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Yaonan Zhu

10 accepted papers

2026

Grasp, Reason, Act: Tactile-Language Model for Zeroshot Sim2real Grasp Stability Prediction and Re-Grasping

RA-L 2026

Robotic tactile learning is a critical research area for enabling robots to perform complex manipulation tasks with human-like dexterity and adaptability. However, ensuring grasp stability remains one of the most fundamental yet challenging problems in tactile sensing. Existing approaches predominan

Cited by 0SourceScholar
2026

M2oE: Modular Mixture of Experts for Multi-Morphology Reinforcement Learning of Modular Robots

ICRA 2026poster

Modular robots offer a promising solution for building versatile and adaptable robotic systems. For instance, space exploration robots can be designed to reconfigure to meet diverse task demands across varying environments. However, training such systems by Reinforcement Learning (RL) remains challe…

Cited by 0codeScholar
2025

A Comprehensive Survey on Physical Risk Control in the Era of Foundation Model-enabled Robotics

IJCAI 2025

Recent Foundation Model-enabled robotics (FMRs) display greatly improved general-purpose skills, enabling more adaptable automation than conventional robotics. Their ability to handle diverse tasks thus creates new opportunities to replace human labor. However, unlike general foundation models, FMRs

Cited by 0SourcePDFScholar
2025

Improved Availability of Mobile Network Teleoperation by Employing a Video Conferencing Application With Audio-Embedded Commands

RA-L 2025

This study proposed an innovative teleoperation system utilizing video conferencing applications to enhance availability and operability in mobile networks. The proposed system accomplished this by transmitting video through screen sharing and embedding control signals into audio signals by converti

Cited by 2SourceScholar
2024

Enhancing the LLM-Based Robot Manipulation Through Human-Robot Collaboration

RA-L 2024

Large Language Models (LLMs) are gaining popularity in the field of robotics. However, LLM-based robots are limited to simple, repetitive motions due to the poor integration between language models, robots, and the environment. This letter proposes a novel approach to enhance the performance of LLM-

Cited by 83SourceScholar
2024

RNN-Based Visual Guidance for Enhanced Sense of Agency in Teleoperation With Time-Varying Delays

RA-L 2024

Intuitive teleoperation enables operators to embody remote robots, providing the sensation that the robot is part of their own body during control. The sense of agency (SoA), i.e., the feeling of controlling the robot, contributes to enhanced motivation and embodiment during teleoperation. However,

Cited by 1SourceScholar
2024

Variable Grounding Flexible Limb Tracking Center of Gravity for Sit-to-Stand Transfer Assistance

RA-L 2024

Wearable robotic limbs support sit-to-stand (STS) transfer with increased stability while maintaining a compact size, as well as providing body weight support. This paper proposes a new robotic limb, Variable Grounding Flexible Limb (VGFL). The VGFL achieved a novel strategy in which its grounding p

Cited by 11SourceScholar
2022

Cutaneous Feedback Interface for Teleoperated In-Hand Manipulation

IROS 2022poster

In-hand pivoting is one of the important manipulation skills that leverage robot grippers' extrinsic dexterity to perform repositioning tasks to compensate for environmental uncertainties and imprecise motion execution. Although many researchers have been trying to solve pivoting problems using math…

Cited by 4SourceScholar
2022

Metabolic Efficiency Improvement of Human Walking by Shoulder Stress Reduction through Load Transfer Backpack

IROS 2022poster

The dynamic load attached to the load gravity imposes an excessive burden to human shoulders during load carriage, resulting in possible muscle injuries and additional physical exertion. This paper proposes an active suspension backpack, capable of transferring partial load from human shoulders to p…

Cited by 6SourceScholar
2020

Enhancing the Transparency by Onomatopoeia for Passivity-Based Time-Delayed Teleoperation

RA-L 2020

Robotic teleoperation with force feedback has been studied extensively since it was first developed in the 1940 s. Time delay is a common problem of bilateral teleoperation systems. Although many efforts on optimizing the control architectures have been made, there is always a trade-off between tran

Cited by 14SourceScholar