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Massachusetts Institute of Technology

Embroidered Multi-Modal Sensing Arrays for Tactual Perception

Abstract

dc:description.abstract

Humans possess a peripheral nervous system that gives them the ability to sense and interpret tactile information, normal and shear force, and vibrations. This provides us with the ability to perceive changes in our surroundings and react to them, allowing us to complete complex tasks. Bestowing these sensory modalities to robotic systems would enable them to complete complex manipulation and assembly tasks that are trivial for humans. In this work, we present new types of robotic skins that give robots the ability to sense normal force, shear force, and vibration. Fabricated with a highly-automated manufacturing process, our sensing systems can be inexpensively manufactured. Furthermore, we can capture forces over a high range by employing multi-gain capturing techniques. We demonstrate our sensing systems capabilities by designing and fabricating a set of devices and utilizing them for human wearables and robotics applications.

Degree

thesis:*
Name thesis:degree_name
Master
Department dc:contributor.department
Massachusetts Institute of Technology. Department of Mechanical Engineering
Grantor dc:publisher
Massachusetts Institute of Technology
Year dc:date.issued
2023

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Foshey, Michael
Advisor dc:contributor.advisor
  • Matusik, Wojciech

Rights

dc:rights
Statement dc:rights
  • In Copyright - Educational Use Permitted
  • Copyright MIT

Identifiers

dc:identifier.*
Handle dc:identifier.uri
https://hdl.handle.net/1721.1/150103
OAI identifier oai:identifier
oai:dspace.mit.edu:1721.1/150103

Chain of custody

source
Harvested from
MIT
Base URL
dspace.mit.edu/oai/request
Last updated
2026-07-22
Source record
OAI-PMH GetRecord
related terms
citation

Foshey, Michael. Embroidered Multi-Modal Sensing Arrays for Tactual Perception. Massachusetts Institute of Technology, 2023. https://hdl.handle.net/1721.1/150103