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利用过采样提高 GMI 传感器应用中模拟锁定放大器的精度设计。

Analog Lock-In Amplifier Design Using Subsampling for Accuracy Enhancement in GMI Sensor Applications.

机构信息

Institute of Smart Cities, Universidad Pública de Navarra (UPNA), Campus Arrosadia, 31006 Pamplona, Spain.

Departamento de Ciencias, Institute for Advanced Materials and Mathematics INAMAT2, Universidad Pública de Navarra (UPNA), Campus Arrosadia, 31006 Pamplona, Spain.

出版信息

Sensors (Basel). 2022 Dec 21;23(1):57. doi: 10.3390/s23010057.

Abstract

A frequency downscaling technique for enhancing the accuracy of analog lock-in amplifier (LIA) architectures in giant magneto-impedance (GMI) sensor applications is presented in this paper. As a proof of concept, the proposed method is applied to two different LIA topologies using, respectively, analog and switching-based multiplication for phase-sensitive detection. Specifically, the operation frequency of both the input and the reference signals of the phase-sensitive detector (PSD) block of the LIA is reduced through a subsampling process using sample-and-hold (SH) circuits. A frequency downscaling from 200 kHz, which is the optimal operating frequency of the employed GMI sensor, to 1 kHz has been performed. In this way, the proposed technique exploits the inherent advantages of analog signal multiplication at low frequencies, while the principle of operation of the PSD remains unaltered. The circuits were assembled using discrete components, and the frequency downscaling proposal was experimentally validated by comparing the measurement accuracy with the equivalent conventional circuits. The experimental results revealed that the error in the signal magnitude measurements was reduced by a factor of 8 in the case of the analog multipliers and by a factor of 21 when a PSD based on switched multipliers was used. The error in-phase detection using a two-phase LIA was also reduced by more than 25%.

摘要

本文提出了一种频率下变频技术,用于提高模拟锁相放大器(LIA)在巨磁阻抗(GMI)传感器应用中的精度。作为概念验证,该方法分别应用于两种不同的 LIA 拓扑结构,分别使用模拟和基于开关的乘法进行相敏检测。具体来说,通过使用采样保持(SH)电路进行子采样过程,降低 LIA 的相敏探测器(PSD)块的输入和参考信号的操作频率。已经从 GMI 传感器的最佳工作频率 200 kHz 降低到 1 kHz。这样,所提出的技术利用了低频下模拟信号乘法的固有优势,同时 PSD 的工作原理保持不变。该电路使用分立元件组装,通过比较测量精度与等效传统电路来验证该频率下变频提案的实验结果。实验结果表明,在使用模拟乘法器的情况下,信号幅度测量的误差减少了 8 倍,而在使用基于开关乘法器的 PSD 的情况下,误差减少了 21 倍。使用两相 LIA 的误差同相检测也减少了 25%以上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0202/9823856/ff7533e5f4e6/sensors-23-00057-g001.jpg

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