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Graph Linearization Methods for Reasoning on Graphs with Large Language Models

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arxiv 2410.19494 v3 pith:HGPUSP2D submitted 2024-10-25 cs.CL cs.LG

Graph Linearization Methods for Reasoning on Graphs with Large Language Models

classification cs.CL cs.LG
keywords graphgraphslinearizationmethodslanguagellmslargemodels
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Large language models have evolved to process multiple modalities beyond text, such as images and audio, which motivates us to explore how to effectively leverage them for graph reasoning tasks. The key question, therefore, is how to transform graphs into linear sequences of tokens, a process we term "graph linearization", so that LLMs can handle graphs naturally. We consider that graphs should be linearized meaningfully to reflect certain properties of natural language text, such as local dependency and global alignment, in order to ease contemporary LLMs, trained on trillions of textual tokens, better understand graphs. To achieve this, we developed several graph linearization methods based on graph centrality and degeneracy. These methods are further enhanced using node relabeling techniques. The experimental results demonstrate the effectiveness of our methods compared to the random linearization baseline. Our work introduces novel graph representations suitable for LLMs, contributing to the potential integration of graph machine learning with the trend of multimodal processing using a unified transformer model.

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Cited by 3 Pith papers

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