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Jianlin Wang

4 accepted papers

2026

Automated Formal Proofs of Combinatorial Identities via Wilf–Zeilberger Guidance and LLMs

ICML 2026spotlight

Automating formal proofs of combinatorial identities is challenging for LLM-based provers, as long-horizon proof planning is required and unconstrained search quickly explodes. Symbolic methods such as the Wilf--Zeilberger (WZ) method can achieve a mechanized proof of combinatorial identities by con…

Cited by 0SourceScholar
2026

From LLM-Generated Conjectures to Lean Formalizations: Automated Polynomial Inequality Proving via Sum-of-Squares Certificates

ICML 2026poster

Automated proving of polynomial inequalities is a fundamental challenge in automated mathematical reasoning, where rich algebraic structure and a rapidly growing certificate search space hinder scalability. Purely symbolic approaches provide strong guarantees but often scale poorly as the number of …

Cited by 0SourceScholar
2025

QDTSynth: Quality-Driven Formal Theorem Synthesis for Enhancing Proving Performance of LLMs

ACL 2025long

Automated Theorem Proving is an important and challenging task. Although large language models (LLMs) have demonstrated remarkable potential in mathematical reasoning, their performance in formal theorem proving remains constrained by the scarcity of high-quality supervised fine-tuning (SFT) data. T…

Cited by 0SourcePDFScholar
2024

Transformable Inspection Robot Design and Implementation for Complex Pipeline Environment

RA-L 2024

Pipeline inspections are crucial to ensure the reliability of the transmission system. However, with the growing complexity and aging of the pipe system, traditional pipeline inspection robots struggle to adapt to complex environments with obstacles, cracks, changing cross-section, and other challen

Cited by 6SourceScholar