用于心脏监测的低成本单片超宽带脉冲雷达的可行性研究

D. Zito, D. Pepe, B. Neri, D. De Rossi
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引用次数: 18

摘要

2002年2月,美国联邦通信委员会批准了一种新型射频设备的销售:超宽带(UWB)系统。超宽带系统最有趣的应用之一是与医学成像有关。本文研究了一种基于标准硅技术的新型全集成3.1-10.6 GHz超宽带雷达用于心壁监测的可行性。导出了雷达工作的信道(人体胸部)中电磁辐射损耗的理论频率依赖模型。每个构建模块的初步规范都是在所述场景的条件下通过基本理论推导出来的。利用安捷伦ADS2005ATM中的托勒密模拟器进行了系统仿真,以进行初步的理论研究。CAD分析表明,基于相关器的雷达拓扑结构使我们能够在现代硅技术(如标准CMOS 90 nm)中实现这种片上系统脉冲雷达。
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Feasibility study of a low-cost system-on-a-chip UWB pulse radar on silicon for the heart monitoring
In February 2002 the FCC authorized the marketing of a new class of radiofrequency devices: the ultra-wide-band (UWB) systems. One of the most interesting applications for which the UWB systems are addressed is related to the medical imaging. This paper addresses the feasibility study of a novel fully integrated 3.1-10.6 GHz UWB radar on a standard silicon technology for the heart wall monitoring. A theoretical frequency-dependent model of the losses of the electromagnetic radiation in the channel (the human chest) in which the radar operates has been derived. The preliminary specifications of each building blocks have been derived by basic theory in the conditions of the addressed scenario. System simulations have been carried out by means of the Ptolemy simulator within Agilent ADS2005ATM in order to claim the preliminary theoretical study. The CAD analyses have shown that the correlator-based radar topology allows us to approach the realization of such a system-on-a-chip pulse radar in a modern silicon technology (as such as the standard CMOS 90 nm).
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