ReSA derives a soft assignment target from the encoder's own clustered outputs and uses it to supervise the embedding, improving self-supervised representation quality on CIFAR, ImageNet-100, ImageNet, and transfer tasks.
No Free Lunch in Self Supervised Representation Learning
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abstract
Self-supervised representation learning in computer vision relies heavily on hand-crafted image transformations to learn meaningful and invariant features. However few extensive explorations of the impact of transformation design have been conducted in the literature. In particular, the dependence of downstream performances to transformation design has been established, but not studied in depth. In this work, we explore this relationship, its impact on a domain other than natural images, and show that designing the transformations can be viewed as a form of supervision. First, we demonstrate that not only do transformations have an effect on downstream performance and relevance of clustering, but also that each category in a supervised dataset can be impacted in a different way. Following this, we explore the impact of transformation design on microscopy images, a domain where the difference between classes is more subtle and fuzzy than in natural images. In this case, we observe a greater impact on downstream tasks performances. Finally, we demonstrate that transformation design can be leveraged as a form of supervision, as careful selection of these by a domain expert can lead to a drastic increase in performance on a given downstream task.
fields
cs.LG 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
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Clustering Properties of Self-Supervised Learning
ReSA derives a soft assignment target from the encoder's own clustered outputs and uses it to supervise the embedding, improving self-supervised representation quality on CIFAR, ImageNet-100, ImageNet, and transfer tasks.