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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Compact and Unidirectional Resonance-Based Reflector Antenna for Wideband Electromagnetic Imaging
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Compact and Unidirectional Resonance-Based Reflector Antenna for Wideband Electromagnetic Imaging

机译:基于紧凑和单向共振的反射天线,用于宽带电磁成像

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摘要

A unidirectional and wideband resonance-based reflector (RBR) antenna that can be used for biomedical applications, such as thorax imaging, is proposed. One of the main limitations in the design of biomedical systems, which utilize multiple densely spaced antennas, is the mutual coupling created by the radiating elements and the surface waves (SWs). The proposed RBR antenna is designed to achieve an in-phase reflection phase within a wide operating bandwidth. Moreover, it suppresses the SW propagation that reduces the overall mutual coupling by up to 12 dB across the whole operating bandwidth. It consists of a resonance-based loop reflector that is positioned in a perpendicular configuration to a wideband dipole antenna. To increase the electrical size of the loop reflector without physically altering the dimensions of the substrate, its structure is meandered, and a compact side size of 0.22λ × 0.22λ, which is more than 50% smaller than recent RBR antennas, is achieved. Unlike the majority of conventional double-layer high-impedance surfaces, the proposed RBR antenna consists of a single layer and a single unit cell and utilizes the actual dipole antenna element to achieve a measured wideband unidirectional radiation from 0.83 to 1.9 GHz (79%) with a peak gain of 3.8 dBi and a front-to-back ratio of 9 dB. Due to negligible electromagnetic coupling between RBR antennas, lateral SWs are suppressed, and thus multiple antennas can be located adjacent to each other without experiencing any frequency shift or impedance mismatch.
机译:提出了一种可用于生物医学应用(如胸部成像)的单向和基于宽带共振的反射器(RBR)天线。利用多个密集间隔的天线的生物医学系统设计的主要限制之一是辐射元件和表面波(SW)产生的相互耦合。提出的RBR天线旨在在宽工作带宽内实现同相反射相位。此外,它抑制了SW传播,从而在整个工作带宽上将整体互耦合降低了12 dB。它由基于谐振的环形反射器组成,该环形反射器与宽带偶极子天线垂直放置。为了在不物理改变基板尺寸的情况下增加环形反射器的电气尺寸,其结构必须弯曲,并且紧凑的侧面尺寸为0.22λ×0.22λ,比最近的RBR天线小50%以上。实现。与大多数传统的双层高阻抗表面不同,拟议的RBR天线由单层和单个单位单元组成,并利用实际的偶极子天线元件来实现从0.83到1.9 GHz(79 %),峰值增益为3.8 dBi,前后比为9 dB。由于RBR天线之间的电磁耦合可忽略不计,因此抑制了横向SW,因此可以将多个天线彼此相邻放置而不会出现任何频移或阻抗失配。

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