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Performance limits of planar phased array with dome lens

机译:带球面透镜的平面相控阵的性能极限

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摘要

Abstract: Communication systems based on low-earth-orbit (LEO) satellites have generated a requirement for high-performance phased array antennas with exceptional gain, sidelobe levels, and axial ratio over broad scan angles and 360 degree azimuth coverage. One approach to mitigating the effects of scan dependence is to cover the planar array with a hemispherical lens, or dome, which implements passive or active phase correction of the scanned beam. The phase correction over the dome surface may be represented as the function $Delta$Phi@($theta@, $phi@), with $theta and $phi the polar and azimuth angles in a coordinate system having z-axis normal to the array. The purpose of this study was to determine the performance improvement achievable with such an ideal lens. Three cases were considered: a conventional lens with fixed optimum phase correction, an active lens with scan-dependent phase correction a function of polar angle only, and an active lens with phase correction a function of polar and azimuthal angles. In all cases, the planar array distribution had a fixed radial Taylor amplitude distribution and a phase taper consisting of a linear beam-pointing term and a non-linear focusing term. !0
机译:摘要:基于低地球轨道(LEO)卫星的通信系统已经对高性能相控阵天线提出了要求,这些天线必须在宽扫描角和360度方位角覆盖范围内具有出色的增益,旁瓣电平和轴向比率。减轻扫描依赖性影响的一种方法是用半球形透镜或半球形罩盖住平面阵列,该半球形透镜或半球形罩可对扫描光束进行无源或有源相位校正。穹顶表面上的相位校正可以表示为函数$ Delta $ Phi @($ theta @,$ phi @),其中$ theta和$ phi是z轴垂直于坐标轴的坐标系中的极角和方位角。数组。这项研究的目的是确定使用这种理想镜头可实现的性能改进。考虑了三种情况:具有固定最佳相位校正的常规透镜,具有依赖于扫描的相位校正的有源透镜(仅具有极角)和具有相位校正的有源透镜(具有极角和方位角)。在所有情况下,平面阵列分布都具有固定的径向泰勒振幅分布和由线性光束指向项和非线性聚焦项组成的相位锥。 !0

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