Papers by Jingwei Xiong

5 papers
Elevating Legal LLM Responses: Harnessing Trainable Logical Structures and Semantic Knowledge with Legal Reasoning (2025.naacl-long)

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Challenge: Existing approaches to large language models focus on semantic similarity, neglecting the intricate logical structures and reasoning essential for addressing complex legal issues.
Approach: They propose a Logical-Semantic Integration Model (LSIM) that bridges semantic and logical coherence and a supervised framework that integrates semantic features with in-context learning.
Outcome: The proposed framework significantly improves accuracy and reliability on a real-world legal QA dataset.
LLM4DistReconfig: A Fine-tuned Large Language Model for Power Distribution Network Reconfiguration (2025.naacl-long)

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Challenge: Power distribution network reconfiguration is crucial for maintaining operational efficiency, reliability and adaptability in modern power networks.
Approach: They propose a deep learning-based approach to solve a distribution network reconfiguration problem using inputs from a LLM.
Outcome: The proposed model generates optimal configurations minimizing system loss for five individual and a combined test dataset.
Hey, That’s My Data! Token-Only Dataset Inference in Large Language Models (2026.findings-acl)

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Challenge: Existing dataset inference methods require logit access, but many modern LLMs restrict such access.
Approach: They propose a token-only dataset inference framework that allows models to overwrite prior knowledge when trained on new data.
Outcome: The proposed framework overwrites prior knowledge when trained on new data.
Co-DETECT: Collaborative Discovery of Edge Cases in Text Classification (2025.emnlp-demos)

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Challenge: Social scientists often need to develop codebooks that can be reliable but require significant human effort.
Approach: They propose a mixed-initiative annotation framework that integrates human expertise with automatic annotation guided by large language models.
Outcome: The proposed framework integrates human expertise with automatic annotation guided by large language models.
"Excuse me, may I say something..." CoLabScience, A Proactive AI Assistant for Biomedical Discovery and LLM-Expert Collaborations (2026.acl-long)

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Challenge: Existing large language models (LLMs) are reactive and respond only when prompted, limiting their effectiveness in collaborative settings.
Approach: They introduce a proactive LLM assistant designed to enhance biomedical collaboration between AI systems and human experts through timely, context-aware interventions.
Outcome: The proposed model outperforms baselines in intervention precision and collaborative task utility, highlighting the potential of proactive LLMs as intelligent scientific assistants.

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