Difference between revisions of "Media"
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* [[Media:PaparazziBenchmark11_paper.pdf|"PapaBench : A Free Real-Time Benchmark"]] <small>(365K PDF)</small> | * [[Media:PaparazziBenchmark11_paper.pdf|"PapaBench : A Free Real-Time Benchmark"]] <small>(365K PDF)</small> | ||
*:<small>This paper presents PapaBench, a free real-time benchmark and compares it with the existing benchmark suites. It is designed to be valuable for experimental works in WCET computation and may be also useful for scheduling analysis. This benchmark is based on the Paparazzi project that represents a real-time application, developed to be embedded on different Unmanned Aerial Vehicles (UAV).</small> | *:<small>This paper presents PapaBench, a free real-time benchmark and compares it with the existing benchmark suites. It is designed to be valuable for experimental works in WCET computation and may be also useful for scheduling analysis. This benchmark is based on the Paparazzi project that represents a real-time application, developed to be embedded on different Unmanned Aerial Vehicles (UAV).</small> | ||
* [[Media:infrared_calib_paper.zip|Calibration d’un récepteur Infra-Rouge pour Micro Drone]] - January 2004 <small>(800K ZIP)</small> | |||
*:<small>En fonctionnement normal le filtre de Kalman propose un meilleur fonctionnement que la régression linéaire. | |||
*:Dans le cas de conditions changeantes, sans panne, le filtre de Kalman s’adapte mieux que la régression linéaire. | |||
*:Par contre dans le cas d’une panne, le filtre de Kalman ne l’a détecte pas et provoque une dérive du drone. | |||
*:Ouvertures : | |||
*:Utilisation avec plus de données. | |||
*:Choix d’une autre relation plus proche de la réalité. | |||
*:Autre architecture de filtre (split). | |||
</small> | |||
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Revision as of 22:30, 9 December 2006
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