SiaN-VO: Siamese Network for Visual Odometry

Author:

Faiçal Bruno S.1ORCID,Marcondes Cesar A. C.1ORCID,Verri Filipe A. N.1ORCID

Affiliation:

1. Computer Science Division, Aeronautics Institute of Technology—ITA, Sao Jose dos Campos 12228-900, SP, Brazil

Abstract

Despite the significant advancements in drone sensory device reliability, data integrity from these devices remains critical in securing successful flight plans. A notable issue is the vulnerability of GNSS to jamming attacks or signal loss from satellites, potentially leading to incomplete drone flight plans. To address this, we introduce SiaN-VO, a Siamese neural network designed for visual odometry prediction in such challenging scenarios. Our preliminary studies have shown promising results, particularly for flights under static conditions (constant speed and altitude); while these findings are encouraging, they do not fully represent the complexities of real-world flight conditions. Therefore, in this paper, we have furthered our research to enhance SiaN-VO, improving data integration from multiple sensors and enabling more accurate displacement predictions in dynamic flight conditions, thereby marking a significant step forward in drone navigation technology.

Funder

Embraer

Publisher

MDPI AG

Reference28 articles.

1. Potential cyber threats, vulnerabilities, and protections of unmanned vehicles;Oruc;Drone Syst. Appl.,2022

2. Moore, A.B., and Johnson, M. (2022). Drones and Geographical Information Technologies in Agroecology and Organic Farming Contributions to Technological Sovereignty, CRC Press.

3. Mohsan, S.A.H., Khan, M.A., Noor, F., Ullah, I., and Alsharif, M.H. (2022). Towards the Unmanned Aerial Vehicles (UAVs): A Comprehensive Review. Drones, 6.

4. Braga, J.R.G., Velho, H.F.C., Conte, G., Doherty, P., and Shiguemori, É.H. (2016, January 13–15). An image matching system for autonomous UAV navigation based on neural network. Proceedings of the 2016 14th International Conference on Control, Automation, Robotics and Vision (ICARCV), Phuket, Thailand.

5. De Cursi, J.E.S. (July, January 29). UAV Autonomous Navigation by Image Processing with Uncertainty Trajectory Estimation. Proceedings of the 5th International Symposium on Uncertainty Quantification and Stochastic Modelling, Rouen, France.

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