Development of a palpation sensor by using multi-signal processing: fundamental characteristics of the prototype sensor system

H. Nagai, Takeshi Okuyama, Mami Tanaka
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引用次数: 3

Abstract

The human finger tip is the most useful tactile sensor part for distinguishing textures. It is possible for fingers to recognize not only surface textures of objects but also the information inside object. "Palpation" in the medical field is an example of techniques utilizing the ability. This study aims to develop a palpation sensor that can obtain both surface and inside information of objects. The palpation sensor that several bimorphic piezoelectric elements are used as sensory receptors is proposed. The output from each element with the position and the velocity information is acquired. Using the position information, it is possible to remove the noise by adjusting time phase of the signals from each bimorphic piezoelectric element. Furthermore, we aim to obtain the information of the sample surface and inside objects by applying additional signal processing to sensor outputs. In this paper, the fundamental characteristics of the prototype sensor system were investigated. First, the signal processing to convert the time history information from the sensor into the positional information was investigated in order to eliminate the influence of mobile speed. Next, the contact condition between sample surface and tip of bimorph piezoelectric element was tested. Finally, electrical cross-talk among bimorphic piezoelectric elements was examined.
基于多信号处理的触诊传感器的研制:原型传感器系统的基本特性
人的指尖是触觉传感器中最有用的识别纹理的部位。手指不仅可以识别物体的表面纹理,还可以识别物体内部的信息。医学领域的“触诊”就是利用这种能力的技术的一个例子。本课题旨在研制一种既能获取物体表面信息又能获取物体内部信息的触诊传感器。提出了一种用双晶压电元件作为感觉受体的触诊传感器。从每个元素的输出中获取位置和速度信息。利用位置信息,可以通过调整来自各双晶压电元件的信号的时间相位来去除噪声。此外,我们的目标是通过对传感器输出进行额外的信号处理来获得样品表面和内部物体的信息。本文对原型传感器系统的基本特性进行了研究。首先,研究了将传感器时间历史信息转换为位置信息的信号处理,以消除移动速度的影响;然后,测试了样品表面与双晶片压电元件尖端的接触情况。最后,对双晶压电元件间的电串扰进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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