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Elimination of impedance anomalies in single- and dual-polarizedendfire tapered slot phased arrays

机译:消除单极化和双极化端射锥形缝隙相控阵中的阻抗异常

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摘要

A method to eliminate bandwidth-limiting impedance anomalies or resonances in stripline-fed single- and dual-polarized tapered slot phased arrays is presented. For dual-polarized arrays, others have shown that the resonance with the lowest frequency is related to a cavity constituted by the dielectric region of the tapered slot element. Simulations have been performed to test if this cavity model also predicts the remaining resonances. It was found that the cavity model predicts some but not all of the resonances. However, it was found that all resonances in both single- and dual-polarized arrays have some dependence on the dielectric region. The resonances are effectively suppressed by introducing plated through vias in the element. The vias are positioned along the edges of the slotline, slotline cavity, stripline, and stripline stub. The analysis is performed with the finite-difference time-domain method by considering a unit cell in an infinite array
机译:提出了一种消除带状馈电的单极化和双极化锥形缝隙相控阵中的带宽限制阻抗异常或谐振的方法。对于双极化阵列,其他人已经表明,具有最低频率的谐振与由锥形缝隙元件的介电区构成的腔有关。已经进行了仿真以测试该腔模型是否还预测了剩余的共振。发现腔模型预测了一些但不是全部共振。但是,已经发现,单极化和双极化阵列中的所有谐振都对介电区有一定的依赖性。通过在元件中引入电镀通孔可以有效地抑制谐振。通孔沿着槽线,槽线腔,带状线和带状线桩的边缘放置。通过考虑无限阵列中的晶胞,使用时域有限差分法进行分析

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