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Consistency Guided Knowledge Retrieval and Denoising in LLMs for Zero-shot Document-level Relation Triplet Extraction

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arxiv 2401.13598 v1 pith:QWCSD2YK submitted 2024-01-24 cs.CL

classification cs.CL
keywords datadocument-levelrelationextractiontripletdenoisingknowledgelabeled
verification ladder T0 review T1 audit T2 compute T3 formal
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Document-level Relation Triplet Extraction (DocRTE) is a fundamental task in information systems that aims to simultaneously extract entities with semantic relations from a document. Existing methods heavily rely on a substantial amount of fully labeled data. However, collecting and annotating data for newly emerging relations is time-consuming and labor-intensive. Recent advanced Large Language Models (LLMs), such as ChatGPT and LLaMA, exhibit impressive long-text generation capabilities, inspiring us to explore an alternative approach for obtaining auto-labeled documents with new relations. In this paper, we propose a Zero-shot Document-level Relation Triplet Extraction (ZeroDocRTE) framework, which generates labeled data by retrieval and denoising knowledge from LLMs, called GenRDK. Specifically, we propose a chain-of-retrieval prompt to guide ChatGPT to generate labeled long-text data step by step. To improve the quality of synthetic data, we propose a denoising strategy based on the consistency of cross-document knowledge. Leveraging our denoised synthetic data, we proceed to fine-tune the LLaMA2-13B-Chat for extracting document-level relation triplets. We perform experiments for both zero-shot document-level relation and triplet extraction on two public datasets. The experimental results illustrate that our GenRDK framework outperforms strong baselines.

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  1. GLiREL -- Generalist Model for Zero-Shot Relation Extraction

    cs.CL 2025-01 conditional novelty 6.0 of 10

    A single-pass encoder-scorer model with synthetic LLM pretraining matches or beats prior zero-shot relation classification methods on FewRel and on Wiki-ZSL with 10 or 15 unseen relations, while running far faster.

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