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Adaptive Query Rewriting: Aligning Rewriters through Marginal Probability of Conversational Answers

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arxiv 2406.10991 v1 pith:S6USM2RB submitted 2024-06-16 cs.CL

classification cs.CL
keywords modelsqueryannotationsconversationalrewriterewritingdatasetspassage
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abstract

Query rewriting is a crucial technique for passage retrieval in open-domain conversational question answering (CQA). It decontexualizes conversational queries into self-contained questions suitable for off-the-shelf retrievers. Existing methods attempt to incorporate retriever's preference during the training of rewriting models. However, these approaches typically rely on extensive annotations such as in-domain rewrites and/or relevant passage labels, limiting the models' generalization and adaptation capabilities. In this paper, we introduce AdaQR ($\textbf{Ada}$ptive $\textbf{Q}$uery $\textbf{R}$ewriting), a framework for training query rewriting models with limited rewrite annotations from seed datasets and completely no passage label. Our approach begins by fine-tuning compact large language models using only ~$10\%$ of rewrite annotations from the seed dataset training split. The models are then utilized to generate rewrite candidates for each query instance. A novel approach is then proposed to assess retriever's preference for these candidates by the probability of answers conditioned on the conversational query by marginalizing the Top-$K$ passages. This serves as the reward for optimizing the rewriter further using Direct Preference Optimization (DPO), a process free of rewrite and retrieval annotations. Experimental results on four open-domain CQA datasets demonstrate that AdaQR not only enhances the in-domain capabilities of the rewriter with limited annotation requirement, but also adapts effectively to out-of-domain datasets.

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Cited by 1 Pith paper

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  1. ToolGrad: Efficient Tool-use Dataset Generation with Textual "Gradients"

    cs.CL 2025-08 unverdicted novelty 7.0 of 10

    ToolGrad inverts tool-use dataset generation: build valid tool-call chains first, synthesize queries second, yielding lower cost and near-100% pass rates.

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