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Heuristic and Genetic Algorithm Approaches for UAV Path Planning under Critical Situation.

, , , , and . Int. J. Artif. Intell. Tools, 26 (1): 1760008:1-1760008:30 (2017)

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Adapting a Software Product Line Engineering Process for Certifying Safety Critical Embedded Systems., , , , and . SAFECOMP, volume 7612 of Lecture Notes in Computer Science, page 352-363. Springer, (2012)An embedded system architecture based on genetic algorithms for mission and safety planning with UAV., , , , and . GECCO, page 1049-1056. ACM, (2017)Heuristic and Genetic Algorithm Approaches for UAV Path Planning under Critical Situation., , , , and . Int. J. Artif. Intell. Tools, 26 (1): 1760008:1-1760008:30 (2017)Using SOA in Critical-Embedded Systems., , , , , and . iThings/CPSCom, page 733-738. IEEE Computer Society, (2011)IFA2S - In-flight Awareness Augmentation Systems., , , , , and . ITNG, page 95-100. IEEE Computer Society, (2015)Tiriba - a new approach of UAV based on model driven development and multiprocessors., , , , , and . ICRA, IEEE, (2011)Incorporating certification in feature modelling of an unmanned aerial vehicle product line., , , and . SPLC (1), page 249-258. ACM, (2012)SAFE-CRITES: Developing safety-critical embedded systems supported by reuse techniques., , , and . IRI, page 206-211. IEEE Systems, Man, and Cybernetics Society, (2011)Application of SOA in Safety-Critical Embedded Systems., , , , , , , and . ICHIT (2), volume 206 of Communications in Computer and Information Science, page 345-354. Springer, (2011)