CVMar 21, 2022

ViM: Out-Of-Distribution with Virtual-logit Matching

Amazon
arXiv:2203.10807v1522 citationsh-index: 35Has Code
Originality Incremental advance
AI Analysis

This addresses the challenge of detecting diverse OOD samples in machine learning models, offering a novel approach that enhances performance in this domain-specific task.

The paper tackles the problem of Out-Of-Distribution (OOD) detection by proposing ViM, a method that combines feature and logit spaces to improve robustness, achieving an average AUROC of 90.91% on four benchmarks, which is 4% ahead of the best baseline.

Most of the existing Out-Of-Distribution (OOD) detection algorithms depend on single input source: the feature, the logit, or the softmax probability. However, the immense diversity of the OOD examples makes such methods fragile. There are OOD samples that are easy to identify in the feature space while hard to distinguish in the logit space and vice versa. Motivated by this observation, we propose a novel OOD scoring method named Virtual-logit Matching (ViM), which combines the class-agnostic score from feature space and the In-Distribution (ID) class-dependent logits. Specifically, an additional logit representing the virtual OOD class is generated from the residual of the feature against the principal space, and then matched with the original logits by a constant scaling. The probability of this virtual logit after softmax is the indicator of OOD-ness. To facilitate the evaluation of large-scale OOD detection in academia, we create a new OOD dataset for ImageNet-1K, which is human-annotated and is 8.8x the size of existing datasets. We conducted extensive experiments, including CNNs and vision transformers, to demonstrate the effectiveness of the proposed ViM score. In particular, using the BiT-S model, our method gets an average AUROC 90.91% on four difficult OOD benchmarks, which is 4% ahead of the best baseline. Code and dataset are available at https://github.com/haoqiwang/vim.

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