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An Vuong

6 accepted papers

2025

GraspMamba: A Mamba-based Language-driven Grasp Detection Framework with Hierarchical Feature Learning

IROS 2025

Grasp detection is a fundamental robotic task critical to the success of many industrial applications. However, current language-driven models for this task often struggle with cluttered images, lengthy textual descriptions, or slow inference speed. We introduce GraspMamba, a new language-driven gra

Cited by 5SourceScholar
2024

HabiCrowd: A High Performance Simulator for Crowd-Aware Visual Navigation

IROS 2024poster

Visual navigation, a foundational aspect of Embodied AI (E-AI) and robotics has been extensively studied in the past few years. While many 3D simulators have been introduced for the visual navigation tasks, scarcely works have combined human dynamics, creating the gap between simulation and real-wor…

Cited by 3SourcecodeScholar
2024

Language-driven Grasp Detection with Mask-guided Attention

IROS 2024poster

Grasp detection is an essential task in robotics with various industrial applications. However, traditional methods often struggle with occlusions and do not utilize language for grasping. Incorporating natural language into grasp detection remains a challenging task and largely unexplored. To addre…

Cited by 1SourceScholar
2024

Lightweight Language-driven Grasp Detection using Conditional Consistency Model

IROS 2024

Language-driven grasp detection is a fundamental yet challenging task in robotics with various industrial applications. This work presents a new approach for language-driven grasp detection that leverages lightweight diffusion models to achieve fast inference time. By integrating diffusion processes

Cited by 12SourceScholar
2023

Open-Vocabulary Affordance Detection in 3D Point Clouds

IROS 2023poster

Affordance detection is a challenging problem with a wide variety of robotic applications. Traditional affordance detection methods are limited to a predefined set of affordance labels, hence potentially restricting the adaptability of intelligent robots in complex and dynamic environments. In this…

Cited by 33SourcecodeScholar