Xampling: Analog Data Compression

M. Mishali, Yonina C. Eldar
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引用次数: 38

Abstract

We introduce Xampling, a design methodology for analog compressed sensing in which we sample analog bandlimited signals at rates far lower than Nyquist, without loss of information. This allows compression together with the sampling stage. The main principles underlying this framework are the ability to capture a broad signal model, low sampling rate, efficient analog and digital implementation and lowrate baseband processing. In order to break through the Nyquist barrier so as to compress the signals in the sampling process, one has to combine classic methods from sampling theory together with recent developments in compressed sensing. We show that previous attempts at sub-Nyquist sampling suffer from analog implementation issues, large computational loads, and have no baseband processing capabilities. We then introduce the modulated wideband converter which can satisfy all the Xampling desiderata. We also demonstrate a board implementation of our converter which exhibits sub-Nyquist sampling in practice.
示例:模拟数据压缩
我们介绍了采样,这是一种模拟压缩传感的设计方法,在这种方法中,我们以远低于奈奎斯特的速率采样模拟带宽限制信号,而不会丢失信息。这允许压缩和采样阶段一起进行。该框架的主要原理是能够捕获宽信号模型,低采样率,高效的模拟和数字实现以及低速率基带处理。为了突破奈奎斯特屏障,在采样过程中对信号进行压缩,必须将采样理论的经典方法与压缩感知的最新发展相结合。我们表明,以前的亚奈奎斯特采样尝试存在模拟实现问题,计算负载大,并且没有基带处理能力。然后介绍了满足所有采样要求的调制宽带变换器。我们还演示了我们的转换器的电路板实现,在实践中显示了亚奈奎斯特采样。
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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