arrow
Return

Programmable and Ultrasensitive Haptic Interfaces Enabling Closed-Loop Human-Machine Interactions

delete2023-08-01
delete28
delete
OA
AI
W
Wansheng Lin
C
Chao Wei
S
Shifan Yu
Z
Zihan Chen
Z
Zhang, Cuirong
Z
Ziquan Guo
廖庆亮 (Qingliang Liao)
王书利 cover
王书利 (Shuli Wang)
L
Lin, Maohua
Y
Yuanjin Zheng
X
Xinqin Liao
C
Chen, Zhong *
DOI:10.1002/adfm.202305919delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Intuitive, efficient, and unconstrained interactions require human-machine interfaces (HMIs) to accurately recognize users' manipulation intents. Susceptibility to interference and conditional usage mode of HMIs will lead to poor experiences that limit their great interaction potential. Herein, a programmable and ultrasensitive haptic interface enabling closed-loop human-machine interactions is reported. A cross-scale architecture design strategy is proposed to fabricate the haptic interface, which optimizes the hierarchical contact process. The synergistic optimization of the cross-scale architecture between carbon nanotubes and the multiscale sensing structure realizes a haptic interface with ultrahigh sensitivity and a wide detection range of 15.1 kPa(-1) and 180 kPa, which are improved by more than 900% over the performance of the common interface. The rapid response time of <5 ms and the limit of detection of 8 Pa of the haptic interface far surpass the somatosensory perception of human skin, which enables the haptic interface to accurately recognize interactive intents. A wireless pressure-data interactive glove (wireless PDI glove) is designed and realizes a round-the-clock operation, noise immunity, and efficient interactive control, which perfectly compensate for the flaws of typical vision and voice recognition modes.
Keywords:
carbon nanotubes
closed-loop interactions
cross-scale architectures
haptic interfaces
sensitive composite materials

Journal

Advanced Functional Materials cover
Advanced Functional Materials
IF:
19
Papers:
3.4W
Citations:
32.1W

Organization

State University System of Florida cover
State University System of Florida
Scholars:
12.7W
Papers: 10.9W
Citations: 130
F
Florida Atlantic University
Scholars:
3.1K
Papers: 2.5K
Citations: 4.8K
X
xiamen university
Scholars:
5.8W
Papers: 3.8W
Citations: 67
researcher View more organizations