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Using Vision Transformers for Spatial-Context-Aware Rain and Road Surface Condition Detection on Freeways., , и . IEEE Trans. Intell. Transp. Syst., 23 (10): 18546-18556 (2022)Utilizing Attention-Based Multi-Encoder-Decoder Neural Networks for Freeway Traffic Speed Prediction., , и . IEEE Trans. Intell. Transp. Syst., 23 (8): 11960-11969 (2022)Sequence-to-Sequence Recurrent Graph Convolutional Networks for Traffic Estimation and Prediction Using Connected Probe Vehicle Data., , и . IEEE Trans. Intell. Transp. Syst., 24 (1): 1395-1405 (января 2023)Inverse Reinforcement Learning and Gaussian Process Regression-based Real-Time Framework for Personalized Adaptive Cruise Control., , , , , , и . ITSC, стр. 4428-4435. IEEE, (2023)Personalized Trajectory Prediction for Driving Behavior Modeling in Ramp-Merging Scenarios., , , , , , и . IRC, стр. 1-4. IEEE, (2023)Real-Time Learning of Driving Gap Preference for Personalized Adaptive Cruise Control., , , , , , и . SMC, стр. 4675-4682. IEEE, (2023)CEMFormer: Learning to Predict Driver Intentions from in-Cabin and External Cameras via Spatial-Temporal Transformers., , , , , , и . ITSC, стр. 4960-4966. IEEE, (2023)Interaction-Aware Personalized Vehicle Trajectory Prediction Using Temporal Graph Neural Networks., , и . ITSC, стр. 2070-2077. IEEE, (2023)M2DAR: Multi-View Multi-Scale Driver Action Recognition with Vision Transformer., , , , , , и . CVPR Workshops, стр. 5287-5294. IEEE, (2023)Driving through the Concept Gridlock: Unraveling Explainability Bottlenecks in Automated Driving., , , , , и . WACV, стр. 7331-7340. IEEE, (2024)