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Millimeter-Wave High Radiation Efficiency Planar Waveguide Series-Fed Dielectric Resonator Antenna (DRA) Array: Analysis, Design, and Measurements

机译:毫米波高辐射效率平面波导系列馈电介质谐振天线(DRA)阵列:分析,设计和测量

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摘要

A low cost general architecture for a substrate integrated waveguide (SIW) series-fed dielectric resonator antenna (DRA) array, formed by two different slot polarizations, is proposed. In addition, a novel, simple, and generic transmission line (T.L.) circuit model, along with a fast and generic formulation for the new linear array antenna, is developed. The model can be used for reflection coefficient and radiation pattern (gain) calculations. The experimental data from two linear array modules, operating at the millimeter-wave band, are used to verify the simulated results of HFSS and the proposed model results. The measured radiation pattern for a 4 $times$ 1 SIW-DRA array demonstrates a broadside beam with a radiated gain of 11.70 dB over an operating impedance bandwidth of 4.70%. Moreover, the simulated radiation efficiency is more than 90%.
机译:提出了一种由两种不同的缝隙极化形成的衬底集成波导(SIW)串联馈电介质谐振器天线(DRA)阵列的低成本通用架构。此外,还开发了新颖,简单且通用的传输线(T.L.)电路模型,以及用于新型线性阵列天线的快速通用公式。该模型可用于反射系数和辐射方向图(增益)计算。来自两个在毫米波波段工作的线性阵列模块的实验数据被用于验证HFSS的仿真结果和所提出的模型结果。 1个SIW-DRA阵列的4个 $ times $ 阵列的测量辐射方向图显示了宽边波束,其辐射增益为11.70 dB工作阻抗带宽为4.70%。此外,模拟辐射效率超过90%。

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