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Robustness of Deep Learning-Based Specific Emitter Identification under Adversarial Attacks.

, , , , and . Remote. Sens., 14 (19): 4996 (2022)

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Analyzing the Suitability of Cost Functions for Explaining and Imitating Human Driving Behavior based on Inverse Reinforcement Learning., , , and . ICRA, page 5481-5487. IEEE, (2020)Negotiation-Aware Reachability-Based Safety Verification for AutonomousDriving in Interactive Scenarios., , , and . CoRR, (2021)CausalAgents: A Robustness Benchmark for Motion Forecasting using Causal Relationships., , , , , , and . CoRR, (2022)Multi-Agent Trajectory Prediction by Combining Egocentric and Allocentric Views., , , , and . CoRL, volume 164 of Proceedings of Machine Learning Research, page 1434-1443. PMLR, (2021)Electromagnetic data completion and prediction method based on tensor train., , , , , , and . AISS, page 37:1-37:6. ACM, (2022)Expressing Diverse Human Driving Behavior with Probabilistic Rewards and Online Inference., , , and . IROS, page 2020-2026. IEEE, (2020)Matrix factorization for design of Q-filter in iterative learning control., , and . CDC, page 6076-6082. IEEE, (2015)Dual Extended Kalman Filter Based State and Parameter Estimator for Model-Based Control in Autonomous Vehicles., , , , , and . ITSC, page 327-333. IEEE, (2021)Application of Adversarial Examples in Communication Modulation Classification., , , and . ICDM Workshops, page 877-882. IEEE, (2019)Generic Prediction Architecture Considering both Rational and Irrational Driving Behaviors., , and . ITSC, page 3539-3546. IEEE, (2019)