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Yuanyi Wang

6 accepted papers

2026

MODEL MERGING SCALING LAWS IN LARGE LANGUAGE MODELS

ICML 2026poster

We study empirical scaling laws for language model merging measured by cross-entropy. Despite its wide practical use, merging lacks a quantitative rule that predicts returns as we add experts or scale the model size. We identify a compact power law that links model size and expert number: the size-d…

Cited by 0SourceScholar
2025

InfiFPO: Implicit Model Fusion via Preference Optimization in Large Language Models

NeurIPS 2025spotlight

Model fusion combines multiple Large Language Models (LLMs) with different strengths into a more powerful, integrated model through lightweight training methods. Existing works on model fusion focus primarily on supervised fine-tuning (SFT), leaving preference alignment (PA) —a critical phase for en…

Cited by 0SourcecodeScholar
2025

InfiGFusion: Graph-on-Logits Distillation via Efficient Gromov-Wasserstein for Model Fusion

NeurIPS 2025poster

Recent advances in large language models (LLMs) have intensified efforts to fuse heterogeneous open-source models into a unified system that inherits their complementary strengths. Existing logit-based fusion methods maintain inference efficiency but treat vocabulary dimensions independently, overl…

Cited by 0SourcecodeScholar
2025

Rethinking Smoothness for Fast and Adaptable Entity Alignment Decoding

NAACL 2025findings

Entity alignment (EA) is crucial for integrating multi-source knowledge graphs (KGs), aiming to identify equivalent entities across different graphs. However, most existing EA decoding methods rely on both entity and relation embeddings, limiting their generalizability and efficiency, especially in…

2023

Digital Twin-Driven Mixed Reality Framework for Immersive Teleoperation With Haptic Rendering

RA-L 2023

Teleoperation has widely contributed to many applications. Consequently, the design of intuitive and ergonomic control interfaces for teleoperation has become crucial. The rapid advancement of Mixed Reality (MR) has yielded tangible benefits in human-robot interaction. MR provides an immersive envir

Cited by 21SourceScholar
2023

TIMS: A Tactile Internet-Based Micromanipulation System with Haptic Guidance for Surgical Training

IROS 2023poster

Microsurgery involves the dexterous manipulation of delicate tissue or fragile structures, such as small blood vessels and nerves, under a microscope. To address the limitations of imprecise manipulation of human hands, robotic systems have been developed to assist surgeons in performing complex mic…

Cited by 8SourcecodeScholar