Intelligent conflict detection and awareness for UAVs

The deployment of unmanned aerial vehicles into the airspace is directly related to their ability to detect and avoid other aircraft objects. Through the performance analysis of the conflict detection and avoidance requirement, conceptual functional architecture of the conflict detection and conflic...

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Bibliographic Details
Main Authors: Albaker, B.M., Rahim, N.A.
Format: Conference or Workshop Item
Published: 2009
Subjects:
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author Albaker, B.M.
Rahim, N.A.
author_facet Albaker, B.M.
Rahim, N.A.
author_sort Albaker, B.M.
collection UM
description The deployment of unmanned aerial vehicles into the airspace is directly related to their ability to detect and avoid other aircraft objects. Through the performance analysis of the conflict detection and avoidance requirement, conceptual functional architecture of the conflict detection and conflict awareness are proposed with a method to extract collision parameters. These parameters include collision points, time to collision, collision interval and collision angle. The method is based onto monitoring the environment and sharing of flight plan segments among conflicting aircraft. The detection of a potential conflict is achieved by projecting states of the conflicting aircrafts' flight plans in the near future. In addition, the method estimates a suitable time to activate avoidance model and pass extracted collision parameters to that model. That is, in order to handle the maneuvering commands and thereby avoid conflicts.
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spelling um.eprints-22382011-10-19T02:13:32Z http://eprints.um.edu.my/2238/ Intelligent conflict detection and awareness for UAVs Albaker, B.M. Rahim, N.A. QA75 Electronic computers. Computer science The deployment of unmanned aerial vehicles into the airspace is directly related to their ability to detect and avoid other aircraft objects. Through the performance analysis of the conflict detection and avoidance requirement, conceptual functional architecture of the conflict detection and conflict awareness are proposed with a method to extract collision parameters. These parameters include collision points, time to collision, collision interval and collision angle. The method is based onto monitoring the environment and sharing of flight plan segments among conflicting aircraft. The detection of a potential conflict is achieved by projecting states of the conflicting aircrafts' flight plans in the near future. In addition, the method estimates a suitable time to activate avoidance model and pass extracted collision parameters to that model. That is, in order to handle the maneuvering commands and thereby avoid conflicts. 2009 Conference or Workshop Item PeerReviewed Albaker, B.M. and Rahim, N.A. (2009) Intelligent conflict detection and awareness for UAVs. In: Conference on Innovative Technologies in Intelligent Systems and Industrial Applications, JUL 25-26, 2009, Kuala Lumpur. http://apps.webofknowledge.com/full_record.do?product=WOS&search_mode=Refine&qid=2&SID=T287872nNALPHKGeEdJ&page=14&doc=133&cacheurlFromRightClick=no
spellingShingle QA75 Electronic computers. Computer science
Albaker, B.M.
Rahim, N.A.
Intelligent conflict detection and awareness for UAVs
title Intelligent conflict detection and awareness for UAVs
title_full Intelligent conflict detection and awareness for UAVs
title_fullStr Intelligent conflict detection and awareness for UAVs
title_full_unstemmed Intelligent conflict detection and awareness for UAVs
title_short Intelligent conflict detection and awareness for UAVs
title_sort intelligent conflict detection and awareness for uavs
topic QA75 Electronic computers. Computer science
work_keys_str_mv AT albakerbm intelligentconflictdetectionandawarenessforuavs
AT rahimna intelligentconflictdetectionandawarenessforuavs