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Robust Principles: Architectural Design Principles for Adversarially Robust CNNs.

, , , , , , , , and . BMVC, page 739-740. BMVA Press, (2023)

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Robust Principles: Architectural Design Principles for Adversarially Robust CNNs., , , , , , , , and . BMVC, page 739-740. BMVA Press, (2023)Robust Efficient Edge AI: New Principles and Frameworks for Empowering Artificial Intelligence on Edge Devices.. Georgia Institute of Technology, Atlanta, GA, USA, (2022)base-search.net (ftgeorgiatech:oai:smartech.gatech.edu:1853/67315).Compatibility-Aware Heterogeneous Visual Search., , , , , , and . CVPR, page 10723-10732. Computer Vision Foundation / IEEE, (2021)CUP: Cluster Pruning for Compressing Deep Neural Networks., , , , and . IEEE BigData, page 5102-5106. IEEE, (2021)P-TELU: Parametric Tan Hyperbolic Linear Unit Activation for Deep Neural Networks., and . ICCV Workshops, page 974-978. IEEE Computer Society, (2017)Overlapping cell nuclei segmentation in microscopic images using deep belief networks., , , , and . ICVGIP, page 82:1-82:8. ACM, (2016)RobArch: Designing Robust Architectures against Adversarial Attacks., , , , , , and . CoRR, (2023)MalNet: A Large-Scale Image Database of Malicious Software., , and . CIKM, page 3948-3952. ACM, (2022)Concept Evolution in Deep Learning Training: A Unified Interpretation Framework and Discoveries., , , , , , , , , and . CIKM, page 2044-2054. ACM, (2023)Towards Regression-Free Neural Networks for Diverse Compute Platforms., , , , , and . ECCV (37), volume 13697 of Lecture Notes in Computer Science, page 598-614. Springer, (2022)