@inproceedings{d181690c740c487989e3159b0a232d14,
title = "On Optimizing Back-Substitution Methods for Neural Network Verification",
abstract = "With the increasing application of deep learning in mission-critical systems, there is a growing need to obtain formal guarantees about the behaviors of neural networks. Indeed, many approaches for verifying neural networks have been recently proposed, but these generally struggle with limited scalability or insufficient accuracy. A key component in many state-of-the-art verification schemes is computing lower and upper bounds on the values that neurons in the network can obtain for a specific input domain - and the tighter these bounds, the more likely the verification is to succeed. Many common algorithms for computing these bounds are variations of the symbolic-bound propagation method; and among these, approaches that utilize a process called back-substitution are particularly successful. In this paper, we present an approach for making back-substitution produce tighter bounds. To achieve this, we formulate and then minimize the imprecision errors incurred during back-substitution. Our technique is general, in the sense that it can be integrated into numerous existing symbolic-bound propagation techniques, with only minor modifications. We implement our approach as a proof-of-concept tool, and present favorable results compared to state-of-the-art verifiers that perform back-substitution.",
author = "Tom Zelazny and Haoze Wu and Clark Barrett and Guy Katz",
note = "Publisher Copyright: {\textcopyright} 2022 FMCAD Association and authors.; 22nd International Conference on Formal Methods in Computer-Aided Design, FMCAD 2022 ; Conference date: 17-10-2022 Through 21-10-2022",
year = "2022",
doi = "10.34727/2022/isbn.978-3-85448-053-2-7",
language = "الإنجليزيّة",
series = "Proceedings of the 22nd Conference on Formal Methods in Computer-Aided Design, FMCAD 2022",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "17--26",
editor = "Alberto Griggio and Neha Rungta",
booktitle = "Proceedings of the 22nd Conference on Formal Methods in Computer-Aided Design, FMCAD 2022",
address = "الولايات المتّحدة",
}