@inproceedings{265ea91d0bf74d469e9356bfbf0cd3d7,
title = "Marine Vehicles Localization Using Grid Cells for Path Integration",
abstract = "Autonomous Underwater Vehicles (AUVs) are platforms used for research and exploration of marine environments. However, these types of vehicles face many challenges that hinder their widespread use in the industry. One of the main limitations is obtaining accurate position estimation, due to the lack of GPS signal underwater. This estimation is usually done with Kalman filters. However, new developments in the neuroscience field have shed light on the mechanisms by which mammals are able to obtain a reliable estimation of their current position based on external and internal motion cues. A new type of neuron, called Grid cells, has been shown to be part of path integration system in the brain. In this article, we show how grid cells can be used for obtaining a position estimation of underwater vehicles. The model of grid cells used requires only the linear velocities together with heading orientation and provides a reliable estimation of the vehicle's position. We provide simulation results for an AUV which show the feasibility of our proposed methodology. ",
keywords = "Autonomous underwater vehicles, Grid cells, Navigation, Neuro inspired agents",
author = "Ignacio Carlucho and Bailey, {Manuel F.} and {De Paula}, Mariano and Corina Barbalata",
note = "Funding Information: We would like to thank Sean Katagiri from Heriot-Watt University, United Kingdom for helping us perform the experiments presented in this article. This project was supported by the EU H2020 Program under EUMarineRobots project (grant ID 731103), and NSF Award #2122068 RI: Small: Computational Imaging for Underwater Exploration. Publisher Copyright: {\textcopyright} 2021 MTS.; OCEANS 2021: San Diego - Porto ; Conference date: 20-09-2021 Through 23-09-2021",
year = "2022",
month = feb,
day = "15",
doi = "10.23919/OCEANS44145.2021.9706050",
language = "English",
isbn = "978-1-6654-2788-3",
series = "OCEANS",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
booktitle = "OCEANS 2021: San Diego - Porto",
address = "United States",
}