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Benchmarking and Enhancing Disentanglement in Concept-Residual Models

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arxiv 2312.00192 v1 pith:KT6HE456 submitted 2023-11-30 cs.LG cs.CV

classification cs.LGcs.CV
keywords performanceconceptsinformationmodelmodelstaskdisentanglementdownstream
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Concept bottleneck models (CBMs) are interpretable models that first predict a set of semantically meaningful features, i.e., concepts, from observations that are subsequently used to condition a downstream task. However, the model's performance strongly depends on the engineered features and can severely suffer from incomplete sets of concepts. Prior works have proposed a side channel -- a residual -- that allows for unconstrained information flow to the downstream task, thus improving model performance but simultaneously introducing information leakage, which is undesirable for interpretability. This work proposes three novel approaches to mitigate information leakage by disentangling concepts and residuals, investigating the critical balance between model performance and interpretability. Through extensive empirical analysis on the CUB, OAI, and CIFAR 100 datasets, we assess the performance of each disentanglement method and provide insights into when they work best. Further, we show how each method impacts the ability to intervene over the concepts and their subsequent impact on task performance.

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Cited by 1 Pith paper

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  1. A Comprehensive Survey on the Risks and Limitations of Concept-based Models

    cs.LG 2025-05 conditional novelty 4.0 of 10

    A survey cataloging the main vulnerabilities of supervised and unsupervised concept-based models, including concept leakage, spurious correlations, and intervention failures.

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