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Airborne Tracking Based on Particle Filtering for UAS Sense and Avoid., , , and . Infotech@Aerospace, (2012)Multi-UAV formation geometries for cooperative navigation in GNSS-challenging environments., , , and . PLANS, page 775-785. IEEE, (2018)An Algorithm for Managing Aircraft Movement on an Airport Surface., , , , , and . Algorithms, 6 (3): 494-511 (2013)An Innovative Strategy for Accurate Thermal Compensation of Gyro Bias in Inertial Units by Exploiting a Novel Augmented Kalman Filter., , , , and . Sensors, 18 (5): 1457 (2018)Advanced sensing issues for UAS collision avoidance., , , , and . ATACCS, page 12-19. IRIT Press Toulouse, France / ACM DL, (2012)Multi-Sensor-Based Fully Autonomous Non-Cooperative Collision Avoidance System for Unmanned Air Vehicles., , , , , , and . J. Aerosp. Comput. Inf. Commun., 5 (10): 338-360 (2008)Low-Cost and High-Performance Solution for Positioning and Monitoring of Large Structures., , , , , , and . Sensors, 22 (5): 1788 (2022)Performance Enhancement of Consumer-Grade MEMS Sensors through Geometrical Redundancy., , , and . Sensors, 21 (14): 4851 (2021)Spaceborne-airborne bistatic radar for UAS navigation purposes: Preliminary analysis and strawman system identification., , , , , , , , , and 1 other author(s). IGARSS, page 3474-3477. IEEE, (2010)Sky Region Obstacle Detection and Tracking for Vision-Based UAS Sense and Avoid., , , , and . Journal of Intelligent and Robotic Systems, 84 (1-4): 121-144 (2016)