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An Optimized Circulant Measurement Matrix Construction Method Used in Modulated Wideband Converter for Wideband Spectrum Sensing

机译:调制宽带转换器中用于频谱感知的优化循环测量矩阵构造方法

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Modulated wideband converter (MWC) is a blind undersampling system for sparse multiband signal. By the available hardware and compressed sensing method, it can realize energy-efficient wideband spectrum sensing under sub-Nyquist sampling rate. In this paper, we propose an optimized circulant measurement matrix constructing method which is suitable for the MWC system, aiming at the problem that the random measurement matrix is hard to implement in hardware. Simulation results show that the MWC system can reconstruct the original signal with high probability using the proposed method. And its signal to noise ratio (SNR) and sampling channel number performance are improved 8dB and 4 channels respectively compared with traditional Toeplitz measurement matrix and circulant measurement matrix.
机译:调制宽带转换器(MWC)是用于稀疏多频带信号的盲式欠采样系统。通过可用的硬件和压缩传感方法,它可以在亚奈奎斯特采样率下实现节能的宽带频谱传感。针对随机测量矩阵难以在硬件中实现的问题,本文提出了一种适用于MWC系统的优化的循环测量矩阵构造方法。仿真结果表明,所提出的方法可以有效地重构MWC系统的原始信号。与传统的Toeplitz测量矩阵和循环测量矩阵相比,其信噪比(SNR)和采样通道数性能分别提高了8dB和4个通道。

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