4.8 Article

Embodied neuromorphic intelligence

Journal

NATURE COMMUNICATIONS
Volume 13, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41467-022-28487-2

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Funding

  1. European Research Council (ERC) under the European Union's Horizon 2020 research and innovation programme [724295]
  2. EU MSCA ITN project NeuTouch Understanding neural coding of touch as enabling technology for prosthetics and robotics [813713]

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This Perspective discusses the potential, challenges and future direction of research aimed at demonstrating embodied intelligent robotics via neuromorphic technology. Neuromorphic engineering studies neural computational principles to develop compact and low-power processing systems. Endowing robots with neuromorphic technologies represents a promising approach for creating robots that can seamlessly integrate in society.
A grand challenge in robotics is realising intelligent agents capable of autonomous interaction with the environment. In this Perspective, the authors discuss the potential, challenges and future direction of research aimed at demonstrating embodied intelligent robotics via neuromorphic technology. The design of robots that interact autonomously with the environment and exhibit complex behaviours is an open challenge that can benefit from understanding what makes living beings fit to act in the world. Neuromorphic engineering studies neural computational principles to develop technologies that can provide a computing substrate for building compact and low-power processing systems. We discuss why endowing robots with neuromorphic technologies - from perception to motor control - represents a promising approach for the creation of robots which can seamlessly integrate in society. We present initial attempts in this direction, highlight open challenges, and propose actions required to overcome current limitations.

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