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Papers/Improved Test-Time Adaptation for Domain Generalization

Improved Test-Time Adaptation for Domain Generalization

Liang Chen, Yong Zhang, Yibing Song, Ying Shan, Lingqiao Liu

2023-04-10CVPR 2023 1Image to sketch recognitionDomain GeneralizationTest-time AdaptationSingle-Source Domain Generalization
PaperPDFCode(official)

Abstract

The main challenge in domain generalization (DG) is to handle the distribution shift problem that lies between the training and test data. Recent studies suggest that test-time training (TTT), which adapts the learned model with test data, might be a promising solution to the problem. Generally, a TTT strategy hinges its performance on two main factors: selecting an appropriate auxiliary TTT task for updating and identifying reliable parameters to update during the test phase. Both previous arts and our experiments indicate that TTT may not improve but be detrimental to the learned model if those two factors are not properly considered. This work addresses those two factors by proposing an Improved Test-Time Adaptation (ITTA) method. First, instead of heuristically defining an auxiliary objective, we propose a learnable consistency loss for the TTT task, which contains learnable parameters that can be adjusted toward better alignment between our TTT task and the main prediction task. Second, we introduce additional adaptive parameters for the trained model, and we suggest only updating the adaptive parameters during the test phase. Through extensive experiments, we show that the proposed two strategies are beneficial for the learned model (see Figure 1), and ITTA could achieve superior performance to the current state-of-the-art methods on several DG benchmarks. Code is available at https://github.com/liangchen527/ITTA.

Results

TaskDatasetMetricValueModel
SketchPACSAccuracy63.8ITTA (ResNet18)
Domain AdaptationPACSAccuracy68.4ITTA (ResNet18)
Domain GeneralizationPACSAccuracy68.4ITTA (ResNet18)
Sketch RecognitionPACSAccuracy63.8ITTA (ResNet18)
Single-Source Domain GeneralizationPACSAccuracy68.4ITTA (ResNet18)

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