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Ningbo Yu

8 accepted papers

2025

A Kinematics Constrained Convex Optimal Trajectory Generation Method for Robotic-assisted Flexible Needle

IROS 2025

Needle puncture is a fundamental technique in minimally invasive surgical procedures. However, the limited flexibility of flexible needles and their complex interactions with tissues make it challenging to avoid critical organs along the puncture path. Preoperative path planning, which generates fea

Cited by 0SourceScholar
2025

A Rehabilitation Robot System to Enhance Proprioception with Physical and Virtual Simulation of Multi-terrain Scenarios

IROS 2025

Increasing evidence highlights the role of proprio-ceptive deficits in falls, emphasizing the need for targeted rehabilitation in populations with functional movement disorders. Despite advances in rehabilitation robots, movement constraints still hinder active engagement of the lower limb muscles,

Cited by 0SourceScholar
2025

An Improved Flexible Hand Exoskeleton with SEA for Finger Strength Estimation and Progressive Resistance Exercise

IROS 2025

Hand exoskeletons can recognize user’s intent and provide active resistance training to enhance finger strength in stroke patients. However, achieving fine human-robot interaction (HRI) while maintaining system simplicity for lightweight design remains a key challenge. In this work, we present an im

Cited by 0SourceScholar
2024

Control-Oriented Reinforcement Active Modeling Scheme for Hysteresis Compensation of Flexible Endoscopic Robot

IROS 2024poster

Hysteresis has posed significant challenges to the modeling and control of flexible endoscopic robots, which impedes the advancement of automated endoscopic operation. Despite numerous hysteresis modeling approaches aimed at improving accuracy, there are still several unresolved issues, such as inap…

Cited by 0SourceScholar
2022

Time-Optimal Synchronous Terminal Trajectory Planning for Coupling Motions of Robotic Flexible Endoscope

IROS 2022poster

The robotic flexible endoscope is developed rapidly in the field of surgery robots due to its high flexibility and safety. However, some inherent features, e.g., high nonlinearity, material creep, complex dynamic hysteresis behaviors, and the unknown coupling effects between bending and twisting mot…

Cited by 2SourceScholar
2020

Variable Stiffness Control with Strict Frequency Domain Constraints for Physical Human-Robot Interaction

IROS 2020poster

Variable impedance control is advantageous for physical human-robot interaction to improve safety, adaptability and many other aspects. This paper presents a gain-scheduled variable stiffness control approach under strict frequency-domain constraints. Firstly, to reduce conservativeness, we characte…

Cited by 2SourceScholar
2016

Impedance control of a cable-driven series elastic actuator with the 2-DOF control structure

IROS 2016poster

Series elastic actuators (SEAs) are growingly important in physical human-robot interaction (HRI) due to their inherent safety and compliance. Cable-driven SEAs also allow flexible installation and remote torque transmission, etc. However, there are still challenges for the impedance control of cabl…

Cited by 7SourceScholar
2015

A haptic shared control algorithm for flexible human assistance to semi-autonomous robots

IROS 2015poster

Autonomous as well as teleoperated robots find wide applications in various environments. Their capability to accomplish complex and dynamic operations can be significantly improved by fusing human intelligence with autonomous algorithms. In this paper, we propose a haptic shared control algorithm t…

Cited by 12SourceScholar