Due to the limitations of the neighborhood search strategy, the robots could hardly obtain the most optimal global path. A global path planning algorithm, denoted as EDG*, is proposed by expanding nodes using a well-designed expanding disconnected graph operator (EDG) in this paper. Firstly, all obstacles are marked and their corners are located through the map pre-processing. Then, the EDG operator is designed to find points in non-obstruction areas to complete the rapid expansion of disconnected nodes. Finally, the EDG* heuristic iterative algorithm is proposed. It selects the candidate node through a specific valuation function and realizes the node expansion while avoiding collision with a minimum offset. Path planning experiments were conducted in a typical indoor environment and on the public dataset CSM. The result shows that the proposed EDG* reduced the planning time by more than 90% and total length of paths reduced by more than 4.6%. Compared to A*, Dijkstra and JPS, EDG* does not show an exponential explosion effect in map size. The EDG* showed better performance in terms of path smoothness, and collision avoidance. This shows that the EDG* algorithm proposed in this paper can improve the efficiency of path planning and enhance path quality.
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