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Wideband Sparse Signal Acquisition With Dual-rate Time-Interleaved Undersampling Hardware and Multicoset Signal Reconstruction Algorithms

机译:具有双速率时间交织的欠采样硬件和多陪集信号重构算法的宽带稀疏信号采集

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摘要

A new undersampling-based dual-rate signal acquisition technique for measuring a wideband sparse signal (i.e., a multiband signal) is presented in this paper. The proposed architecture employs a combination of dual-rate time-interleaved undersampling hardware and associated multicoset back-end signal processing algorithms. In dual-rate sampling hardware, a pair of uniform samplers is used to acquire a common incoming wideband sparse signal while the operation frequencies of the two samplers have a small frequency offset. Due to the sampling frequency offset, the time grids of the samples obtained from the two samplers are irregularly spaced. These nonuniform periodic samples are then digitally re-sequenced and applied as input to a multicoset signal reconstruction algorithm. The multicoset signal reconstruction algorithm uses the re-sequenced nonuniform periodic samples to achieve a perfect reconstruction of the original wideband signal with an enhanced time resolution beyond the sampling hardware’s capability. Compared to the conventional multi-channel sampling approach commonly used with multicoset algorithms, the proposed method uses fewer sampling channels and does not require their accurate clock phase adjustment.
机译:本文提出了一种新的基于欠采样的双速率信号采集技术,用于测量宽带稀疏信号(即多频带信号)。所提出的体系结构结合了双速率时间交织的欠采样硬件和相关的多陪集后端信号处理算法。在双速率采样硬件中,一对均匀采样器用于获取公共的输入宽带稀疏信号,而两个采样器的工作频率具有较小的频率偏移。由于采样频率偏移,从两个采样器获得的采样的时间网格不规则地间隔开。然后将这些非均匀周期样本进行数字重新排序,并作为输入输入到多陪集信号重建算法。多陪集信号重构算法使用重新排序的非均匀周期性采样来实现原始宽带信号的完美重构,其时间分辨率超出了采样硬件的能力。与通常与多陪集算法一起使用的常规多通道采样方法相比,该方法使用的采样通道更少,不需要精确的时钟相位调整。

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