Author:
Li Jinshan,Chu Jinkui,Zhang Ran,Tong Kun
Abstract
This paper proposes a brain-inspired navigation model based on absolute heading for the autonomous navigation of unmanned platforms. The proposed model combined the sand ant’s strategy of acquiring absolute heading from the sky environment and the brain-inspired navigation system, which is closer to the navigation mechanism of migratory animals. Firstly, a brain-inspired grid cell network model and an absolute heading-based head-direction cell network model were constructed based on the continuous attractor network (CAN). Then, an absolute heading-based environmental vision template was constructed using the line scan intensity distribution curve, and the path integration error was corrected using the environmental vision template. Finally, a topological cognitive node was constructed according to the grid cell, the head direction cell, the environmental visual template, the absolute heading information, and the position information. Numerous topological nodes formed the absolute heading-based topological map. The model is a topological navigation method not limited to strict geometric space scale, and its position and absolute heading are decoupled. The experimental results showed that the proposed model is superior to the other methods in terms of the accuracy of visual template recognition, as well as the accuracy and topology consistency of the constructed environment topology map.
Funder
National Natural Science Foundation of China
Fundamental Research Funds for the Central Universities
Subject
Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Control and Optimization,Mechanical Engineering,Computer Science (miscellaneous),Control and Systems Engineering
Reference46 articles.
1. The Navigation and Terrain Cameras on the Tianwen-1 Mars Rover;Space Sci. Rev.,2021
2. An Integrated GNSS/LiDAR-SLAM Pose Estimation Framework for Large-scale Map Building in Partially GNSS-Denied Environments;IEEE Trans. Instrum. Meas.,2020
3. Unanticipated Uses of the Global Positioning System;Annu. Rev. Earth Planet. Sci.,2019
4. ORB-SLAM2: An Open-Source SLAM System for Monocular, Stereo, and RGB-D Cameras;IEEE Trans. Robot.,2017
5. Klein, G., and Murray, D. (2008, January 15–18). Parallel Tracking and Mapping for Small AR Workspaces. Proceedings of the IEEE & ACM International Symposium on Mixed & Augmented Reality, Cambridge, UK.
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