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用于测量位移和速度的具有同步读取功能的3D打印全介质电磁编码器

3D-Printed All-Dielectric Electromagnetic Encoders with Synchronous Reading for Measuring Displacements and Velocities.

作者信息

Herrojo Cristian, Paredes Ferran, Martín Ferran

机构信息

CIMITEC, Department of Electronic Engineering, Universitat Autònoma de Barcelona, 08193 Bellaterra, Barcelona, Spain.

出版信息

Sensors (Basel). 2020 Aug 27;20(17):4837. doi: 10.3390/s20174837.

Abstract

In this paper, 3D-printed electromagnetic (or microwave) encoders with synchronous reading based on permittivity contrast, and devoted to the measurement of displacements and velocities, are reported for the first time. The considered encoders are based on two chains of linearly shaped apertures made on a 3D-printed high-permittivity dielectric material. One such aperture chain contains the identification (ID) code, whereas the other chain provides the clock signal. Synchronous reading is necessary in order to determine the absolute position if the velocity between the encoder and the sensitive part of the reader is not constant. Such absolute position can be determined as long as the whole encoder is encoded with the so-called de Bruijn sequence. For encoder reading, a splitter/combiner structure with each branch loaded with a series gap and a slot resonator (each one tuned to a different frequency) is considered. Such a structure is able to detect the presence of the apertures when the encoder is displaced, at short distance, over the slots. Thus, by injecting two harmonic signals, conveniently tuned, at the input port of the splitter/combiner structure, two amplitude modulated (AM) signals are generated by tag motion at the output port of the sensitive part of the reader. One of the AM envelope functions provides the absolute position, whereas the other one provides the clock signal and the velocity of the encoder. These synchronous 3D-printed all-dielectric encoders based on permittivity contrast are a good alternative to microwave encoders based on metallic inclusions in those applications where low cost as well as major robustness against mechanical wearing and aging effects are the main concerns.

摘要

本文首次报道了基于介电常数对比度的具有同步读取功能的3D打印电磁(或微波)编码器,该编码器专门用于位移和速度测量。所考虑的编码器基于在3D打印的高介电常数介电材料上制作的两条线性形状的孔径链。其中一条这样的孔径链包含识别(ID)码,而另一条链提供时钟信号。如果编码器与读取器敏感部分之间的速度不恒定,则为了确定绝对位置,同步读取是必要的。只要整个编码器用所谓的德布鲁因序列进行编码,就可以确定这样的绝对位置。对于编码器读取,考虑一种分路器/合路器结构,其每个分支都加载有串联间隙和缝隙谐振器(每个都调谐到不同频率)。当编码器在短距离内相对于缝隙移动时,这种结构能够检测到孔径的存在。因此,通过在分路器/合路器结构的输入端口注入两个经过适当调谐的谐波信号,在读取器敏感部分的输出端口由标签运动产生两个调幅(AM)信号。其中一个AM包络函数提供绝对位置,而另一个提供时钟信号和编码器的速度。在那些主要关注低成本以及对机械磨损和老化效应具有更高鲁棒性的应用中,这些基于介电常数对比度的同步3D打印全介质编码器是基于金属内含物的微波编码器的良好替代品。

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