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Frequency-Diverse Bunching Metamaterial Antenna for Coincidence Imaging

机译:用于巧合成像的分频成束超材料天线

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摘要

A frequency-diverse bunching metamaterial antenna for coincidence imaging in the Ka band is proposed in this paper. The bunching metamaterial antenna includes a broadband circular array and a frequency-diverse bunching metalens. Firstly, in order to enhance the bunching characteristic, the broadband circular array is designed based on the 60-degree beamwidth design to generate radiation patterns from 32 GHz to 36 GHz. Then, types of metamaterial elements with different transmission phases are selected to form the frequency-diverse bunching metalens based on a random distribution design and gradient zoom coefficient design. Moreover, the bunching metamaterial antenna is constituted by loading the frequency-diverse bunching metalens to the broadband circular array, which can generate frequency-diverse bunching random radiation patterns with beamwidth less than 100 degrees from 32 GHz to 36 GHz. Furthermore, the performances of the bunching metamaterial antenna, including the reflection coefficient, the radiation efficiency, and the correlation coefficients of radiation patterns at different frequencies are evaluated. Finally, the coincidence imaging experiment is implemented using the bunching metamaterial antenna and the image of the target is reconstructed successfully. The design is verified by simulations and measurements.
机译:提出了一种用于Ka波段重合成像的分频成束超材料天线。聚束超材料天线包括宽带圆形阵列和分频聚束金属。首先,为了增强聚束特性,基于60度波束宽度设计了宽带圆形阵列,以生成32 GHz至36 GHz的辐射方向图。然后,基于随机分布设计和梯度缩放系数设计,选择具有不同传输相位的超材料元素的类型,以形成分频聚束金属。此外,聚束超材料天线是通过将分频聚束金属元素加载到宽带圆形阵列而构成的,该天线可以在32 GHz至36 GHz范围内产生波束宽度小于100度的分频聚束随机辐射方向图。此外,还评估了聚束超材料天线的性能,包括不同频率下的反射系数,辐射效率和辐射方向图的相关系数。最后,利用聚束超材料天线实现了重合成像实验,并成功重建了目标图像。通过仿真和测量验证了设计。

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