Modified Digital Correlation Technique for Accurate Phase Measurement in Multi-Frequency Bio-Impedance Analysis

S. S, R. Dhavse, J. Sarvaiya
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引用次数: 0

Abstract

In bio-impedance analysis (BIA), high-frequency low-amplitude alternating current (AC) signals can incur time delays due to the capacitive nature of human cell membranes, and the characteristics of human tissues can be assessed from these delays in terms of phase changes. To accurately measure the phase changes, this work proposes a modified digital correlation-based phase measurement method. The accuracy of the general correlation technique is improved through digital direct synthesis (DDS) and digital correlation of unipolar square input signals. The proposed method is established through memory management and frequency adjustment. The result shows that, compared to the existing methods, the proposed method needs fewer hardware components, has better accuracy of 0.2° and higher frequency compatibility from 5 kHz to 1 MHz, and requires lower cost (140 USD). The method can be applied for the BIA of all types of tissues (recently used in COVID detection and care) and for the applications where efficient phase measurement is required.
多频生物阻抗分析中用于精确相位测量的改进数字相关技术
在生物阻抗分析(BIA)中,由于人体细胞膜的电容性质,高频低振幅交流(AC)信号可能会引起时间延迟,并且可以根据这些延迟来评估人体组织的相位变化特性。为了准确测量相位变化,本文提出了一种改进的基于数字相关的相位测量方法。通过数字直接合成(DDS)和单极方输入信号的数字相关,提高了通用相关技术的精度。所提出的方法是通过内存管理和频率调整来建立的。结果表明,与现有方法相比,所提出的方法需要更少的硬件组件,具有更好的0.2°精度和更高的频率兼容性,从5kHz到1MHz,并且需要更低的成本(140美元)。该方法可应用于所有类型组织的BIA(最近用于COVID检测和护理)以及需要有效相位测量的应用。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
12
审稿时长
18 weeks
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