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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Design considerations for a dynamic metamaterial aperture for computational imaging at microwave frequencies
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Design considerations for a dynamic metamaterial aperture for computational imaging at microwave frequencies

机译:在微波频率下用于计算成像的动态超材料孔径的设计考虑

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摘要

We investigate the imaging capabilities of a one-dimensional, dynamic, metamaterial aperture that operates at the lower part of K-band microwave frequencies (17.5-21.1 GHz). The dynamic aperture consists of a microstrip transmission line with an array of radiating, complementary, subwavelength metamaterial irises patterned into the upper conductor. Diodes integrated into the metamaterial resonators provide voltage-controlled switching of the resonant metamaterial elements between radiating and nonradiating states. Applying a series of on/off patterns to the metamaterial resonators produces a series of distinct radiation patterns that sequentially illuminate a scene. The backscattered signal contains encoded scene information over a set of measurements that can be postprocessed to reconstruct an image. We present a series of design considerations for the dynamic aperture, as well as a series of experimental studies performed using a dynamic aperture prototype. High-fidelity, real-time, diffractionlimited imaging using the prototype is demonstrated. The dynamic aperture suggests a path to fast and reliable imaging with low-cost and versatile hardware, for a variety of applications including security screening, biomedical diagnostics, and through-wall imaging. (C) 2016 Optical Society of America
机译:我们研究了在K波段微波频率(17.5-21.1 GHz)较低部分工作的一维动态超材料孔径的成像能力。动态孔径由微带传输线组成,该微带传输线具有图案化到上部导体中的一系列辐射,互补亚波长超材料虹膜阵列。集成在超材料谐振器中的二极管提供了谐振超材料元件在辐射状态和非辐射状态之间的电压控制切换。将一系列开/关模式应用于超材料谐振器会产生一系列不同的辐射模式,这些模式依次照亮场景。反向散射信号包含可以进行后处理以重建图像的一组测量值上的编码场景信息。我们介绍了动态光圈的一系列设计注意事项,以及使用动态光圈原型进行的一系列实验研究。演示了使用该原型的高保真,实时,衍射受限成像。动态孔径为低成本和通用硬件提供了快速而可靠的成像方法,适用于各种应用,包括安全性筛查,生物医学诊断和穿墙成像。 (C)2016美国眼镜学会

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