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Solid-SQL: Enhanced Schema-linking based In-context Learning for Robust Text-to-SQL

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arxiv 2412.12522 v1 pith:SDYECZQ4 submitted 2024-12-17 cs.CL cs.AI

classification cs.CLcs.AI
keywords robustsolid-sqltext-to-sqlaccuracybenchmarksenhancedin-contextlearning
verification ladder T0 review T1 audit T2 compute T3 formal
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Recently, large language models (LLMs) have significantly improved the performance of text-to-SQL systems. Nevertheless, many state-of-the-art (SOTA) approaches have overlooked the critical aspect of system robustness. Our experiments reveal that while LLM-driven methods excel on standard datasets, their accuracy is notably compromised when faced with adversarial perturbations. To address this challenge, we propose a robust text-to-SQL solution, called Solid-SQL, designed to integrate with various LLMs. We focus on the pre-processing stage, training a robust schema-linking model enhanced by LLM-based data augmentation. Additionally, we design a two-round, structural similarity-based example retrieval strategy for in-context learning. Our method achieves SOTA SQL execution accuracy levels of 82.1% and 58.9% on the general Spider and Bird benchmarks, respectively. Furthermore, experimental results show that Solid-SQL delivers an average improvement of 11.6% compared to baselines on the perturbed Spider-Syn, Spider-Realistic, and Dr. Spider benchmarks.

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Cited by 1 Pith paper

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

  1. SchemaGraphSQL: Efficient Schema Linking with Pathfinding Graph Algorithms for Text-to-SQL on Large-Scale Databases

    cs.CL 2025-05 conditional novelty 5.0 of 10

    By taking the union of all shortest paths between LLM-identified source and destination tables, SchemaGraphSQL reaches 95.71% table recall and 62.91% execution accuracy on BIRD dev, but the SOTA framing depends on rec...

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