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Toward Evaluating Robustness of Deep Reinforcement Learning with Continuous Control., , , , , , and . ICLR, OpenReview.net, (2020)Graph based distributed control of non-holonomic vehicles endowed with local positioning information engaged in escorting missions., , and . ICRA, page 3207-3214. IEEE, (2010)Towards Stable and Efficient Training of Verifiably Robust Neural Networks., , , , , , , and . ICLR, OpenReview.net, (2020)Revisiting adapters with adversarial training., , and . ICLR, OpenReview.net, (2023)Verification of Non-Linear Specifications for Neural Networks., , , , , , , , and . ICLR (Poster), OpenReview.net, (2019)A Framework for robustness Certification of Smoothed Classifiers using F-Divergences., , , , , , , , and . ICLR, OpenReview.net, (2020)Achieving Verified Robustness to Symbol Substitutions via Interval Bound Propagation., , , , , , , and . EMNLP/IJCNLP (1), page 4081-4091. Association for Computational Linguistics, (2019)Data Augmentation Can Improve Robustness., , , , , and . NeurIPS, page 29935-29948. (2021)A Dual Approach to Verify and Train Deep Networks., , , , and . IJCAI, page 6156-6160. ijcai.org, (2019)Bayesian rendezvous for distributed robotic systems., and . IROS, page 2765-2771. IEEE, (2011)