Signal evaluation and measurement techniques in a single cell hybrid tactile sensor for large object manipulation

A. Brandolini, A. Gandelli
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引用次数: 6

Abstract

It is noted that tactile sensors based on piezoelectric active surfaces require complex and advanced analog and digital signal processing circuitry in order to provide the best evaluation of the information resulting from the mechanical action of the manipulated object. Following a complete analysis of the hybrid structure and functionality of two previous realizations, the authors have recognized the feasibility of designing and building a new type of analog processing stage to enhance the sensor performance. The sensing area is realized using PVF/sub 2/ piezoelectric film deposited on three facets of a truncated tetrahedron in which the mobile element is allocated. The hybrid microelectronics for the analog and digital signal processing is built near the active surface in order to reduce noise and interference created by the industrial environment in which the device is designed to work. The design of the charge amplifiers and A/D (analog-to-digital) conversion block is optimized to provide a high-precision, three-dimensional analysis of force actions. The accuracy of measurement procedures requires the development of particular circuit topologies providing a sufficient number of signals related to mechanical effects. In order to achieve this result, a differential charge amplifier circuit has been developed. A deep analysis of functionality and dynamic response of the system under normal and limit conditions has been provided.<>
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用于大型物体操作的单细胞混合触觉传感器信号评估与测量技术
需要指出的是,基于压电主动表面的触觉传感器需要复杂和先进的模拟和数字信号处理电路,以便提供由被操纵物体的机械作用产生的信息的最佳评估。在对前两种实现的混合结构和功能进行全面分析后,作者认识到设计和构建新型模拟处理平台以提高传感器性能的可行性。传感区域采用PVF/sub - 2/压电薄膜沉积在截断四面体的三个面来实现。用于模拟和数字信号处理的混合微电子器件建在活动表面附近,以减少由设备设计工作的工业环境产生的噪声和干扰。电荷放大器和A/D(模数)转换模块的设计经过优化,可提供高精度的力作用三维分析。测量程序的准确性要求开发特定的电路拓扑结构,以提供与机械效应相关的足够数量的信号。为了达到这个效果,我们开发了一种差分电荷放大电路。对系统在正常和极限条件下的功能和动态响应进行了深入分析。
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