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ConR: Contrastive Regularizer for Deep Imbalanced Regression

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arxiv 2309.06651 v4 pith:IRQCALYZ submitted 2023-09-13 cs.LG

classification cs.LG
keywords conrlabelspaceimbalanceddeepregressioncontinuouscontrastive
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Imbalanced distributions are ubiquitous in real-world data. They create constraints on Deep Neural Networks to represent the minority labels and avoid bias towards majority labels. The extensive body of imbalanced approaches address categorical label spaces but fail to effectively extend to regression problems where the label space is continuous. Local and global correlations among continuous labels provide valuable insights towards effectively modelling relationships in feature space. In this work, we propose ConR, a contrastive regularizer that models global and local label similarities in feature space and prevents the features of minority samples from being collapsed into their majority neighbours. ConR discerns the disagreements between the label space and feature space and imposes a penalty on these disagreements. ConR addresses the continuous nature of label space with two main strategies in a contrastive manner: incorrect proximities are penalized proportionate to the label similarities and the correct ones are encouraged to model local similarities. ConR consolidates essential considerations into a generic, easy-to-integrate, and efficient method that effectively addresses deep imbalanced regression. Moreover, ConR is orthogonal to existing approaches and smoothly extends to uni- and multi-dimensional label spaces. Our comprehensive experiments show that ConR significantly boosts the performance of all the state-of-the-art methods on four large-scale deep imbalanced regression benchmarks. Our code is publicly available in https://github.com/BorealisAI/ConR.

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Cited by 1 Pith paper

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  1. PoGDiff: Product-of-Gaussians Diffusion Models for Imbalanced Text-to-Image Generation

    cs.LG 2025-02 reject novelty 5.0 of 10

    A fine-tuning method for imbalanced text-to-image generation that adds a product-of-Gaussians inspired consistency regularizer weighted by image similarity and inverse text density.

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