用于微波计算成像的可重构的带有荧光灯的混沌腔

Ariel Christopher Tondo Yoya, B. Fuchs, M. Davy
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引用次数: 10

摘要

最近提出了几种微波和毫米波频率的计算成像系统,可以快速低成本地重建场景的散射强度。重建图像的质量与系统的自由度直接相关,自由度是对场景进行顺序采样的不相关辐射模式的数量。频率变化的天线,如泄漏混沌腔和超材料孔径,利用了来自介质内混响的传输散斑模式的频谱去相关。我们提出了一个可重构的混沌腔,其边界条件可以通过激发等离子体元素来调节,这里是商业荧光灯。电磁波与冷等离子体的相互作用在电离过程中被强烈地改变。而不是透明的入射波,它在理论上表现为金属材料。利用微分方法获得的腔体的独立状态进一步提高了自由度。这减少了对具有大带宽和/或高质量因数的腔体的需求。实验结果验证了荧光灯的使用,并讨论了其局限性。提供了各种金属物体的图像来说明这种有前途的解决方案的潜力。
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A RECONFIGURABLE CHAOTIC CAVITY WITH FLUORESCENT LAMPS FOR MICROWAVE COMPUTATIONAL IMAGING
Several computational imaging systems have recently been proposed at microwave and millimeter-wave frequencies enabling a fast and low cost reconstruction of the scattering strength of a scene. The quality of the reconstructed images is directly linked to the degrees of freedom of the system which are the number of uncorrelated radiated patterns that sequentially sample the scene. Frequency diverse antennas such as leaky chaotic cavities and metamaterial apertures take advantage of the spectral decorrelation of transmitted speckle patterns that stems from the reverberation within a medium. We present a reconfigurable chaotic cavity for which the boundary conditions can be tuned by exciting plasma elements, here commercial fluorescent lamps. The interaction of electromagnetic waves with a cold plasma is strongly modified as it is ionized. Instead of being transparent to incident waves, it behaves theoretically as a metallic material. The independent states of the cavity obtained using a differential approach further enhance the degrees of freedom. This relaxes the need of a cavity with a large bandwidth and/or high quality factor. Experimental results validate the use of fluorescent lamps and its limitations are discussed. Images of various metallic objects are provided to illustrate the potentialities of this promising solution.
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