中文

OCR对检索增强生成的 cascading 影响评估

计算机视觉与模式识别 2025-09-03 v4

摘要

Retrieval-augmented Generation (RAG) enhances Large Language Models (LLMs) by integrating external knowledge to reduce hallucinations and incorporate up-to-date information without retraining. As an essential part of RAG, external knowledge bases are commonly built by extracting structured data from unstructured PDF documents using Optical Character Recognition (OCR). However, given the imperfect prediction of OCR and the inherent non-uniform representation of structured data, knowledge bases inevitably contain various OCR noises. In this paper, we introduce OHRBench, the first benchmark for understanding the cascading impact of OCR on RAG systems. OHRBench includes 8,561 carefully selected unstructured document images from seven real-world RAG application domains, along with 8,498 Q&A pairs derived from multimodal elements in documents, challenging existing OCR solutions used for RAG. To better understand OCR's impact on RAG systems, we identify two primary types of OCR noise: Semantic Noise and Formatting Noise and apply perturbation to generate a set of structured data with varying degrees of each OCR noise. Using OHRBench, we first conduct a comprehensive evaluation of current OCR solutions and reveal that none is competent for constructing high-quality knowledge bases for RAG systems. We then systematically evaluate the impact of these two noise types and demonstrate the trend relationship between the degree of OCR noise and RAG performance. Our OHRBench, including PDF documents, Q&As, and the ground truth structured data are released at: https://github.com/opendatalab/OHR-Bench

关键词

引用

@article{arxiv.2412.02592,
  title  = {OCR Hinders RAG: Evaluating the Cascading Impact of OCR on Retrieval-Augmented Generation},
  author = {Junyuan Zhang and Qintong Zhang and Bin Wang and Linke Ouyang and Zichen Wen and Ying Li and Ka-Ho Chow and Conghui He and Wentao Zhang},
  journal= {arXiv preprint arXiv:2412.02592},
  year   = {2025}
}

备注

Accepted by ICCV 2025