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A Comparison of Dual-Polarized, Periodic Arrays of Coincident and Noncoincident Phase Center Radiators

机译:重合和非重合相位中心辐射器的双极化周期阵列的比较

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We compare the polarization characteristics of coincident and noncoincident phase center, dual-polarized array antennas. Our analysis generalizes existing work on coincident phase center radiators and examines the dependence of polarization purity on the spatial separation between the two orthogonal sources of an idealized, dual polarized array element. We show that the spatial separation of the sources induces a phi-angle and frequency dependence in the far-field polarization, which vanishes when the sources are coincident. We discuss how attenuators, delay devices and phase shifters can compensate for the spatial separation and angular-dependent properties of the individual source radiation patterns. We also show that over a significant instantaneous bandwidth (20% to 30%) the noncoincident radiator's polarization purity degradation is relatively minor, even at wide scan angles.
机译:我们比较了重合和非重合相中心,双极化阵列天线的极化特性。我们的分析概括了在重合相中心辐射体上的现有工作,并检验了极化纯度对理想化双极化阵列元件的两个正交光源之间空间间隔的依赖性。我们表明,源的空间分离在远场极化中引起phi角和频率依赖性,当源重合时消失。我们讨论了衰减器,延迟设备和移相器如何补偿单个源辐射图的空间分离和与角度有关的特性。我们还表明,即使在宽扫描角度下,在相当大的瞬时带宽(20%至30%)上,非重合辐射器的极化纯度下降也相对较小。

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