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Enrica Tricomi

9 accepted papers

2026

Point Cloud-Based Grasping for Soft Hand Exoskeleton

ICRA 2026poster

Grasping is a fundamental skill for interacting with and manipulating objects in the environment. However, this ability can be challenging for individuals with hand impairments. Soft hand exoskeletons designed to assist grasping can enhance or restore essential hand functions, yet controlling these …

2026

Voice-Driven Assistance and Resistance Modulation in a Soft Hip Exosuit Using a Transformer-Based Speech Recognition Model

ICRA 2026poster

Intuitive human–robot interfaces are essential to increase usability and personalization in wearable robotic assistive technologies. However, most current systems rely on pre-programmed or sensor-driven strategies that offer limited active user control online. To address this limitation, we present …

Cited by 0Scholar
2024

Integrating Computer Vision in Exosuits for Adaptive Support and Reduced Muscle Strain in Industrial Environments

RA-L 2024

Exosuits are wearable technologies that improve physical capabilities and mobility providing support during various activities. Although primarily intended for medical rehabilitation, there is growing interest in utilizing exosuits in industrial environments to prevent work-related musculoskeletal d

Cited by 14SourceScholar
2023

Environment-Based Assistance Modulation for a Hip Exosuit via Computer Vision

RA-L 2023

Just like in humans vision plays a fundamental role in guiding adaptive locomotion, when designing the control strategy for a walking assistive technology, the use of computer vision may substantially improve modulation of the assistance based on the external environment. In this letter, we develope

Cited by 33SourceScholar
2022

Enhancing Gait Assistance Control Robustness of a Hip Exosuit by Means of Machine Learning

RA-L 2022

Optimally synchronising the assistance provided by wearable devices with the human voluntary motion is still an open challenge in robotics. In order to provide accurate and robust assistance, this paper presents a novel approach that combines a layered implementation of a controller for an underactu

Cited by 16SourceScholar
2022

Rigid, Soft, Passive, and Active: A Hybrid Occupational Exoskeleton for Bimanual Multijoint Assistance

RA-L 2022

Physically demanding work is still common in western countries, with large proportions of the workforce that are exposed for more than a quarter of their working time to tiring postures or repetitive tasks: the shoulder is one of the main body areas susceptible to work-related musculo-skeletal disor

Cited by 38SourceScholar
2022

Underactuated Soft Hip Exosuit Based on Adaptive Oscillators to Assist Human Locomotion

RA-L 2022

Reproducing the mechanisms of human locomotion is a hard challenge. Assistive wearable devices in this context need to be lightweight, portable, and to adapt to the wearer’s walking pattern. Aiming to combine the aforementioned features, we developed a soft wearable exosuit to assist hip flexion dur

Cited by 49SourceScholar