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NELLIE: A Neuro-Symbolic Inference Engine for Grounded, Compositional, and Explainable Reasoning

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arxiv 2209.07662 v5 pith:J43Y24KD submitted 2022-09-16 cs.CL

classification cs.CL
keywords nelliereasoninggroundedmodernfactsinferenceinterpretablemethods
verification ladder T0 review T1 audit T2 compute T3 formal
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Our goal is a modern approach to answering questions via systematic reasoning where answers are supported by human interpretable proof trees grounded in an NL corpus of authoritative facts. Such a system would help alleviate the challenges of interpretability and hallucination with modern LMs, and the lack of grounding of current explanation methods (e.g., Chain-of-Thought). This paper proposes a new take on Prolog-based inference engines, where we replace handcrafted rules with a combination of neural language modeling, guided generation, and semiparametric dense retrieval. Our implementation, NELLIE, is the first system to demonstrate fully interpretable, end-to-end grounded QA as entailment tree proof search, going beyond earlier work explaining known-to-be-true facts from text. In experiments, NELLIE outperforms a similar-sized state-of-the-art reasoner [Tafjord et al., 2022] while producing knowledge-grounded explanations. We also find NELLIE can exploit both semi-structured and NL text corpora to guide reasoning. Together these suggest a new way to jointly reap the benefits of both modern neural methods and traditional symbolic reasoning.

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  1. Rank-K: Test-Time Reasoning for Listwise Reranking

    cs.IR 2025-05 conditional novelty 6.0 of 10

    Rank-K, a reasoning-model-based listwise reranker distilled from DeepSeek R1 traces, beats RankZephyr on several benchmarks but only marginally on TREC DL 2019/2020.

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