...
首页> 外文期刊>International Journal of Advanced Robotic Systems >A low-cost, human-like, high-resolution, tactile sensor based on optical fibers and an image sensor
【24h】

A low-cost, human-like, high-resolution, tactile sensor based on optical fibers and an image sensor

机译:一种基于光纤的低成本,类人,高分辨率,触觉传感器和图像传感器

获取原文
           

摘要

Tactile sensors are commonly a coordinated group of receptors forming a matrix array meant to measure force or pressure similar to the human skin. Optic-based tactile sensors are flexible, sensitive, and fast; however, the human fingertipa??s spatial resolution, which can be regarded as the desired spatial resolution, still could not be reached because of their bulky nature. This article proposes a novel and patented optic-based tactile sensor design, in which fiber optic cables are used to increase the number of sensory receptors per square centimeter. The proposed human-like high-resolution tactile sensor design is based on simple optics and image processing techniques, and it enables high spatial resolution and easy data acquisition at low cost. This design proposes using the change in the intesity of the light occured due to the deformation on contact/measurement surface. The main idea is using fiber optic cables as the afferents of the human physiology which can have 9 ?μm diameters for both delivering and receiving light beams. The variation of the light intensity enters sequent mathematical models as the input, then, the displacement, the force, and the pressure data are evaluated as the outputs. A prototype tactile sensor is manufactured with 1-mm spatial and 0.61-kPa pressure measurement resolution with 0a??15.6 N/cm2 at 30 Hz sampling frequency. Experimental studies with different scenarios are conducted to demonstrate how this state-of-the-art design worked and to evaluate its performance. The overall accuracy of the first prototype, based on different scenarios, is calculated as 93%. This performance is regarded as promising for further developments and applications such as grasp control or haptics.
机译:触觉传感器通常是形成矩阵阵列的受体的协调组,旨在测量类似于人类皮肤的力或压力。基于光学的触觉传感器具有灵活性,灵敏性和快速性。然而,由于其庞大的性质,仍不能达到人类指尖的空间分辨率,可以认为是所需的空间分辨率。本文提出了一种新颖且获得专利的基于光学的触觉传感器设计,其中使用光纤电缆来增加每平方厘米的感觉接收器数量。所提出的类似于人的高分辨率触觉传感器设计基于简单的光学和图像处理技术,并且能够以低成本实现高空间分辨率和容易的数据采集。该设计提出使用由于接触/测量表面上的变形而发生的光的强度变化。主要思想是使用光缆作为人类生理学的传入,其直径可以达到9 µm,以用于传输和接收光束。光强度的变化进入后续的数学模型作为输入,然后将位移,力和压力数据评估为输出。制造的触觉传感器原型在30 Hz采样频率下具有1-mm的空间和0.61-kPa的压力测量分辨率,0a ?? 15.6 N / cm2。进行了不同场景的实验研究,以证明这种最先进的设计如何工作并评估其性能。根据不同的情况,第一个原型的总体准确度计算为93%。这种性能被认为对于诸如抓握控制或触觉的进一步开发和应用是有希望的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号