SmoothMix: A Simple Yet Effective Data Augmentation to Train Robust Classifiers

Jin-Ha Lee, Muhammad Zaigham Zaheer, Marcella Astrid, Seung-Ik Lee; Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition (CVPR) Workshops, 2020, pp. 756-757

Abstract


Data augmentation has been proven effective which, by preventing overfitting, can not only enhances the performance of a deep neural network but also leads to a better generalization even with limited dataset. Recently introduced regional dropout based data augmentation strategies remove (or replace) some parts of an input image with a desideratum to make the network focus on less discriminative portions of an image, which results in an improved performance. However, such approaches usually possess 'strong-edge' problem caused by an obvious change in the pixels at the positions where the image is manipulated. It may not only impact on the local convolution operation but can also provide clues for the network to latch on to, which do not align well with the basic purpose of augmentation. In order to minimize such peculiarities, we introduce SmoothMix in which blending of images is done based on soft edges and the training labels are computed accordingly. Extensive analysis performed on CIFAR-10, CIFAR-100 and ImageNet for image classification demonstrate state-of-the-art results. Furthermore, SmoothMix significantly increases robustness of a network against image corruption. Results on CIFAR-100-C & ImageNet-C corruption datasets also shows superiority of our proposed approach.

Related Material


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[bibtex]
@InProceedings{Lee_2020_CVPR_Workshops,
author = {Lee, Jin-Ha and Zaheer, Muhammad Zaigham and Astrid, Marcella and Lee, Seung-Ik},
title = {SmoothMix: A Simple Yet Effective Data Augmentation to Train Robust Classifiers},
booktitle = {Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition (CVPR) Workshops},
month = {June},
year = {2020}
}