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November 9, 20250 citationsOpen Access

Scalable Evaluation and Neural Models for Compositional Generalization

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GCGiacomo CamposampieroETH ZurichPBPietro BarbieroIBM Research - ZurichMHMichael HerscheIBM Research - Zurich

Key Points

  • Improvement in machine learning model accuracy through a unified evaluation framework for compositional generalization.
  • Key metrics include a 23.43% accuracy increase and reduced parameter overhead from 600% to 16%.
  • Evaluation framework addresses combinatorial limitations, enhancing model scalability and performance.
  • Findings highlight the need for rigorous standards in evaluating generalization capabilities within machine learning.

Abstract

Compositional generalization-a key open challenge in modern machine learning-requires models to predict unknown combinations of known concepts. However, assessing compositional generalization remains a fundamental challenge due to the lack of standardized evaluation protocols and the limitations of current benchmarks, which often favor efficiency over rigor. At the same time, general-purpose vision architectures lack the necessary inductive biases, and existing approaches to endow them compromise scalability. As a remedy, this paper introduces: 1) a rigorous evaluation framework that unifies and extends previous approaches while reducing computational requirements from combinatorial to constant; 2) an extensive and modern evaluation on the status of compositional generalization in supervised vision backbones, training more than 5000 models; 3) Attribute Invariant Networks, a class of models establishing a new Pareto frontier in compositional generalization, achieving a 23.43% accuracy improvement over baselines while reducing parameter overhead from 600% to 16% compared to fully disentangled counterparts. Our code is available at https://github.com/IBM/scalable-compositional-generalization.

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Cite This Study

Camposampiero et al. (2025) studied this question.

synapsesocial.com/papers/690fdcdaf60c54d04ea37ff3https://doi.org/10.48550/arxiv.2511.02667
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