← Search

Benjamin Ward-Cherrier

15 accepted papers

2026

A Neuromorphic Incipient Slip Detection System Using Papillae Morphology

RA-L 2026

Detecting incipient slip enables early intervention to prevent object slippage and enhance robotic manipulation safety. Achieving this requires tactile interfaces with compliant, high-sensitivity skins that amplify local deformation differences and tactile sensing pipelines that preserve and exploit

Cited by 0SourceScholar
2025

Exploratory Movement Strategies for Texture Discrimination with a Neuromorphic Tactile Sensor

IROS 2025

We propose a neuromorphic tactile sensing frame-work for robotic texture classification that is inspired by human exploratory strategies. Our system utilizes the NeuroTac sensor to capture neuromorphic tactile data during a series of exploratory motions. We first tested six distinct motions for text

Cited by 1SourceScholar
2024

A Neuromorphic System for the Real-time Classification of Natural Textures

ICRA 2024poster

Tactile exploration of surfaces is a key component of everyday life, allowing us to make complex inferences about our environments even when vision is occluded. The emergence of biomimetic neuromorphic hardware in recent years has furthered our ability to create biologically plausible sensing soluti…

Cited by 3SourceScholar
2023

Incipient Slip Detection with a Biomimetic Skin Morphology

IROS 2023poster

Incipient slip is defined as the slippage of part, but not all, of the contact surface between a sensor and an object. Reliably detecting incipient slip in artificial tactile sensors would benefit autonomous robot handling capabilities by helping prevent object slippage during manipulation. Here, we…

Cited by 5SourceScholar
2022

Feeling the Pressure: The Influence of Vibrotactile Patterns on Feedback Perception

IROS 2022poster

Tactile feedback is necessary for closing the sen-sorimotor loop in prosthetic and tele-operable control, which would allow for more precise manipulation and increased acceptance of use of such devices. Pressure stimuli are commonly presented to users in haptic devices through a sensory substitution…

Cited by 5SourceScholar
2021

Towards integrated tactile sensorimotor control in anthropomorphic soft robotic hands

ICRA 2021poster

In this work, we report on how a sense of touch can be used to control an underactuated anthropomorphic robot hand, based on an integration that respects the hand’s mechanical functionality. Our focus is on integrating the sensorimotor control of the Pisa/IIT SoftHand, an anthropomorphic soft robot…

Cited by 29SourceScholar
2020

A Miniaturised Neuromorphic Tactile Sensor integrated with an Anthropomorphic Robot Hand

IROS 2020poster

Restoring tactile sensation is essential to enable in-hand manipulation and the smooth, natural control of upper-limb prosthetic devices. Here we present a platform to contribute to that long-term vision, combining an anthropomorphic robot hand (QB SoftHand) with a neuromorphic optical tactile senso…

Cited by 19SourceScholar
2020

NeuroTac: A Neuromorphic Optical Tactile Sensor applied to Texture Recognition

ICRA 2020poster

Developing artificial tactile sensing capabilities that rival human touch is a long-term goal in robotics and prosthetics. Gradually more elaborate biomimetic tactile sensors are being developed and applied to grasping and manipulation tasks to help achieve this goal. Here we present the neuroTac, a…

Cited by 77SourceScholar
2017

Addition of a Biomimetic Fingerprint on an Artificial Fingertip Enhances Tactile Spatial Acuity

RA-L 2017

The fingerprint is a morphological aspect of the human fingertip that has interesting implications for our sense of touch. Previous studies focused on how the fingerprint affects the perception of stimuli that excite high temporal frequencies, such as for texture perception. These studies also only

Cited by 36SourceScholar
2017

Exploiting Sensor Symmetry for Generalized Tactile Perception in Biomimetic Touch

RA-L 2017

Tactile perception methods rely on creating mappings from tactile data to percepts. In many approaches to artificial tactile perception, this involves extensive sampling of the object during the training phase. We introduce here a method to instead generalize tactile features across different orient

Cited by 17SourceScholar
2017

Model-Free Precise in-Hand Manipulation with a 3D-Printed Tactile Gripper

RA-L 2017

The use of tactile feedback for precision manipulation in robotics still lags far behind human capabilities. This study has two principal aims: 1) to demonstrate in-hand reorientation of grasped objects through active tactile manipulation; and 2) to present the development of a novel TacTip sensor a

Cited by 62SourceScholar
2016

Tactile Manipulation With a TacThumb Integrated on the Open-Hand M2 Gripper

RA-L 2016

Tactile manipulation will be essential for automating industrial and service tasks currently done by humans. However, the application of tactile feedback to dexterous manipulation remains a challenging unsolved problem, with robot capabilities lagging far behind those of humans. Here, we present the

Cited by 58SourceScholar