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3D automatic target recognition for future LIDAR missiles.

, , and . IEEE Trans. Aerosp. Electron. Syst., 52 (6): 2662-2675 (2016)

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Performance evaluation of single and cross-dimensional feature detection and description., , and . IET Image Process., 14 (10): 2035-2051 (2020)3D automatic target recognition for future LIDAR missiles., , and . IEEE Trans. Aerosp. Electron. Syst., 52 (6): 2662-2675 (2016)A Furcated Visual Collision Avoidance System for an Autonomous Microrobot., , , and . IEEE Trans. Cogn. Dev. Syst., 12 (1): 1-11 (2020)Evaluating 3D local descriptors and recursive filtering schemes for LIDAR-based uncooperative relative space navigation., , and . J. Field Robotics, 37 (5): 848-888 (2020)Histogram of distances for local surface description., and . ICRA, page 2487-2493. IEEE, (2016)Single and Cross-Dimensional Feature Detection and Description: An Evaluation., , and . CoRR, (2019)B-HoD: A lightweight and fast binary descriptor for 3D object recognition and registration., , and . ICNSC, page 37-42. IEEE, (2017)Automatic Target Recognition on Synthetic Aperture Radar Imagery: A Survey.. CoRR, (2020)Fast 3D object matching with Projection Density Energy., and . MED, page 752-758. IEEE, (2015)Stixel based scene understanding for autonomous vehicles., , , and . ICNSC, page 43-48. IEEE, (2017)