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Yuze Wu

9 accepted papers

2026

A Precise Real-Time Force-Aware Grasping System for Robust Aerial Manipulation

ICRA 2026poster

Aerial manipulation requires force-aware capabilities to enable safe and effective grasping and physical interaction. Previous works often rely on heavy, expensive force sensors unsuitable for typical quadrotor platforms, or perform grasping without force feedback, risking damage to fragile objects.…

2026

Embodied Navigation Foundation Model

ICLR 2026poster

Navigation is a fundamental capability in embodied AI, representing the intelligence required to perceive and interact within physical environments. To achieve such intelligence, recent advanced works leverage Vision-Language Models (VLMs), which demonstrate strong generalizability and possess a wel…

Cited by 0SourcecodeScholar
2025

FLOAT Drone: A Fully-actuated Coaxial Aerial Robot for Close-Proximity Operations

IROS 2025

How to endow aerial robots with the ability to operate in close proximity remains an open problem. The core challenges lie in the propulsion system’s dual-task requirement: generating manipulation forces while simultaneously counter-acting gravity. These competing demands create dynamic coupling eff

Cited by 2SourceScholar
2025

Shape-Adaptive Planning and Control for a Deformable Quadrotor

IROS 2025

Drones have become essential in various applications, but conventional quadrotors face limitations in confined spaces and complex tasks. Deformable drones, which can adapt their shape in real-time, offer a promising solution to overcome these challenges, while also enhancing maneuverability and enab

Cited by 1SourceScholar
2024

GS-Planner: A Gaussian-Splatting-based Planning Framework for Active High-Fidelity Reconstruction

IROS 2024poster

Active reconstruction technique enables robots to autonomously collect scene data for full coverage, relieving users from tedious and time-consuming data capturing process. However, designed based on unsuitable scene representations, existing methods show unrealistic reconstruction results or the in…

Cited by 13SourceScholar
2023

Model-Based Planning and Control for Terrestrial-Aerial Bimodal Vehicles with Passive Wheels

IROS 2023poster

Terrestrial and aerial bimodal vehicles have gained widespread attention due to their cross-domain maneuverability. Nevertheless, their bimodal dynamics significantly increase the complexity of motion planning and control, thus hindering robust and efficient autonomous navigation in unknown environm…

Cited by 10SourceScholar
2023

Ring-Rotor: A Novel Retractable Ring-Shaped Quadrotor With Aerial Grasping and Transportation Capability

RA-L 2023

This letter presents a novel and retractable ring-shaped quadrotor called Ring-Rotor that can adjust the vehicle's length and width simultaneously. Unlike other morphing quadrotors with high platform complexity and poor controllability, Ring-Rotor uses only one servo motor for morphing but reduces t

Cited by 29SourceScholar
2023

Roller-Quadrotor: A Novel Hybrid Terrestrial/Aerial Quadrotor with Unicycle-Driven and Rotor-Assisted Turning

IROS 2023poster

The Roller-Quadrotor is a novel quadrotor that combines the maneuverability of aerial drones with the endurance of ground vehicles. This work focuses on the design, modeling, and experimental validation of the Roller-Quadrotor. Flight capabilities are achieved through a quadrotor config-uration, wit…

Cited by 5SourceScholar
2022

Autonomous and Adaptive Navigation for Terrestrial-Aerial Bimodal Vehicles

RA-L 2022

Terrestrial-aerial bimodal vehicles bloom in both academia and industry because they incorporate both the high mobility of aerial vehicles and the long endurance of ground vehicles. In this work, we present an autonomous and adaptive navigation framework to bring complete autonomy to this class of v

Cited by 64SourcecodeScholar