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Electrically small supergain end-fire arrays

机译:小型电超级增益端射阵列

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The theory, computer simulations, and experimental measurements are presented for electrically small, two-element supergain arrays with near-optimal end-fire gains of 7 dB. We show how the difficulties of narrow tolerances, large mismatches, low radiation efficiencies, and reduced scattering of electrically small parasitic elements are overcome by using electrically small resonant antennas as the elements in both separately driven and singly driven (parasitic), two-element, electrically small supergain end-fire arrays. Although rapidly increasing narrow tolerances prevent the practical realization of the maximum theoretically possible end-fire gain of electrically small arrays with many elements, the theory and preliminary numerical simulations indicate that near-maximum supergains are also achievable in practice for electrically small arrays with three (and possibly more) resonant elements if the decreasing bandwidth with increasing number of elements can be tolerated.
机译:本文介绍了具有较小最佳端射增益为7 dB的电小型两元件超增益阵列的理论,计算机仿真和实验测量结果。我们展示了如何通过使用电气小谐振天线作为分别驱动和单独驱动(寄生),二元,小型超高增益端射阵列。尽管快速增加的窄公差会阻止实际实现具有许多元素的电小的阵列的最大理论上的端射增益的实现,但理论和初步的数值模拟表明,在实践中,对于具有三个(如果可以容忍随着元件数量的增加而减小的带宽,则可能需要更多的谐振元件。

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