Zito Domenico, Pepe Domenico, Neri Bruno, Zito Fabio, De Rossi Danilo, Lanatà Antonio
Radio-frequency and Microwave Integrated Circuits Laboratory (RFLab), Department of Information Engineering (DIIEIT), University of Pisa, Via Caruso 16, 56122 Pisa, Italy.
Int J Telemed Appl. 2008;2008:328597. doi: 10.1155/2008/328597.
A new system-on-a-chip radar sensor for next-generation wearable wireless interface applied to the human health care and safeguard is presented. The system overview is provided and the feasibility study of the radar sensor is presented. In detail, the overall system consists of a radar sensor for detecting the heart and breath rates and a low-power IEEE 802.15.4 ZigBee radio interface, which provides a wireless data link with remote data acquisition and control units. In particular, the pulse radar exploits 3.1-10.6 GHz ultra-wideband signals which allow a significant reduction of the transceiver complexity and then of its power consumption. The operating principle of the radar for the cardiopulmonary monitoring is highlighted and the results of the system analysis are reported. Moreover, the results obtained from the building-blocks design, the channel measurement, and the ultra-wideband antenna realization are reported.
本文介绍了一种用于下一代可穿戴无线接口的新型片上系统雷达传感器,该传感器应用于人类医疗保健和安全防护领域。文中给出了系统概述,并对雷达传感器进行了可行性研究。具体而言,整个系统由一个用于检测心率和呼吸率的雷达传感器以及一个低功耗的IEEE 802.15.4 ZigBee无线接口组成,该无线接口提供与远程数据采集和控制单元的无线数据链路。特别是,脉冲雷达利用3.1 - 10.6 GHz超宽带信号,这使得收发器的复杂度显著降低,进而降低了功耗。文中突出了用于心肺监测的雷达的工作原理,并报告了系统分析结果。此外,还报告了从模块设计、信道测量和超宽带天线实现中获得的结果。