首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Resonator Based Switching Technique between Ultra Wide Band (UWB) and Single/Dual Continuously Tunable-Notch Behaviors in UWB Radar for Wireless Vital Signs Monitoring
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Resonator Based Switching Technique between Ultra Wide Band (UWB) and Single/Dual Continuously Tunable-Notch Behaviors in UWB Radar for Wireless Vital Signs Monitoring

机译:用于无线生命体征监测的超宽带(UWB)和UWB雷达中单/双连续可调陷波行为之间基于谐振器的切换技术

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摘要

This paper presents a novel resonator that can switch and create three important behaviors within the same antenna using miniaturized capacitors. The resonator was integrated into conventional Ultra-Wide Band (UWB) antenna to achieve UWB and Single/Dual continuously tunable-notch behaviors. The Single/Dual notched was continuously tuned to our desired frequency band by changing the value of the capacitors. The antenna designed and fabricated to validate these behaviors had a compact size of 24 × 30.5 mm2, including the ground plane. The radiation patterns were very clean due to the placement of the proposed resonator in the special ground plane. Moreover, the presented novel resonator and switching technique was compared with the recently proposed resonators and their switching techniques. The prototype for the antenna was also developed in order to validate its performance in wireless vital signs monitoring. The presented miniaturized resonator based antenna was utilized for tumor sensing and simulations were provided in this regard. Moreover, the deployment of the proposed resonator based UWB antenna sensor in Pipeline Integrity Monitoring system was also investigated and discussed.
机译:本文提出了一种新型谐振器,该谐振器可以使用小型电容器在同一天线内切换并产生三个重要行为。该谐振器被集成到传统的超宽带(UWB)天线中,以实现UWB和单/双连续可调陷波特性。通过更改电容器的值,将单/双槽口连续调谐到我们所需的频带。为验证这些性能而设计和制造的天线(包括接地平面)的紧凑尺寸为24×30.5 mm 2 。由于建议的谐振器放置在特殊的接地平面中,辐射图非常干净。此外,将提出的新颖的谐振器和开关技术与最近提出的谐振器及其开关技术进行了比较。还开发了天线原型,以验证其在无线生命体征监测中的性能。提出的基于微型谐振器的天线被用于肿瘤感测,并且在这方面提供了仿真。此外,还研究和讨论了所提出的基于谐振器的UWB天线传感器在管道完整性监测系统中的部署。

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