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PRISM: Diversifying Dataset Distillation by Decoupling Architectural Priors

Brian Moser; Shalini Sarode; Federico Raue; Stanislav Frolov; Krzysztof Adamkiewicz; Arundhati Shanbhag; Joachim Folz; Tobias Christian Nauen; Andreas Dengel
In: Transactions on Machine Learning Research (TMLR), Pages 1-17, Journal of Machine Learning Research, 1/2026.

Abstract

Dataset distillation (DD) promises compact yet faithful synthetic data, but existing approaches often inherit the inductive bias of a single teacher model. As dataset size increases, this bias drives generation toward overly smooth, homogeneous samples, reducing intra-class diversity and limiting generalization. We present PRISM (PRIors from diverse Source Models), a framework that disentangles architectural priors during synthesis. PRISM decouples the logit-matching and regularization objectives, supervising them with different teacher architectures: a primary model for logits and a stochastic subset for batch-normalization (BN) alignment. On ImageNet-1K, PRISM consistently and reproducibly outperforms single-teacher methods (e.g., SRe2L) and recent multi-teacher variants (e.g., G-VBSM) at low- and mid-IPC regimes. The generated data also show significantly richer intra-class diversity, as reflected by a notable drop in cosine similarity between features. We further analyze teacher selection strategies (pre- vs. intra-distillation) and introduce a scalable cross-class batch formation scheme for fast parallel synthesis. Code: https://github.com/Brian-Moser/prism

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