信号(编程语言)
导电体
压力传感器
电气工程
声学
触觉传感器
接近传感器
电压
电容器
信号调节
功率(物理)
材料科学
工程类
计算机科学
机械工程
机器人
人工智能
物理
程序设计语言
量子力学
作者
Kazuki Tonomura,Annie Yu,Yuya Ishii
标识
DOI:10.1088/1361-665x/acb471
摘要
Abstract Attention toward automated driving has recently increased. This has also increased the need to monitor drivers’ actions, such as finger touch/pressure sensing on the steering wheel. This study demonstrates an active signal-generating spacer-fabric-type continuous touch/pressure sensor comprising five yarn layers: surface-insulating cotton, upper conductive, monofilament spacer, lower conductive and bottom-insulating cotton yarn. The sensor actively generates signals, and the magnitude of the voltage output through a diode bridge and capacitor circuit determines if the fingers are ‘not touching’, ‘touching’, ‘pushing’ or ‘pushing hard’. This demonstrates that the proposed sensor can be operated as an active signal-generating touch/pressure sensor and can also detect ‘pushing hard’ actions. Furthermore, the active signal-generating operation originates from the electromagnetic waves emitted by electrical appliances and cables powered by a commercial power supply frequency in the environment. The proposed sensor will contribute to developing high-cushioning touch/pressure sensors with low power consumption and excellent air permeability that can be used in electric and autonomous vehicles.
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