首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Multirate asynchronous sampling of sparse multiband signals
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Multirate asynchronous sampling of sparse multiband signals

机译:稀疏多频带信号的多速率异步采样

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摘要

Because optical systems have a huge bandwidth and are capable of generating low-noise short pulses, they are ideal for undersampling multiband signals that are located within a very broad frequency range. We propose a new scheme for reconstructing multiband signals that occupy a small part of a given broad frequency range under the constraint of a small number of sampling channels. The scheme, which we call multirate sampling (MRS), entails gathering samples at several different rates whose sum is significantly lower than the Nyquist sampling rate. The number of channels does not depend on any characteristics of a signal. In order to be implemented with simplified hardware, the reconstruction method does not rely on the synchronization between different sampling channels. Also, because the method does not solve a system of linear equations, it avoids one source of lack of robustness of previously published undersampling schemes. Our simulations indicate that our MRS scheme is robust both to different signal types and to relatively high noise levels. The scheme can be implemented easily with optical sampling systems.
机译:由于光学系统具有巨大的带宽,并且能够生成低噪声的短脉冲,因此它们对于在非常宽的频率范围内对多频带信号进行欠采样的理想选择。我们提出了一种重构多频带信号的新方案,该信号在少数采样通道的约束下占据了给定宽频率范围的一小部分。该方案称为多速率采样(MRS),它需要以几种不同的速率收集样本,这些和的总和明显低于奈奎斯特采样率。通道数不取决于信号的任何特征。为了用简化的硬件实现,该重建方法不依赖于不同采样通道之间的同步。而且,由于该方法不能求解线性方程组,因此可以避免以前缺乏欠采样方案的鲁棒性。我们的仿真表明,我们的MRS方案对于不同的信号类型和相对较高的噪声水平均具有鲁棒性。该方案可通过光学采样系统轻松实现。

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