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Peijie Wang

5 accepted papers

2026

VLM-Loc: Localization in Point Cloud Maps via Vision-Language Models

CVPR 2026

Text-to-point-cloud (T2P) localization aims to infer precise spatial positions within 3D point cloud maps from natural language descriptions, reflecting how humans perceive and communicate spatial layouts through language. However, existing methods largely rely on shallow text-point cloud correspond

Cited by 0SourcecodeScholar
2025

LongDocURL: a Comprehensive Multimodal Long Document Benchmark Integrating Understanding, Reasoning, and Locating

ACL 2025long

Large vision language models (LVLMs) have improved the document understanding capabilities remarkably, enabling the handling of complex document elements, longer contexts, and a wider range of tasks. However, existing document understanding benchmarks have been limited to handling only a small numbe…

2025

MV-MATH: Evaluating Multimodal Math Reasoning in Multi-Visual Contexts

CVPR 2025poster

Multimodal Large Language Models (MLLMs) have shown promising capabilities in mathematical reasoning within visual contexts across various datasets. However, most existing multimodal math benchmarks are limited to single-visual contexts, which diverges from the multi-visual scenarios commonly encoun…

Cited by 6SourcePDFScholar
2025

PeRL: Permutation-Enhanced Reinforcement Learning for Interleaved Vision-Language Reasoning

NeurIPS 2025poster

Inspired by the impressive reasoning capabilities demonstrated by reinforcement learning approaches like DeepSeek-R1, recent emerging research has begun exploring the use of reinforcement learning (RL) to enhance vision-language models (VLMs) for multimodal reasoning tasks. However, most existing mu…

Cited by 0SourceScholar
2025

SolidGeo: Measuring Multimodal Spatial Math Reasoning in Solid Geometry

NeurIPS 2025poster

Geometry is a fundamental branch of mathematics and plays a crucial role in evaluating the reasoning capabilities of multimodal large language models (MLLMs). However, existing multimodal mathematics benchmarks mainly focus on plane geometry and largely ignore solid geometry, which requires spatial…

Cited by 0SourceScholar