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Photonic correlation for wideband processing in MMW imaging systems

机译:MMW成像系统中的宽带处理的光子相关性

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In recent years, many examples have been cited where photonic signal processors have the potential of enabling the deployment of wideband RF sensor systems whose data rates would otherwise overwhelm the capabilities of traditional digital signal processors. Passive, synthetic aperture millimeter-wave (MMW) imaging arrays are one such class of sensor system that offers a solution to the need for a passive, all-weather look-down sensor for critical DoD and environental missions. A photonic method of correlating the signals received by the various elements of the array offers a highly efficient, exceptionally wideband capability, exploiting a powerful new technology for aperture-shnthesis imaging. Our trade study has helped to establish that a photonically based interferometric imager can significantly reduce the weight and power consumption of the system relative to an all-digital-electronics approach. In addition, the ability of an airborne or space based system to process multi-gigahertz bandwidths offers the first real-time MMW imager operating at video rates. Previous demonstrations of optical correlators have used discrete components, and generate only the real part of the correlation. Using integrated optical waveguide technology developed in part for the telecommunications industry, we have developed an approach for computing complex correlations over wide bandwidths and in such a way to allow video rate imaging for passive MMW systems.
机译:近年来,许多例子已经列举其中光子信号处理器有使宽带射频传感器,其数据速率系统的部署,否则压倒传统的数字信号处理器的性能潜力。被动的,合成孔径毫米波(MMW)成像阵列是其中一类的传感器系统的,可向需要一个被动的溶液,全天候关键国防部和environental任务下视传感器。由阵列提供了高效的,分外宽带能力的各种元件接收到的信号相关联,利用一个强大的新技术,孔径shnthesis成像的光子方法。我们的贸易研究有助于建立一个基于光子干涉成像仪可以显著降低重量和功耗系统相对于以全数字电子方法。此外,空中或太空为基础的系统的能力来处理多千兆赫的带宽提供以视频速率的第一个实时毫米波成像仪的操作。光学相关器的示范以前已经使用分立元件,并且仅生成的相关性的实部。使用在电信行业部分开发了集成光波导技术,我们已经制定了在很宽的带宽和以这样的方式,让被动毫米波系统的视频速率成像计算复杂的相互关系的方法。

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