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Design and implementation of a fully integrated compressed-sensing signal acquisition system

机译:完全集成的压缩传感信号采集系统的设计与实现

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Compressed sensing (CS) is a topic of tremendous interest because it provides theoretical guarantees and computationally tractable algorithms to fully recover signals sampled at a rate close to its information content. This paper presents the design of the first physically realized fully-integrated CS based Analog-to-Information (A2I) pre-processor known as the Random-Modulation Pre-Integrator (RMPI) [1]. The RMPI achieves 2GHz bandwidth while digitizing samples at a rate 12.5× lower than the Nyquist rate. The success of this implementation is due to a coherent theory/algorithm/hardware co-design approach. This paper addresses key aspects of the design, presents simulation and hardware measurements, and discusses limiting factors in performance.
机译:压缩感测(CS)是一个备受关注的话题,因为它提供了理论上的保证和可计算的算法,可以完全恢复以接近其信息内容的速率采样的信号。本文介绍了第一个物理实现的完全集成的基于CS的模拟信息(A2I)预处理器的设计,该处理器称为随机调制预积分器(RMPI)[1]。 RMPI达到2GHz带宽,同时以比奈奎斯特速率低12.5倍的速率数字化采样。此实现的成功归因于一致的理论/算法/硬件协同设计方法。本文介绍了设计的关键方面,介绍了仿真和硬件测量,并讨论了性能方面的限制因素。

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