← Search

Xiangyang Wang

5 accepted papers

2025

A Study on Enhancing Wearer Adaptation Through Accurate Gait Phase Prediction and Gradual Increase in Assistive Force Magnitude in Exosuits

RA-L 2025

Human-exosuit adaptation is a bi-directional process: exosuit-to-human locomotion adaptation maximizes the benefits of exosuit assistance, while human-to-exosuit adaptation accelerates the wearer's access to these benefits. To promote bi-directional adaptation, we investigated precise gait phase pre

Cited by 2SourceScholar
2025

IMU-Based Motion Mode Recognition in Soft Underwater Exosuit

IROS 2025

By accurately recognizing the wearer’s motion, the underwater exoskeleton enables more efficient human-machine collaboration and provides enhanced assistance in complex and dynamic underwater environments. In this study, we propose a soft underwater exosuit motion mode recognizer based on a long sho

Cited by 0SourceScholar
2025

Underwater Exosuit Actuator Design for Unrestricted Bidirectional Hip Assistance During Flutter Kicking

IROS 2025

Underwater assistance is crucial for individuals who depend on diving for their livelihood. In this paper, we propose a novel underwater exosuit actuator designed to assist with flutter kicking during diving, thereby decreasing the effort the diver has to exert. The actuator can provide bidirectiona

Cited by 0SourceScholar
2022

Design and Analysis of a Novel Variable Stiffness Continuum Robot With Built-in Winding-Styled Ropes

RA-L 2022

Continuum robots driven by rods have a wide range of applications, such as detection and maintenance tasks in unstructured environments. However, their inherent nature of flexibility also limits their function. Thus, variable stiffness mechanisms for continuum robots have consistently attracted the

Cited by 34SourceScholar