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最小化用于监测膀胱压力的无线无源LC振荡回路传感器:一项仿真研究。

Minimizing a Wireless Passive LC-Tank Sensor to Monitor Bladder Pressure: A Simulation Study.

作者信息

Melgaard Jacob, Struijk Johannes J, Rijkhoff Nico J M

机构信息

Department of Health Science and Technology, The Faculty of Medicine, Aalborg University, Fredrik Bajers Vej 7, 9220 Aalborg Ø, Denmark.

出版信息

J Med Biol Eng. 2017;37(6):800-809. doi: 10.1007/s40846-017-0244-2. Epub 2017 Jun 16.

Abstract

In this simulation study, a wireless passive LC-tank sensor system was characterized. Given the application of continuous bladder monitoring, a specific system was proposed in terms of coil geometries and electronic circuitry. Coupling coefficients were spatially mapped by simulation, as a function of both coil distance, and longitudinal and transverse translation of the sensor relative to the antenna. Further, two interrogation schemes were outlined. One was an auto-balancing bridge for computing the sensor-system impedance. In this case, the theoretical noise limit of the analogue part of the system was found by simulations. As the full system is not necessary for obtaining a pressure reading from the sensor, a simplified circuit more suited for an implantable system was deduced. For this system, both the analogue and digital parts were simulated. First, the required ADC resolution for operating the system at a given coupling was found by simulations in the noise-free case. Then, for one selected typical operational point, noise was added gradually, and through Monte-Carlo type simulations, the system performance was obtained. Combining these results, it was found that it at least is possible to operate the proposed system for distances up to 12 mm, or equivalently for coupling coefficients above 0.005. In this case a 14 bit ADC is required, and a carrier SNR of 27 dB can be tolerated.

摘要

在这项仿真研究中,对一种无线无源LC振荡回路传感器系统进行了特性分析。考虑到连续膀胱监测的应用,根据线圈几何形状和电子电路提出了一种特定系统。通过仿真对耦合系数进行了空间映射,它是线圈距离以及传感器相对于天线的纵向和横向平移的函数。此外,概述了两种询问方案。一种是用于计算传感器系统阻抗的自动平衡电桥。在这种情况下,通过仿真确定了系统模拟部分的理论噪声极限。由于从传感器获取压力读数并不需要整个系统,因此推导了一种更适合植入式系统的简化电路。对该系统的模拟和数字部分都进行了仿真。首先,在无噪声情况下通过仿真确定了在给定耦合下操作系统所需的ADC分辨率。然后,对于一个选定的典型工作点,逐渐添加噪声,并通过蒙特卡洛类型的仿真获得系统性能。综合这些结果发现,至少在所提出的系统在距离达12毫米或等效耦合系数高于0.005的情况下能够运行。在这种情况下,需要一个14位ADC,并且可以容忍27dB的载波信噪比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37ea/5840221/131ca8ef2879/40846_2017_244_Fig1_HTML.jpg

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