Han Bing, Xu Yanbin, Dong Feng
Tianjin Key Laboratory of Process Measurement and Control, School of Electrical and Information Engineering, Tianjin University, Tianjin, People's Republic of China.
Rev Sci Instrum. 2017 Sep;88(9):094709. doi: 10.1063/1.5004185.
Multi-frequency electrical impedance tomography has been evolving from the frequency-sweep approach to the multi-frequency simultaneous measurement technique which can reduce measuring time and will be increasingly attractive for time-varying biological applications. The accuracy and stability of the current source are the key factors determining the quality of the image reconstruction. This article presents a field programmable gate array-based current source for a multi-frequency simultaneous electrical impedance tomography system. A novel current source circuit was realized by combining the classic current mirror based on the feedback amplifier AD844 with a differential topology. The optimal phase offsets of harmonic sinusoids were obtained through the crest factor analysis. The output characteristics of this current source were evaluated by simulation and actual measurement. The results include the following: (1) the output impedance was compared with one of the Howland pump circuit in simulation, showing comparable performance at low frequencies. However, the proposed current source makes lower demands for resistor tolerance but performs even better at high frequencies. (2) The output impedance in actual measurement below 200 kHz is above 1.3 MΩ and can reach 250 KΩ up to 1 MHz. (3) An experiment based on a biological RC model has been implemented. The mean error for the demodulated impedance amplitude and phase are 0.192% and 0.139°, respectively. Therefore, the proposed current source is wideband, biocompatible, and high precision, which demonstrates great potential to work as a sub-system in the multi-frequency electrical impedance tomography system.
多频电阻抗断层成像技术已从扫频方法发展到多频同步测量技术,该技术可减少测量时间,对于时变生物应用将越来越有吸引力。电流源的精度和稳定性是决定图像重建质量的关键因素。本文提出了一种基于现场可编程门阵列的多频同步电阻抗断层成像系统电流源。通过将基于反馈放大器AD844的经典电流镜与差分拓扑结构相结合,实现了一种新型电流源电路。通过波峰因数分析获得了谐波正弦波的最佳相位偏移。通过仿真和实际测量对该电流源的输出特性进行了评估。结果如下:(1)在仿真中,将输出阻抗与霍兰德泵电路之一进行了比较,在低频时表现出相当的性能。然而,所提出的电流源对电阻容差的要求较低,但在高频时性能更好。(2)实际测量中,低于200 kHz时输出阻抗高于1.3 MΩ,高达1 MHz时可达到250 KΩ。(3)基于生物RC模型进行了实验。解调后的阻抗幅度和相位的平均误差分别为0.192%和0.139°。因此,所提出的电流源具有宽带、生物相容性好和高精度的特点,在多频电阻抗断层成像系统中作为子系统具有很大的潜力。