Publication | Open Access
Co-Mixup: Saliency Guided Joint Mixup with Supermodular Diversity
16
Citations
28
References
2021
Year
EngineeringMachine LearningMultimodal LearningMulti-image FusionSubmodular FunctionsMixture Of ExpertImage AnalysisData SciencePattern RecognitionSparse Neural NetworkMulti-task LearningData AugmentationMachine VisionComputer ScienceHuman Image SynthesisJoint MixupDeep LearningComputer VisionBatch MixupDeep Neural Networks
While deep neural networks show great performance on fitting to the training distribution, improving the networks' generalization performance to the test distribution and robustness to the sensitivity to input perturbations still remain as a challenge. Although a number of mixup based augmentation strategies have been proposed to partially address them, it remains unclear as to how to best utilize the supervisory signal within each input data for mixup from the optimization perspective. We propose a new perspective on batch mixup and formulate the optimal construction of a batch of mixup data maximizing the data saliency measure of each individual mixup data and encouraging the supermodular diversity among the constructed mixup data. This leads to a novel discrete optimization problem minimizing the difference between submodular functions. We also propose an efficient modular approximation based iterative submodular minimization algorithm for efficient mixup computation per each minibatch suitable for minibatch based neural network training. Our experiments show the proposed method achieves the state of the art generalization, calibration, and weakly supervised localization results compared to other mixup methods. The source code is available at https://github.com/snu-mllab/Co-Mixup.
| Year | Citations | |
|---|---|---|
Page 1
Page 1