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December 16, 2020Science Robotics474 citations

Skin-inspired quadruple tactile sensors integrated on a robot hand enable object recognition

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GLGuozhen LiSLShiqiang LiuLWLiangqi Wang

Key Points

  • This research aims to develop a robot hand with advanced tactile sensing for improved object identification.
  • Integrated quadruple tactile sensors with multilayer microstructure on a robot hand.
  • Sensors measure thermal conductivity, contact pressure, and temperatures simultaneously.
  • Utilized machine learning to analyze tactile information for object shape, size, and material recognition.
  • Achieved a classification accuracy of 94% in recognizing seven types of garbage.
  • Demonstrated enhanced object identification capabilities over traditional methods.

Abstract

Robot hands with tactile perception can improve the safety of object manipulation and also improve the accuracy of object identification. Here, we report the integration of quadruple tactile sensors onto a robot hand to enable precise object recognition through grasping. Our quadruple tactile sensor consists of a skin-inspired multilayer microstructure. It works as thermoreceptor with the ability to perceive thermal conductivity of a material, measure contact pressure, as well as sense object temperature and environment temperature simultaneously and independently. By combining tactile sensing information and machine learning, our smart hand has the capability to precisely recognize different shapes, sizes, and materials in a diverse set of objects. We further apply our smart hand to the task of garbage sorting and demonstrate a classification accuracy of 94% in recognizing seven types of garbage.

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Cite This Study

Li et al. (2020) studied this question.

synapsesocial.com/papers/69df572935659245ec614da3https://doi.org/10.1126/scirobotics.abc8134
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