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A Large Antenna Array for Ka-Band Satcom-on-the-Move Applications—Accurate Modeling and Experimental Characterization

机译:适用于Ka波段卫星移动应用的大型天线阵列-精确建模和实验表征

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摘要

We present the accurate modeling and analysis, followed by experimental validation, of a 1024-element (64-by-16) antenna array. This fixed-beam array radiates linear polarization in Ka-band (19.7–20.2 GHz). It acts as a first step in the design and modeling of future antenna arrays for satcom-on-the-move applications. Accurate prediction of the behavior of such a large array is a challenging task since full-wave simulation of the entire structure cannot be considered. By taking advantage of existing formalisms on periodic arrays and by using appropriate methods to efficiently exploit such formulations, it is possible to accurately define the performances of all building blocks, from the feeding circuits to the radiating elements, over a frequency range. Such a detailed design also allows an accurate physical analysis. It has been successfully used to guarantee the measured performances. This paper is intended to detail different steps to antenna designers.
机译:我们介绍了1024元素(64 x 16)天线阵列的精确建模和分析,然后进行了实验验证。该固定光束阵列在Ka波段(19.7–20.2 GHz)内辐射线性极化。它是未来移动通信应用的未来天线阵列设计和建模的第一步。由于无法考虑整个结构的全波仿真,因此准确预测如此大阵列的行为是一项艰巨的任务。通过利用周期阵列上的现有形式主义并通过使用适当的方法来有效利用此类公式化,有可能在整个频率范围内准确地定义从馈电电路到辐射元件的所有构件的性能。这样的详细设计还可以进行准确的物理分析。它已成功用于保证测量的性能。本文旨在向天线设计人员详细介绍不同的步骤。

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