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A near-field setup with independent amplitude and phase control of the stimuli for phased antenna testing

机译:具有独立幅度和相位控制的相控天线测试的近场设置

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This contribution discusses a near-field antenna setup capable of delivering multiple input signals with controllable (i.e., user defined) amplitude and phase relations to an antenna under test, operating in the X-band. The setup is based on a Cartesian modulation (phase and quadrature signals) of phase coherent signals, achieved employing broadband passive IQ-mixers controlled via high-resolution digital-to-analogue converters (DACs). A dedicated calibration procedure allows achieving independent phase and amplitude control on the different signal paths to compensate for loss and delay mismatches among the different channels. The capability to align the relative phases of the various paths with respect to one enables the direct testing of phased antenna arrays. The system calibration is elaborately described. The proposed Cartesian modulation is demonstrated by studying a complex antenna array, with a subset of its elements being controlled independently and phase delayed for actively controlling the far-field radiation pattern.
机译:该文稿讨论了一种近场天线设置,该设置能够将具有可控制(即用户定义)的幅度和相位关系的多个输入信号传送到在X波段工作的被测天线。该设置基于相位相干信号的笛卡尔调制(相位和正交信号),采用通过高分辨率数模转换器(DAC)控制的宽带无源IQ混频器来实现。专用的校准程序允许在不同的信号路径上实现独立的相位和幅度控制,以补偿不同通道之间的损耗和延迟失配。相对于一条路径对准各种路径的相对相位的能力使得能够对相控天线阵列进行直接测试。详细介绍了系统校准。通过研究复杂的天线阵列,可以证明所提出的笛卡尔调制,其元素的子集可以独立控制,并且可以进行相位延迟以主动控制远场辐射方向图。

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