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Full-wave simulation, design and implementation of a new combination of antenna array feed network integrated in low profile microstrip technology

机译:集成在薄型微带技术中的天线阵列馈电网络新组合的全波仿真,设计和实现

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摘要

In this paper, a new modified combination of antenna and array feed network integrated in low thickness microstrip technology is presented. A concept similar to the concept of coherently radiating periodic structures is used to feed a 4-element antenna array. In the feed network, a new combination of Gysel-based 3 and 5 port components as power dividers/combiners is employed to propagate the power into the antenna array so that the desired Gaussian-like amplitudes and linear phase distributions can be obtained. These multi-port components are modified to design the feed network by single-layer microstrip technology without the matching and isolation circuits and through-substrate vias. Therefore, the manufacturing cost and difficulty and design complexity are reduced, considerably. Full-wave simulations of the feed network, unit cells and the final integrated antenna array are done, step by step and the results considering all possible losses are presented. To validate the designs, two prototypes, first the feed network and second the integrated module including both antenna array and feed network designed at 3.5 GHz were fabricated and measured and the S parameters (amplitude and phase) were compared with the full-wave simulations. A good agreement between the results including impedance and radiation characteristics is shown.
机译:在本文中,提出了一种新的天线和阵列馈电网络的改进组合,该网络集成了低厚度微带技术。与相干辐射周期性结构的概念相似的概念用于馈入4元素天线阵列。在馈电网络中,采用了基于Gysel的3端口和5端口组件的新组合作为功率分配器/组合器,以将功率传播到天线阵列中,从而获得所需的类似于高斯的幅度和线性相位分布。这些多端口组件经过修改,可以通过单层微带技术设计馈电网络,而无需匹配和隔离电路以及基板通孔。因此,大大降低了制造成本,难度和设计复杂性。逐步完成了馈电网络,单位单元和最终集成天线阵列的全波仿真,并给出了考虑所有可能损耗的结果。为了验证设计,制造并测量了两个原型,首先是馈电网络,其次是包括天线阵列和馈电网络的集成模块,包括天线阵列和在3.5 GHz处设计的馈电网络,并将S参数(幅度和相位)与全波仿真进行了比较。结果表明,包括阻抗和辐射特性在内的结果之间具有良好的一致性。

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