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SYSTÈMES AUTONOMES5 min read

Propulsion et navigation pour l'exploration sous-marine.

Travaux d'ingénierie mêlant la conception d'hélices, l'évaluation de la poussée et la programmation des algorithmes de navigation pour les véhicules sous-marins autonomes.

Publié
2026-08-18
Mis à jour
2026-08-18

Périmètre du projet

2024 — PRÉSENT / RECHERCHE UNIVERSITAIRE

University engineering project

Physical system
Autonomous underwater vehicle
Propulsion work
Propeller design and thrust testing
Software work
Navigation programming and system integration
Les sections techniques longues sont actuellement publiées en anglais et en chinois. La navigation, les métadonnées et le résumé du projet sont localisés dans cette langue.

Thèmes

Conception d'hélicesOptimisation de la pousséeNavigation autonome
01

Autonomy begins with the physical vehicle

Underwater navigation is inseparable from propulsion. A control algorithm can only request motions that the vehicle, propellers and available thrust can physically produce in the surrounding water.

The project therefore connects propeller design and thrust testing with navigation programming instead of treating the mechanical and software work as independent tracks.

02

The propulsion loop

Propeller concepts need to be translated into testable behaviour. Thrust testing provides evidence for comparing designs and for understanding what the control system can reasonably command.

The useful result is not only a stronger component. It is a better model of the vehicle's available actuation, including the limits and asymmetries that navigation logic must respect.

03

Navigation is a systems problem

Navigation programming depends on sensing, timing, coordinate assumptions, actuator response and the way the vehicle handles uncertainty. Each layer needs interfaces that make errors observable rather than silently passing them downstream.

This is where the project connects to my broader interest in physical intelligence: perception, decision and action only become useful when the whole loop can be evaluated in the real system.

04

What remains deliberately open

Because the work is ongoing, this page records the engineering scope rather than claiming a final result. Future updates should add test methods, validated measurements and design changes only when they are ready to be made public.

That boundary is important. A credible project page should distinguish what has been attempted, what has been measured and what is still a direction for the next iteration.

Limite de l'évidence publique

This is an ongoing project. The brief does not publish a final vehicle performance figure, competition result, mission-readiness claim, or confidential team design data.

Ces pages publient un périmètre d'ingénierie et un raisonnement vérifiables ; les preuves de projet sont ajoutées lorsqu'elles sont prêtes à être partagées.

Voir tous les projets d'ingénierie
Chenbo Lin
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