単一素材の電子スキンでロボットに人間の触覚(Single-material electronic skin gives robots the human touch)

ad

2025-06-11 ケンブリッジ大学

単一素材の電子スキンでロボットに人間の触覚(Single-material electronic skin gives robots the human touch)

ケンブリッジ大学とUCLの研究者は、単一素材で多様な触覚刺激(圧力・温度・切創など)を感知できる新しい電子スキンを開発しました。伝導性ハイドロゲルを用い、32電極と約86万の経路を通じて触覚情報を取得。機械学習を活用し、異なる接触に応じた信号経路を識別します。高感度・低コスト・耐久性に優れ、製造が容易で義手や災害救助ロボなど多分野への応用が期待されます。

<関連情報>

単層ソフトスキンと高密度電気インピーダンストモグラフィによるマルチモーダル情報構造化 Multimodal information structuring with single-layer soft skins and high-density electrical impedance tomography

David Hardman, Thomas George Thuruthel, and Fumiya Iida
Science Robotics  Published:11 Jun 2025
DOI:https://doi.org/10.1126/scirobotics.adq2303

Abstract

The human skin can reliably capture a wide range of multimodal data over a large surface while providing a soft interface. Artificial technologies using microelectromechanical systems (MEMS) can emulate these biological functions but present numerous challenges in fabrication, delamination due to soft-rigid interfaces, and electrical interference. To address these difficulties, we present a single-layer multimodal sensory skin made using only a highly sensitive hydrogel membrane. Using electrical impedance tomography techniques, we accessed up to 863,040 conductive pathways across the membrane, allowing us to identify at least six distinct types of multimodal stimuli, including human touch, damage, multipoint insulated presses, and local heating. Through comprehensive physical testing, we demonstrate that the highly redundant and coupled sensory information from these pathways can be structured using data-driven techniques, selecting which pathways should be monitored for efficient multimodal perception. To demonstrate our approach’s versatility, we cast the hydrogel into the shape and size of an adult human hand. Using our information structuring strategy, we demonstrate the hand’s ability to predict environmental conditions, localize human touch, and generate proprioceptive data. Our framework addresses the challenge of physically extracting meaningful information in multimodal soft sensing, opening new directions for the information-led design of single-layer skins in sensitive systems.

0109ロボット
ad
ad
Follow
ad
タイトルとURLをコピーしました