Dielectric resonator antenna integrated sensors for characterization of concrete

S. Sabrin, S. Kharkovsky, Robert Salama
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引用次数: 4

Abstract

This paper presents a two-antenna setup based on dielectric resonator antenna (DRA) and used as a sensing system for characterization of construction materials such as concrete. In this two-antenna setup, a DRA that acts as a receiving sensor-integrated antenna is embedded inside concrete and another external DRA (placed in free space) transmits wireless power to the embedded antenna. Both antennas are fed by X-band (8.2–12.4 GHz) open ended waveguide antennas (OEWAs). Transmission coefficients, reflection coefficients and electric-field distributions of these setups are investigated in the frequency range from 8 to 15 GHz. These investigations are performed with relatively long and short DRAs, and with OEWAs (without DRAs). In addition, sensitivity of the two-antenna sensing system to changes in values of the dielectric constants and loss tangent of concrete with the three antennas are analyzed. It is shown that the two-antenna sensing system with the long DRA and OEWA are more sensitive to the changes of both the loss tangent and dielectric constant of concrete than with the short DRA. However, the short DRA had a better performance with a magnitude of transmission coefficient that is significantly higher than those of the long DRA and the OEWA.
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混凝土表征用介电谐振器天线集成传感器
本文提出了一种基于介质谐振器天线(DRA)的双天线装置,并将其用作表征混凝土等建筑材料的传感系统。在这种双天线设置中,一个DRA作为接收传感器集成天线嵌入混凝土中,另一个外部DRA(放置在自由空间中)向嵌入的天线传输无线电力。两个天线都由x波段(8.2-12.4 GHz)开放式波导天线(OEWAs)馈电。研究了这些装置在8 ~ 15 GHz频率范围内的透射系数、反射系数和电场分布。这些调查是在相对较长和较短的DRAs以及OEWAs(没有DRAs)下进行的。此外,还分析了双天线传感系统对混凝土介质常数和损耗正切值变化的灵敏度。结果表明,与较短的双天线传感系统相比,长DRA和OEWA的双天线传感系统对混凝土的损耗正切和介电常数的变化更为敏感。而短DRA的传输系数明显高于长DRA和OEWA的传输系数。
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