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Performance analysis of classical and phase-corrected electromagnetic band gap resonator antennas with all-dielectric superstructures

机译:具有全介电超结构的经典和相位校正电磁带隙谐振器天线的性能分析

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摘要

Classical electromagnetic band gap resonator antennas (ERA) have non-uniform aperture-phase distributions, which result in non-optimal antenna performance. The authors discuss how the aperture-phase distributions of classical one-dimensional (1D) ERAs can be enhanced by using novel all-dielectric phase correcting structures (PCS) and then employ these PCSs to design high-performance phase-corrected ERAs. The authors present a detailed qualitative and quantitative comparison of several phase-corrected and classical 1D ERAs that employ a stack of identical unprinted dielectric slabs, and discuss performance figures such as aperture-phase distributions, peak directivity/gain, 3 dB directivity bandwidth and aperture efficiency. A prototype of one phase-corrected ERA made out of high-permittivity (Rogers TMM10) dielectric material was fabricated and key measured results are presented. It is found that the phase-corrected ERA has higher aperture efficiency and larger gain-bandwidth and bandwidth-aperture-efficiency products due to phase correction, making it suitable for wideband applications that require one antenna with directivity >20 dBi.
机译:经典的电磁带隙谐振器天线(ERA)具有不均匀的孔径相位分布,这会导致天线性能不理想。作者讨论了如何通过使用新颖的全介电相位校正结构(PCS)来增强经典一维(1D)ERA的孔径相位分布,然后利用这些PCS设计高性能的相位校正ERA。作者对几种相位校正的和经典的一维ERA进行了详细的定性和定量比较,这些ERA使用一叠相同的未印刷介质板,并讨论了诸如孔径相分布,峰值方向性/增益,3 dB方向性带宽和孔径之类的性能数据。效率。制造了一种由高介电常数(Rogers TMM10)电介质材料制成的相位校正ERA的原型,并给出了关键的测量结果。已经发现,由于相位校正,经过相位校正的ERA具有更高的孔径效率和更大的增益带宽和带宽孔径效率乘积,使其适用于需要一个方向性大于20 dBi的天线的宽带应用。

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