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Photonic microwave-to-digital subsystems: When, why and how

机译:光子微波到数字子系统:何时,为什么和如何

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The accurate collection and assessment of information contained in the electromagnetic (EM) environment is crucial to the success of a variety of avionic systems. The nature of the information to be collected and platform demanding multi-functionality requires these systems to simultaneously cover many RF and microwave bands and to deliver accurate (post-processed) information. Additionally, the increasing demands for higher system performance and increased versatility result in the reliance on digital signal processing (DSP) and consequently the high fidelity conversion of the analog microwave input signals to digital representations. In this paper, we seek to classify input waveforms representing the key classes of analog signals and identify desired output information classes. We will also provide guidance for matching recently demonstrated photonic microwave-to-digital architectures to the input waveform/output time-spectra reconstruction scenarios. In addition, we will cover the performance parameters and the crucial microwave-optical-electrical-digital interface issues.
机译:电磁(EM)环境中包含的信息的准确收集和评估对于各种航空系统的成功至关重要。要收集的信息的性质和要求多功能性的平台需要这些系统同时覆盖许多RF和微波频带,并提供准确(处理后的)信息。此外,对更高系统性能的需求越来越大,多功能性增加导致对数字信号处理(DSP)的依赖性,并因此将模拟微波输入信号与数字表示的高保真转换。在本文中,我们寻求对表示模拟信号的关键类别的输入波形并识别所需的输出信息类。我们还将提供匹配的指导,最近将光子微波到数字架构显示为输入波形/输出时间谱重建方案。此外,我们将介绍性能参数和重要的微波 - 光学 - 电气 - 数字界面问题。

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