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Software-Defined Doppler Radar Sensor for Human Breathing Detection

机译:用于呼吸检测的软件定义的多普勒雷达传感器

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摘要

Non-contact wireless sensing approaches have emerged in recent years, in order to enable novel enhanced developments in the framework of healthcare and biomedical scenarios. One of these technologically advanced solutions is given by software-defined radar platforms, a low-cost radar implementation, where all operations are implemented and easily changed via software. In the present paper, a software-defined radar implementation with Doppler elaboration features is presented, to be applied for the non-contact monitoring of human respiration signals. A quadrature receiver I/Q (In-phase/Quadrature) architecture is adopted in order to overcome the critical issues related to the occurrences of null detection points, while the phase-locked loop components included in the software defined radio transceiver are successfully exploited to guarantee the phase correlation between I/Q signal components. The proposed approach leads to a compact, low-cost, and flexible radar solution, whose application abilities may be simply changed via software, with no need for hardware modifications. Experimental results on a human target are discussed so as to demonstrate the feasibility of the proposed approach for vital signs detection.
机译:近年来出现了非接触式无线感测方法,以便在医疗保健和生物医学场景的框架内实现新颖的增强发展。这些技术先进的解决方案之一是由软件定义的雷达平台提供的,这是一种低成本的雷达实施方案,其中所有操作都可以通过软件实施并轻松更改。在本文中,提出了一种具有多普勒精细化功能的软件定义的雷达实现方案,将其应用于人类呼吸信号的非接触式监测。为了克服与零检测点的出现有关的关键问题,采用了正交接收器I / Q(同相/正交)架构,同时成功地利用了软件定义的无线电收发器中包括的锁相环组件来确保I / Q信号分量之间的相位相关。所提出的方法导致了紧凑,低成本和灵活的雷达解决方案,其应用能力可以通过软件简单地改变,而无需修改硬件。讨论了在人类目标上的实验结果,以证明所提出方法用于生命体征检测的可行性。

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