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Comparative Study of Radar Architectures for Human Vital Signs Measurement

机译:雷达架构对人生命体征测量的比较研究

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Radars can be used as a non-invasive solution to monitor the vital signs of patients. The heart and respiratory rates are generally extracted by analyzing the phase variations of the radar signal, thus motivating the use of millimeter-waves. This, however, comes at the cost of a higher attenuation with the distance of travel, which in turn lowers the signal to noise ratio. While the state-of-the-art considers various architectures of millimeter-wave (mmW) radar for vital signs extraction, they are seldom compared in terms of hardware complexity and power consumption even though these aspects are of utmost importance for autonomous applications. This paper presents a comparative analysis of the state-of-the-art short-range radar solutions and takes into account their respective hardware complexity needed to improve the signal to noise ratio. It aims to select the most relevant low-power architecture for an autonomous application. Analytical models for power estimations are presented and compared with simulation results. Finally, in light of these performances the architectures complexities over their respective hardware limitations are discussed.
机译:雷达可用作非侵入性解决方案以监测患者的生命症状。通过分析雷达信号的相位变型,通常提取心脏和呼吸速率,从而激励使用毫米波。然而,这与旅行距离的距离更高的衰减成本,又将信号降低到噪声比。虽然最先进的毫米波(MMW)雷达的各种架构用于生命体征提取,但在硬件复杂性和功耗方面,它们很少比较,即使这些方面对于自主应用至关重要。本文介绍了最先进的短程雷达解决方案的比较分析,并考虑了改善信号噪声比所需的各自硬件复杂性。它旨在为自主应用选择最相关的低功耗架构。呈现和对仿真结果进行了功率估计的分析模型。最后,鉴于这些表演,讨论了架构在各自的硬件限制上的复杂性。

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