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Recovery guarantees for high resolution radar sensing with compressive illumination

机译:具有压缩照明的高分辨率雷达检测的恢复保障

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We present a compressive radar design that combines multitone linear frequency modulated (LFM) waveforms on transmit with classical stretch processor and sub-Nyquist sampling on receive. The proposed compressive illumination scheme has much fewer random elements compared to previously proposed compressive radar designs based on stochastic waveforms, resulting in reduced storage and complexity for implementation. We present bounds on the operator norm and mutual coherence of the sensing matrix of the proposed scheme and show that for sufficiently large number of modulating tones, high resolution range recovery is guaranteed for a sparse scene using sampling rates that scale linearly with the scene sparsity. Simulation results are presented to study recovery performance as a function of system parameters for targets both on and off the grid. In addition, we present experimental results using a high speed digital waveform generator and a custom designed analog stretch processor.
机译:我们介绍了一种压缩雷达设计,将多个线性频率调制(LFM)波形相结合,在接收上的典型拉伸处理器和子奈奎斯特采样上的发送。与先前提出的基于随机波形的压缩雷达设计相比,所提出的压缩照明方案具有更少的随机元素,导致储存和复杂性降低。我们在所提出的方案的传感矩阵的运营商规范和相互连贯性的界限,并且表明,对于足够大量的调制音调,使用与场景稀疏性线性缩放的采样率来保证稀疏场景的高分辨率范围恢复。提出了仿真结果,以研究恢复性能作为网格上的目标的系统参数的函数。此外,我们使用高速数字波形发生器和定制设计的模拟拉伸处理器呈现实验结果。

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