HIL Tuning of UAV for Exploration of Risky Environments

In this paper the latest results of an HIL architecture, optimized to develop and test UAV platforms are presented. This architecture has been used to realize the different devices involved in the navigation and stability control of the Volcan UAV, a plane designed to operate in volcanic environment...

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Main Authors: C. D. Melita, D. Longo, G. Astuti, A. Orlando, G. Muscato
Format: Article
Language:English
Published: SAGE Publishing 2008-11-01
Series:International Journal of Advanced Robotic Systems
Subjects:
Online Access:http://www.intechopen.com/articles/show/title/hil_tuning_of_uav_for_exploration_of_risky_environments
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spelling doaj-08419e9a04474299b77b4ed4a6f917232020-11-25T03:48:09ZengSAGE PublishingInternational Journal of Advanced Robotic Systems1729-88061729-88142008-11-0154HIL Tuning of UAV for Exploration of Risky EnvironmentsC. D. MelitaD. LongoG. AstutiA. OrlandoG. MuscatoIn this paper the latest results of an HIL architecture, optimized to develop and test UAV platforms are presented. This architecture has been used to realize the different devices involved in the navigation and stability control of the Volcan UAV, a plane designed to operate in volcanic environments. The proposed architecture is strongly modular and flexible and allows the development of avionic hardware and software, testing and tuning the involved algorithms with non-destructive trials. A flight simulator (X-Plane) with a suitable plane model and plug-in, has been adopted to simulate the UAV dynamics. The flight simulator, interfaced with the real electronic boards, allows an easy tuning of all the control parameters and data collecting for test and validation. The effectiveness of adopted methodology was confirmed by several flight tests performed subsequently by using the designed avionic modules on the real UAV. http://www.intechopen.com/articles/show/title/hil_tuning_of_uav_for_exploration_of_risky_environmentsUAV control and navigationvolcanic environmentHIL architecture
collection DOAJ
language English
format Article
sources DOAJ
author C. D. Melita
D. Longo
G. Astuti
A. Orlando
G. Muscato
spellingShingle C. D. Melita
D. Longo
G. Astuti
A. Orlando
G. Muscato
HIL Tuning of UAV for Exploration of Risky Environments
International Journal of Advanced Robotic Systems
UAV control and navigation
volcanic environment
HIL architecture
author_facet C. D. Melita
D. Longo
G. Astuti
A. Orlando
G. Muscato
author_sort C. D. Melita
title HIL Tuning of UAV for Exploration of Risky Environments
title_short HIL Tuning of UAV for Exploration of Risky Environments
title_full HIL Tuning of UAV for Exploration of Risky Environments
title_fullStr HIL Tuning of UAV for Exploration of Risky Environments
title_full_unstemmed HIL Tuning of UAV for Exploration of Risky Environments
title_sort hil tuning of uav for exploration of risky environments
publisher SAGE Publishing
series International Journal of Advanced Robotic Systems
issn 1729-8806
1729-8814
publishDate 2008-11-01
description In this paper the latest results of an HIL architecture, optimized to develop and test UAV platforms are presented. This architecture has been used to realize the different devices involved in the navigation and stability control of the Volcan UAV, a plane designed to operate in volcanic environments. The proposed architecture is strongly modular and flexible and allows the development of avionic hardware and software, testing and tuning the involved algorithms with non-destructive trials. A flight simulator (X-Plane) with a suitable plane model and plug-in, has been adopted to simulate the UAV dynamics. The flight simulator, interfaced with the real electronic boards, allows an easy tuning of all the control parameters and data collecting for test and validation. The effectiveness of adopted methodology was confirmed by several flight tests performed subsequently by using the designed avionic modules on the real UAV.
topic UAV control and navigation
volcanic environment
HIL architecture
url http://www.intechopen.com/articles/show/title/hil_tuning_of_uav_for_exploration_of_risky_environments
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