A Nyquist folding analog-to-information receiver

G. Fudge, Ross E. Bland, M. Chivers, Sujit Ravindran, J. Haupt, Phillip E. Pace
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引用次数: 73

Abstract

Many radar and communications applications require detection and estimation of signal information across an extremely wide radio frequency (RF) bandwidth. In practice, however, direct digitization of this broadband RF environment is problematic. Physical limitations in analog-to-digital converter (ADC) technology restrict the total bandwidth that can be digitized, as well as the ability to digitize high RF signals directly. This paper describes a novel ldquoanalog-to-informationrdquo receiver, motivated by recent developments in compressed sensing (CS), which overcomes both of these challenges in certain settings. The proposed receiver performs frequency modulated pulsed sampling at sub-Nyquist/Shannon rates to compress a broadband RF environment into an analog interpolation filter. The RF sample clock modulation induces a Nyquist-zone dependent frequency modulation on the received signals, allowing separation and recovery of the signal information from a sparse broadband RF environment.
奈奎斯特折叠式模拟信息接收器
许多雷达和通信应用需要在极宽的射频(RF)带宽上检测和估计信号信息。然而,在实践中,这种宽带射频环境的直接数字化是有问题的。模数转换器(ADC)技术的物理限制限制了可以数字化的总带宽,以及直接数字化高射频信号的能力。本文描述了一种新型的从类比到信息的接收器,它是由压缩感知(CS)的最新发展所激发的,它在某些情况下克服了这两个挑战。该接收机以亚奈奎斯特/香农速率进行频率调制脉冲采样,将宽带射频环境压缩成模拟插值滤波器。射频采样时钟调制在接收信号上诱导奈奎斯特区相关的频率调制,允许从稀疏宽带射频环境中分离和恢复信号信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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