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A new Evaluation Approach for Deep Learning-based Monocular Depth Estimation Methods

, , , , , and . 2020 IEEE 23rd International Conference on Intelligent Transportation Systems (ITSC), page 1-6. (September 2020)
DOI: 10.1109/ITSC45102.2020.9294620

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Détection radiale de visages sur images omnidirectionnelles., , , and . Traitement du Signal, 31 (1-2): 143-173 (2014)Robust Radial Face Detection for Omnidirectional Vision., , , and . IEEE Trans. Image Process., 22 (5): 1808-1821 (2013)Real Time Object Detection, Tracking, and Distance and Motion Estimation based on Deep Learning: Application to Smart Mobility., , , , and . EST, page 1-6. IEEE, (2019)A direct approach for face detection on omnidirectional images., , , and . ROSE, page 243-248. IEEE, (2011)A framework for face detection on Central Catadioptric Systems., , , and . ROSE, page 57-62. IEEE, (2010)A new approach for face detection with omnidirectional sensors., , , and . ROBIO, page 1855-1860. IEEE, (2011)Recent Advances in Vision-Based On-Road Behaviors Understanding: A Critical Survey., , , , and . Sensors, 22 (7): 2654 (2022)Compressed Sensing Face Recognition Method in Heterogeneous Database with Small Sample Size Problem., , , and . SITIS, page 80-84. IEEE Computer Society, (2012)Deep Learning for Real-Time 3D Multi-Object Detection, Localisation, and Tracking: Application to Smart Mobility., , , , , , , , and . Sensors, 20 (2): 532 (2020)A Segmentation Method of Catadioptric Images for Gait Recognition in Unconstrained Environment., , , and . EST, page 24-29. IEEE Computer Society, (2010)