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Hardware Design of DC-3GHz Compressed Sensing Receiver Based on Modulated Wideband Converter

机译:基于调制宽带转换器的DC-3GHz压缩传感接收机的硬件设计

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Modulated Wideband Converter (MWC) is a sub-Nyquist sampling structure suitable for wideband sparse signals. Based on MWC, this paper designs a DC-3 GHz Compressed Sensing (CS) receiver system with commercial devices. Combined with some standard compressed sensing algorithms, this receiver can sense the spectrum from DC to 3 GHz and receive at most six 40 MHz real signals simultaneously without prior knowledge of the carrier frequencies. This receiver with 60 dB dynamic range is designed to have six physical branches, and each branch contains an Analog-to-Digital Conversion (ADC) which operates at 245 MHz. The total sample rate of 1470 MHz is much smaller than the Nyquist sampling rate of 6 GHz. Based on a classical algorithm named SBR4, multiple sets of multiband signals with different input power are successfully blindly reconstructed.
机译:调制宽带转换器(MWC)是适用于宽带稀疏信号的次奈奎斯特采样结构。基于MWC,本文设计了带有商用设备的DC-3 GHz压缩传感(CS)接收器系统。结合一些标准的压缩传感算法,该接收机可以感知从DC到3 GHz的频谱,并且可以同时接收最多六个40 MHz的实际信号,而无需事先了解载波频率。该具有60 dB动态范围的接收器被设计为具有六个物理分支,每个分支包含一个以245 MHz工作的模数转换(ADC)。 1470 MHz的总采样率比6 GHz的奈奎斯特采样率小得多。基于名为SBR4的经典算法,成功盲目地重构了具有不同输入功率的多组多频带信号。

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