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Score Neural Operator: A Generative Model for Learning and Generalizing Across Multiple Probability Distributions

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arxiv 2410.08549 v2 pith:7CPH45LV submitted 2024-10-11 cs.LG

classification cs.LG
keywords scoreprobabilitydistributiondistributionsoperatorgenerativeimagelearning
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abstract

Most existing generative models are limited to learning a single probability distribution from the training data and cannot generalize to novel distributions for unseen data. An architecture that can generate samples from both trained datasets and unseen probability distributions would mark a significant breakthrough. Recently, score-based generative models have gained considerable attention for their comprehensive mode coverage and high-quality image synthesis, as they effectively learn an operator that maps a probability distribution to its corresponding score function. In this work, we introduce the $\emph{Score Neural Operator}$, which learns the mapping from multiple probability distributions to their score functions within a unified framework. We employ latent space techniques to facilitate the training of score matching, which tends to over-fit in the original image pixel space, thereby enhancing sample generation quality. Our trained Score Neural Operator demonstrates the ability to predict score functions of probability measures beyond the training space and exhibits strong generalization performance in both 2-dimensional Gaussian Mixture Models and 1024-dimensional MNIST double-digit datasets. Importantly, our approach offers significant potential for few-shot learning applications, where a single image from a new distribution can be leveraged to generate multiple distinct images from that distribution.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. DiScoFormer: Plug-In Density and Score Estimation with Transformers

    cs.LG 2025-11 conditional novelty 6.0 of 10

    A single transformer trained on Gaussian mixtures estimates density and score for new distributions and sample sizes, outperforming kernel density estimators in tests.

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