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Multirate Synchronous Sampling of Sparse Multiband Signals

机译:稀疏多频带信号的多速率同步采样

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Recent advances in electro-optical systems make them ideal for undersampling multiband signals with very high carrier frequencies. In this paper, we propose a new scheme for sampling and reconstructing of a multiband sparse signals that occupy a small part of a given broad frequency range under the constraint of a small number of sampling channels. The locations of the signal bands are not known a priori. The scheme, which we call synchronous multirate sampling (SMRS), entails gathering samples synchronously at few different rates whose sum is significantly lower than the Nyquist sampling rate. The signals are reconstructed by finding a solution of an underdetermined system of linear equations by applying a pursuit algorithm and assuming that the solution is composed of a minimum number of bands. The empirical reconstruction success rate is higher than obtained using previously published multicoset scheme when the number of sampling channels is small and the conditions for a perfect reconstruction in the multicoset scheme are not fulfilled. The practical sampling system which is simulated in our work consists of three sampling channels. Our simulation results show that a very high empirical success rate is obtained when the total sampling rate is five times higher than the total signal support of a complex signal with four bands. By comparison, a multicoset sampling scheme obtains a very high empirical success rate with a total sampling rate which is three times higher than the total signal support. However, the multicoset scheme requires 14 channels.
机译:电光系统的最新进展使其非常适合对载波频率非常高的多频带信号进行欠采样。在本文中,我们提出了一种新的方案,用于在少数采样通道的约束下,对给定的宽频率范围中的一小部分进行采样的多频带稀疏信号进行采样和重构。信号带的位置不是先验的。该方案称为同步多速率采样(SMRS),它需要以几种不同的速率同步收集样本,这些速率之和远低于奈奎斯特采样率。通过应用追赶算法并假设该解决方案由最少数量的频带组成,可以找到一个欠定线性方程组的解,从而重构信号。当采样通道数量少且不满足在多陪集方案中进行完美重构的条件时,经验重建成功率要高于使用先前发布的多陪集方案获得的结果。在我们的工作中模拟的实际采样系统包括三个采样通道。我们的仿真结果表明,当总采样率比具有四个频带的复杂信号的总信号支持高五倍时,可以获得很高的经验成功率。相比之下,多陪集采样方案获得的经验成功率很高,总采样率比总信号支持高三倍。但是,多陪集方案需要14个通道。

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