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UAV Mission Planning Resistant to Weather Uncertainty

Amila Thibbotuwawa, Grzegorz Bocewicz, Grzegorz Radzki, Peter Nielsen, Zbigniew Banaszak

2020Sensors104 citationsDOIOpen Access PDF

Abstract

Fleet mission planning for Unmanned Aerial Vehicles (UAVs) is the process of creating flight plans for a specific set of objectives and typically over a time period. Due to the increasing focus on the usage of large UAVs, a key challenge is to conduct mission planning addressing changing weather conditions, collision avoidance, and energy constraints specific to these types of UAVs. This paper presents a declarative approach for solving the complex mission planning resistant to weather uncertainty. The approach has been tested on several examples, analyzing how customer satisfaction is influenced by different values of the mission parameters, such as the fleet size, travel distance, wind direction, and wind speed. Computational experiments show the results that allow assessing alternative strategies of UAV mission planning.

Topics & Concepts

Collision avoidanceComputer scienceKey (lock)Process (computing)Wind speedFlight planningSet (abstract data type)Range (aeronautics)Operations researchAeronauticsCollisionEngineeringMeteorologyAerospace engineeringGeographyProgramming languageOperating systemComputer securityRobotic Path Planning AlgorithmsUAV Applications and OptimizationAir Traffic Management and Optimization
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