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Antipodal Vivaldi antenna with improved radiation characteristics for civil engineering applications

机译:具有改进的辐射特性的对立Vivaldi天线,适用于土木工程应用

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摘要

An ultra-wideband elliptically tapered antipodal Vivaldi antenna designed for civil engineering applications is presented. It is based on design of a conventional antipodal Vivaldi antenna (CAVA) which impedance bandwidth is limited at low end of frequency band. To extend impedance bandwidth, inner edges of top and bottom radiators of the CAVA have been properly bent; however, its gain and front-to-back (F-to-B) ratio is low at the low frequencies. To enhance gain and F-to-B ratio, the comb-shaped slits on edges of the radiators of CAVA are applied. The obtained results exhibit the impedance bandwidth of 1.65–18 GHz, gain of 6.7 dB at 1.65 GHz, and F-to-B ratio of 42 dB at 13.5 GHz that are higher than those parameters of the CAVA. Applicability of the proposed antenna for detection of void inside concrete beam is demonstrated. First, models of the proposed antenna and concrete beam possessing void are created in computer simulation technology and numerical study is performed. Then, a prototype of the antenna is fabricated and employed as part of microwave imaging system to verify simulation results and to detect voids inside concrete beam.
机译:介绍了一种为土木工程应用设计的超宽带椭圆锥形对极维瓦尔第天线。它基于常规对映式维瓦尔第天线(CAVA)的设计,该天线的阻抗带宽在频带的低端受到限制。为了扩展阻抗带宽,CAVA顶部和底部辐射器的内边缘已适当弯曲;但是,在低频时,其增益和前后(F对B)比很低。为了提高增益和F-B比率,在CAVA辐射器边缘上应用了梳形缝。所获得的结果显示出1.65–18 GHz的阻抗带宽,在1.65 GHz处的6.7 dB的增益和在13.5 GHz处的42 dB的F-B比高于CAVA的那些参数。证明了所提出的天线用于检测混凝土梁内部空隙的适用性。首先,利用计算机仿真技术建立了拟议的天线和具有空隙的混凝土梁的模型,并进行了数值研究。然后,制造天线的原型并将其用作微波成像系统的一部分,以验证模拟结果并检测混凝土梁内部的空隙。

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