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ScalingFilter: Assessing Data Quality through Inverse Utilization of Scaling Laws

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arxiv 2408.08310 v1 pith:NI7UYCBA submitted 2024-08-15 cs.CL

classification cs.CL
keywords diversitymodelsqualityscalingfilterdatasemanticdatasetfiltering
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High-quality data is crucial for the pre-training performance of large language models. Unfortunately, existing quality filtering methods rely on a known high-quality dataset as reference, which can introduce potential bias and compromise diversity. In this paper, we propose ScalingFilter, a novel approach that evaluates text quality based on the perplexity difference between two language models trained on the same data, thereby eliminating the influence of the reference dataset in the filtering process. An theoretical analysis shows that ScalingFilter is equivalent to an inverse utilization of scaling laws. Through training models with 1.3B parameters on the same data source processed by various quality filters, we find ScalingFilter can improve zero-shot performance of pre-trained models in downstream tasks. To assess the bias introduced by quality filtering, we introduce semantic diversity, a metric of utilizing text embedding models for semantic representations. Extensive experiments reveal that semantic diversity is a reliable indicator of dataset diversity, and ScalingFilter achieves an optimal balance between downstream performance and semantic diversity.

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Cited by 2 Pith papers

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

  1. Predictable Scale: Part II, Farseer: A Refined Scaling Law in Large Language Models

    cs.LG 2025-06 conditional novelty 6.0 of 10

    A newly fitted scaling law with model-size-dependent data exponents predicts LLM loss more accurately than Chinchilla, including at a held-out 25.1B model.

  2. Using Scaling Laws for Data Source Utility Estimation in Domain-Specific Pre-Training

    cs.LG 2025-07 conditional novelty 5.0 of 10

    Running multiple short annealing runs at different token scales can reveal per-source utility scaling curves that change data-source rankings compared with single point estimates.

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