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Model Collapse Demystified: The Case of Regression
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In the era of proliferation of large language and image generation models, the phenomenon of "model collapse" refers to the situation whereby as a model is trained recursively on data generated from previous generations of itself over time, its performance degrades until the model eventually becomes completely useless, i.e the model collapses. In this work, we study this phenomenon in the setting of high-dimensional regression and obtain analytic formulae which quantitatively outline this phenomenon in a broad range of regimes. In the special case of polynomial decaying spectral and source conditions, we obtain modified scaling laws which exhibit new crossover phenomena from fast to slow rates. We also propose a simple strategy based on adaptive regularization to mitigate model collapse. Our theoretical results are validated with experiments.
Forward citations
Cited by 2 Pith papers
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What Matters in LLM-generated Data: Diversity and Its Effect on Model Fine-Tuning
Moderately diverse LLM-generated data can improve fine-tuned model performance in low-data settings when distribution shift is minimal, while high diversity or large distribution shift hurts.
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Position: Machine Learning Conferences Should Establish a "Refutations and Critiques" Track
ML conferences should create an official peer-reviewed track dedicated to refuting and critiquing previously published work.
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