Embedded Object Detection and Mapping in Soft Materials Using Optical Tactile Sensing

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Solano-Castellanos, Jose A., Do, Won Kyung, Kennedy III, Monroe
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911819170316288
author Solano-Castellanos, Jose A.
Do, Won Kyung
Kennedy III, Monroe
author_facet Solano-Castellanos, Jose A.
Do, Won Kyung
Kennedy III, Monroe
contents In this paper, we present a methodology that uses an optical tactile sensor for efficient tactile exploration of embedded objects within soft materials. The methodology consists of an exploration phase, where a probabilistic estimate of the location of the embedded objects is built using a Bayesian approach. The exploration phase is then followed by a mapping phase which exploits the probabilistic map to reconstruct the underlying topography of the workspace by sampling in more detail regions where there is expected to be embedded objects. To demonstrate the effectiveness of the method, we tested our approach on an experimental setup that consists of a series of quartz beads located underneath a polyethylene foam that prevents direct observation of the configuration and requires the use of tactile exploration to recover the location of the beads. We show the performance of our methodology using ten different configurations of the beads where the proposed approach is able to approximate the underlying configuration. We benchmark our results against a random sampling policy.
format Preprint
id arxiv_https___arxiv_org_abs_2308_11087
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Embedded Object Detection and Mapping in Soft Materials Using Optical Tactile Sensing
Solano-Castellanos, Jose A.
Do, Won Kyung
Kennedy III, Monroe
Robotics
In this paper, we present a methodology that uses an optical tactile sensor for efficient tactile exploration of embedded objects within soft materials. The methodology consists of an exploration phase, where a probabilistic estimate of the location of the embedded objects is built using a Bayesian approach. The exploration phase is then followed by a mapping phase which exploits the probabilistic map to reconstruct the underlying topography of the workspace by sampling in more detail regions where there is expected to be embedded objects. To demonstrate the effectiveness of the method, we tested our approach on an experimental setup that consists of a series of quartz beads located underneath a polyethylene foam that prevents direct observation of the configuration and requires the use of tactile exploration to recover the location of the beads. We show the performance of our methodology using ten different configurations of the beads where the proposed approach is able to approximate the underlying configuration. We benchmark our results against a random sampling policy.
title Embedded Object Detection and Mapping in Soft Materials Using Optical Tactile Sensing
topic Robotics
url https://arxiv.org/abs/2308.11087