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用于分布式和多点压力感应的柔软、透明的电子皮肤。

Soft, transparent, electronic skin for distributed and multiple pressure sensing.

机构信息

Center for Micro-BioRobotics@SSSA, Istituto Italiano di Tecnologia, Pontedera 56025, PI, Italy.

出版信息

Sensors (Basel). 2013 May 17;13(5):6578-604. doi: 10.3390/s130506578.

Abstract

In this paper we present a new optical, flexible pressure sensor that can be applied as smart skin to a robot or to consumer electronic devices. We describe a mechano-optical transduction principle that can allow the encoding of information related to an externally applied mechanical stimulus, e.g., contact, pressure and shape of contact. The physical embodiment that we present in this work is an electronic skin consisting of eight infrared emitters and eight photo-detectors coupled together and embedded in a planar PDMS waveguide of 5.5 cm diameter. When a contact occurs on the sensing area, the optical signals reaching the peripheral detectors experience a loss because of the Frustrated Total Internal Reflection and deformation of the material. The light signal is converted to electrical signal through an electronic system and a reconstruction algorithm running on a computer reconstructs the pressure map. Pilot experiments are performed to validate the tactile sensing principle by applying external pressures up to 160 kPa. Moreover, the capabilities of the electronic skin to detect contact pressure at multiple subsequent positions, as well as its function on curved surfaces, are validated. A weight sensitivity of 0.193 gr(-1) was recorded, thus making the electronic skin suitable to detect pressures in the order of few grams.

摘要

在本文中,我们提出了一种新的光学、柔性压力传感器,可应用于机器人或消费电子设备的智能皮肤。我们描述了一种机-光转换原理,该原理可以对与外部施加的机械刺激(例如接触、压力和接触形状)相关的信息进行编码。我们在这项工作中提出的物理实现是一种电子皮肤,它由八个红外发射器和八个光电探测器耦合在一起,并嵌入在一个直径为 5.5 厘米的平面 PDMS 波导中。当传感区域发生接触时,由于受挫全内反射和材料变形,到达外围探测器的光学信号会发生损耗。通过电子系统将光信号转换为电信号,计算机上运行的重建算法会重建压力图。通过施加高达 160kPa 的外部压力,进行了试点实验以验证触觉传感原理。此外,还验证了电子皮肤在多个后续位置检测接触压力的能力以及其在曲面上的功能。记录到的重量灵敏度为 0.193gr(-1),因此使电子皮肤适合检测几克量级的压力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aec1/3690071/59c3ddf4f046/sensors-13-06578f1.jpg

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