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Ioannis Kymissis

6 accepted papers

2026

SpikeATac: A Multimodal Tactile Finger with Taxelized Dynamic Sensing for Dexterous Manipulation

ICRA 2026poster

In this work, we introduce SpikeATac, a multimodal tactile finger combining a taxelized and highly sensitive dynamic response (PVDF) with a static transduction method (capacitive) for multimodal touch sensing. Named for its `spiky' response, SpikeATac's 16-taxel PVDF film sampled at 4 kHz provides f…

2025

Compact LED-Based Displacement Sensing for Robot Fingers

IROS 2025

In this paper, we introduce a sensor designed for robotic fingers which can provide information on the displacements induced by external forces. Our sensor uses LEDs to sense the displacement between two plates connected by a transparent elastomer; when a force is applied to the finger, the elastome

Cited by 3SourceScholar
2025

VibeCheck: Using Active Acoustic Tactile Sensing for Contact-Rich Manipulation

IROS 2025

The acoustic response of an object can reveal a lot about its global state, for example its material properties or the extrinsic contacts it is making with the world. In this work, we build an active acoustic sensing gripper equipped with two piezoelectric fingers: one for generating signals, the ot

Cited by 8SourcecodeScholar
2024

An Investigation of Multi-feature Extraction and Super-resolution with Fast Microphone Arrays

ICRA 2024poster

In this work, we use MEMS microphones as vibration sensors to simultaneously classify texture and estimate contact position and velocity. Vibration sensors are an important facet of both human and robotic tactile sensing, providing fast detection of contact and onset of slip. Microphones are an attr…

Cited by 4SourceScholar
2017

Accurate contact localization and indentation depth prediction with an optics-based tactile sensor

ICRA 2017poster

Traditional methods to achieve high localization accuracy with tactile sensors usually use a matrix of miniaturized individual sensors distributed on the area of interest. This approach usually comes at a price of increased complexity in fabrication and circuitry, and can be hard to adapt for non pl…

Cited by 20SourceScholar
2016

Contact localization through spatially overlapping piezoresistive signals

IROS 2016poster

Achieving high spatial resolution in contact sensing for robotic manipulation often comes at the price of increased complexity in fabrication and integration. One traditional approach is to fabricate a large number of taxels, each delivering an individual, isolated response to a stimulus. In contras…

Cited by 12SourceScholar