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Learning to Plan and Generate Text with Citations
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The increasing demand for the deployment of LLMs in information-seeking scenarios has spurred efforts in creating verifiable systems, which generate responses to queries along with supporting evidence. In this paper, we explore the attribution capabilities of plan-based models which have been recently shown to improve the faithfulness, grounding, and controllability of generated text. We conceptualize plans as a sequence of questions which serve as blueprints of the generated content and its organization. We propose two attribution models that utilize different variants of blueprints, an abstractive model where questions are generated from scratch, and an extractive model where questions are copied from the input. Experiments on long-form question-answering show that planning consistently improves attribution quality. Moreover, the citations generated by blueprint models are more accurate compared to those obtained from LLM-based pipelines lacking a planning component.
Forward citations
Cited by 2 Pith papers
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RH-RAG: Trustworthy Long-Form Generation for Privacy-Constrained Settings
A multi-agent RAG framework that adds planning, bounded memory, and NLI-based revision to local 7-8B models, reported to improve faithfulness and coherence in long-form generation.
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LCDS: A Logic-Controlled Discharge Summary Generation System Supporting Source Attribution and Expert Review
A logic-controlled pipeline with source mapping and sentence-level attribution generates discharge summaries that score higher than a GPT-4o chain-of-thought baseline in this study.
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