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Assessment of Analog-to-Information Converters based on Non-Uniform Sampling for Spectrum Analysis

机译:基于非均匀采样进行频谱分析评估模数转换器的评估

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Nowadays, the development of a new open architecture for Analog-to-Information Conversion (AIC) represents an open field of research. This paper presents the preliminary exploration of two AIC architectures concerning Non-Uniform Sampling (NUS), and a derivation of it, called Non-Uniform Wavelet Band-pass Sampling (NUWBS). To this goal, based of the existing mathematical models of these AIC architectures, a numerical investigation has been carried out in order to assess their capabilities in terms of Compressed Sensing (CS) framework for spectrum analysis. By considering non-idealities such as random jitter and noise affecting the AIC architectures, an evaluation of two Figures-of-Merit (FoM) has been accomplished. The obtained results highlight that from a hardware implementation point of view of both AIC architectures, the NUWBS is not restricted to use control signals for the NUS process at the Nyquist rates, as in case of NUS AIC architecture. Moreover, the reported results indicate that the NUWBS AIC architecture is advantageous for the future Wideband Spectrum Sensing (WSS) applications, such as those required in case of Cognitive Radios (CR) for 5G telecommunications and for Internet-of-Things (IoT) devices.
机译:如今,开发用于模数转换(AIC)的新开放式架构代表了一个开放的研究领域。本文介绍了关于非均匀采样(NUS)的两个AIC架构的初步探索,以及称为非均匀小波带传递采样(NuWB)的推导。为此目标,基于这些AIC架构的现有数学模型,已经进行了数值调查,以便在压缩传感(CS)谱的频谱分析方面评估其能力。通过考虑非理想性,例如随机抖动和影响AIC架构的噪声,已经完成了两个优选法(FOM)的评估。所获得的结果突出显示来自AIC架构的硬件实现的角度,NuWB不限于在NUS AIC架构中使用用于NUS过程的控制信号。此外,据报道的结果表明,NuWBS AIC架构对于未来的宽带频谱感测(WSS)应用是有利的,例如用于5G电信的认知收音机(CR)所需的应用程序,以及用于互联网(IOT)设备。

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