Towards Cognitive Navigation: Design and Implementation of a Biologically Inspired Head Direction Cell Network
Abstract
As a vital cognitive function of animals, the navigation skill is first built on the accurate perception of the directional heading in the environment. Head direction cells (HDCs), found in the limbic system of animals, are proven to play an important role in identifying the directional heading allocentrically in the horizontal plane, independent of the animal's location and the ambient conditions of the environment. However, practical HDC models that can be implemented in robotic applications are rarely investigated, especially those that are biologically plausible and yet applicable to the real world. In this paper, we propose a computational HDC network which is consistent with several neurophysiological findings concerning biological HDCs, and then implement it in robotic navigation tasks. The HDC network keeps a representation of the directional heading only relying on the angular velocity as an input. We examine the proposed HDC model in extensive simulations and real-world experiments and demonstrate its excellent performance in terms of accuracy and real-time capability.
Cite
@article{arxiv.2109.10689,
title = {Towards Cognitive Navigation: Design and Implementation of a Biologically Inspired Head Direction Cell Network},
author = {Zhenshan Bing and Amir EI Sewisy and Genghang Zhuang and Florian Walter and Fabrice O. Morin and Kai Huang and Alois Knoll},
journal= {arXiv preprint arXiv:2109.10689},
year = {2021}
}