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Elizabeth T. Hsiao-Wecksler

5 accepted papers

2025

An Interactive Hands-Free Controller for a Riding Ballbot to Enable Simple Shared Control Tasks

ICRA 2025

Our team developed a riding ballbot (called PURE) that is dynamically stable, omnidirectional, and driven by lean-to-steer control. A hands-free admittance control scheme (HACS) was previously integrated to allow riders with different torso functions to control the robot's movements via torso leanin

Cited by 1SourceScholar
2023

Design and Control of a Ballbot Drivetrain with High Agility, Minimal Footprint, and High Payload

IROS 2023poster

This paper presents the design and control of a ballbot drivetrain that aims to achieve high agility, minimal footprint, and high payload capacity while maintaining dynamic stability. Two hardware platforms and analytical models were developed to test design and control methodologies. The full-scale…

Cited by 10SourceScholar
2021

Design and Clinical Validation of a Robotic Ankle-Foot Simulator With Series Elastic Actuator for Ankle Clonus Assessment Training

RA-L 2021

To fulfill the need for reliable and consistent medical training of the neurological examination technique to assess ankle clonus, a series elastic actuator (SEA) based haptic training simulator was proposed and developed. The simulator's mechanism (a hybrid of belt and linkage drive) and controller

Cited by 10SourceScholar
2021

Development of a Series Elastic Elbow Neurological Exam Training Simulator for Lead-pipe Rigidity

ICRA 2021poster

This paper describes the development of a 1-DOF kinesthetic force display device in the form of an arm training simulator that replicates the haptic feeling of lead-pipe rigidity in the elbow joint. Patients with lead-pipe rigidity have uniformly elevated muscle tone throughout the range of motion,…

Cited by 5SourceScholar
2018

Augmented Joint Stiffness and Actuation Using Architectures of Soft Pneumatic Actuators

ICRA 2018poster

Soft robotic actuators are well suited for use in exoskeleton applications due to their innate compliance and low weight. We have developed a wearable soft robotic sleeve that uses fiber reinforced elastomeric enclosures (FREEs) to provide actuation and stiffness at the elbow for augmented lifting a…

Cited by 14SourceScholar