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Pulse-doppler signal processing with quadrature compressive sampling

机译:正交压缩采样的脉冲多普勒信号处理

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Quadrature compressive sampling (QuadCS) is a recently introduced sub-Nyquist sampling scheme for effective acquisition of inphase and quadrature (I/Q) components of sparse radio frequency signals. In applications to pulse-Doppler radars, the QuadCS outputs can be arranged into a two-dimensional data format, in terms of slow time and virtual fast time, similar to that by Nyquist sampling. This paper develops a compressive sampling pulse-Doppler (CoSaPD) processing scheme which performs Doppler estimation/detection and range estimation from the sub-Nyquist data without recovering the Nyquist samples. The Doppler estimation is realized through a spectrum analyzer as in classical processing, whereas the detection is performed using the Doppler bin data. The range estimation is performed using sparse recovery algorithms only for the detected targets to reduce the computational load. A low detection threshold is used to improve the detection probability and the introduced false targets are then removed in the range estimation stage by exploiting the inherent target detection capability of the recovery algorithms. Simulation results verify the effectiveness of the proposed CoSaPD scheme, which requires only one-eighth of the Nyquist rate to achieve similar performance to the classical processing with Nyquist samples, provided that the input signal-to-noise ratio (SNR) is above ???25 dB.
机译:正交压缩采样(QuadCS)是最近推出的次奈奎斯特采样方案,用于有效采集稀疏射频信号的同相和正交(I / Q)分量。在脉冲多普勒雷达的应用中,QuadCS输出可以按照慢速时间和虚拟快速时间排列成二维数据格式,类似于奈奎斯特采样法。本文提出了一种压缩采样脉冲多普勒(CoSaPD)处理方案,该方案从子奈奎斯特数据执行多普勒估计/检测和距离估计,而无需恢复奈奎斯特样本。如经典处理中那样,通过频谱分析仪来实现多普勒估计,而使用多普勒频段数据进行检测。仅针对检测到的目标使用稀疏恢复算法执行范围估计,以减少计算量。低检测阈值用于提高检测概率,然后通过利用恢复算法的固有目标检测能力在范围估计阶段中删除引入的错误目标。仿真结果验证了所提出的CoSaPD方案的有效性,只要输入信噪比(SNR)高于??,该方案仅需要奈奎斯特速率的八分之一即可达到与使用奈奎斯特采样的经典处理相似的性能。 25 dB。

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