Improved A-star algorithm for robot path planning in static environment

Author:

XiangRong Tang,Yukun Zhu,XinXin Jiang

Abstract

Abstract A-star algorithm is a kind of simple path planning algorithm without solving the calculus, which has a high application. However, compared with other path planning algorithms, it occupies a large memory space. To solve this problem, this paper proposes three new concepts such as the bidirectional search, a guide line and a list of key points. A-star algorithm is optimized and rasterize on indoor environment modeling method, finally through the MATLAB simulation experiments prove that the optimized algorithm feasible experimental results show that the improved algorithm in target different under the two kinds of experiment are able to reduce memory footprint by more than 60%.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference13 articles.

1. Path Planning of Transport Robot based on a∼* algorithm - Taking Cainiao Intelligent Warehouse as an example [J];Yan;Logistics technology,2020

2. Research on path planning of fire-fighting robot based on improved artificial bee colony algorithm [J];Yan-chun;Journal of normal university science,2020

3. Research on path Planning of a grass-cutting robot - Based on machine vision and artificial potential field algorithm [J];Tao;agricultural Mechanization Research

4. Research on real-time Environment Construction and Path Planning technology of PHOTOVOLTaIC cleaning robot [J];Yongchao;Energy and Energy Conservation,2020

5. Main methods of path Planning for autonomous Mobile robot [J];Hong;China Electric Power Education,2010

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