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一种使用模数转换器进行I/Q解调的低功耗单路径生物阻抗测量系统。

A Low-Power Single-Path Bio-Impedance Measurement System Using an Analog-to-Digital Converter for I/Q Demodulation.

作者信息

Rezaee-Dehsorkh Hamidreza, Ravanshad Nassim, Shamsaki Ali, Fakour Maryam Rouhbakhsh, Aliparast Peiman

出版信息

IEEE Trans Biomed Circuits Syst. 2022 Dec;16(6):1129-1137. doi: 10.1109/TBCAS.2022.3213869. Epub 2023 Feb 14.

Abstract

In this paper, a low power single-path bio-impedance (Bio-Z) measurement system for early detection of acute myocardial ischemia is presented. The fully integrated system consists of a current source, an amplifier, and an analog-to-digital converter (ADC). The system utilizes the in-phase and quadrature (I/Q) components to obtain the real and imaginary parts of the tissue impedance. To achieve this goal, the ADC has been used to separate the I/Q components in addition to digitizing the samples. This can lead to power and silicon area reduction. The proposed circuit exploits the benefits of capacitively-coupled instrumentation amplifier, including inherent DC cancellation, low power, low noise, and high linearity and is implemented in 0.18 µm CMOS technology with a 1 V power supply. This system is designed and tested using a pseudo-sine 2 µA current with a frequency of 1 kHz. The system can measure an input impedance that varies over a range from 0.03-7.5 kΩ with a resolution of 0.766 Ω while consuming 2 µW power from the supply. The operation of the system is also shown in the recording of impedance variation with respiration and heartbeat.

摘要

本文提出了一种用于急性心肌缺血早期检测的低功耗单通道生物阻抗(Bio-Z)测量系统。该完全集成系统由一个电流源、一个放大器和一个模数转换器(ADC)组成。该系统利用同相和正交(I/Q)分量来获取组织阻抗的实部和虚部。为实现这一目标,除了对样本进行数字化处理外,ADC还用于分离I/Q分量。这可以降低功耗并减小芯片面积。所提出的电路利用了电容耦合仪表放大器的优点,包括固有的直流抵消、低功耗、低噪声和高线性度,并采用0.18 µm CMOS工艺、1 V电源实现。该系统使用频率为1 kHz的2 µA伪正弦电流进行设计和测试。该系统能够测量范围从0.03 - 7.5 kΩ变化的输入阻抗,分辨率为0.766 Ω,同时从电源消耗2 µW的功率。该系统的运行情况还展示在呼吸和心跳引起的阻抗变化记录中。

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