Spatio-temporal encoding improves neuromorphic tactile texture classification

10/27/2020
by   Anupam K. Gupta, et al.
0

With the increase in interest in deployment of robots in unstructured environments to work alongside humans, the development of human-like sense of touch for robots becomes important. In this work, we implement a multi-channel neuromorphic tactile system that encodes contact events as discrete spike events that mimic the behavior of slow adapting mechanoreceptors. We study the impact of information pooling across artificial mechanoreceptors on classification performance of spatially non-uniform naturalistic textures. We encoded the spatio-temporal activation patterns of mechanoreceptors through gray-level co-occurrence matrix computed from time-varying mean spiking rate-based tactile response volume. We found that this approach greatly improved texture classification in comparison to use of individual mechanoreceptor response alone. In addition, the performance was also more robust to changes in sliding velocity. The importance of exploiting precise spatial and temporal correlations between sensory channels is evident from the fact that on either removal of precise temporal information or altering of spatial structure of response pattern, a significant performance drop was observed. This study thus demonstrates the superiority of population coding approaches that can exploit the precise spatio-temporal information encoded in activation patterns of mechanoreceptor populations. It, therefore, makes an advance in the direction of development of bio-inspired tactile systems required for realistic touch applications in robotics and prostheses.

READ FULL TEXT

page 1

page 3

page 4

page 5

research
04/05/2022

Artificial SA-I, RA-I and RA-II/Vibrotactile Afferents for Tactile Sensing of Texture

Robot touch can benefit from how humans perceive tactile textural inform...
research
09/12/2019

Neural Population Coding for Effective Temporal Classification

Neural encoding plays an important role in faithfully describing the tem...
research
08/10/2020

Spatio-temporal Attention Model for Tactile Texture Recognition

Recently, tactile sensing has attracted great interest in robotics, espe...
research
03/01/2020

NeuroTac: A Neuromorphic Optical Tactile Sensor applied to Texture Recognition

Developing artificial tactile sensing capabilities that rival human touc...
research
05/30/2022

Braille Letter Reading: A Benchmark for Spatio-Temporal Pattern Recognition on Neuromorphic Hardware

Spatio-temporal pattern recognition is a fundamental ability of the brai...
research
03/14/2022

GradTac: Spatio-Temporal Gradient Based Tactile Sensing

Tactile sensing for robotics is achieved through a variety of mechanisms...

Please sign up or login with your details

Forgot password? Click here to reset