共形矩阵
可控性
解耦(概率)
可穿戴计算机
计算机科学
可穿戴技术
可扩展性
人机交互
人工智能
职位(财务)
机器人学
弹道
信号(编程语言)
虚拟现实
触觉传感器
信号处理
机制(生物学)
机电一体化
机器人
仿生学
可视化
增强现实
织物
个性化
具身认知
多通道交互
计算机视觉
控制工程
概念证明
压力传感器
作者
Yangyang Peng,Fengxin Sun,Jiayi Wen,J Q Huang,Ruru Pan
摘要
ABSTRACT Flexible electronic skins with multimodal sensing capability and high conformability hold great promise for next‐generation human‐machine interfaces, wearable monitoring wearables, and robotic skin. However, conventional layer‐by‐layer integration for multimodal sensing often results in bulky devices and is prone to interfacial delamination. Inspired by the hierarchical information processing of human tactile system, we present an embodied multimodal sensing textile (EMST) enabled by a multiscale textile‐structure design, from composite functional yarns to engineered woven architectures. The EMST achieves integration, decoupling, and tactile mapping of position and pressure signals directly at the textile‐structure level by leveraging on‐body current‐division and resistance‐gradient principles. A geometric model of the touch trajectory is established to elucidate the decoupling mechanism for 2D coordinate sensing. The controllability of the EMST in virtual car motion, as validated by MuJoCo simulations, further demonstrates its potential for assistive interaction with intelligent navigation systems. This work provides a practical and scalable technical strategy for advancing conformable tactile textile interfaces and next‐generation human‐machine interaction.
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