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Cognitive sub-Nyquist hardware prototype of a collocated MIMO radar

机译:认知子奈奎斯特的配套MIMO雷达的硬件原型

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We present the design and hardware implementation of a radar prototype that demonstrates the principle of a sub-Nyquist collocated multiple-input multiple-output (MIMO) radar. The setup allows sampling in both spatial and spectral domains at rates much lower than dictated by the Nyquist sampling theorem. Our prototype realizes an X-band MIMO radar that can be configured to have a maximum of 8 transmit and 10 receive antenna elements. We use frequency division multiplexing (FDM) to achieve the orthogonality of MIMO waveforms and apply the Xampling framework for signal recovery. The prototype also implements a cognitive transmission scheme where each transmit waveform is restricted to those pre-determined subbands of the full signal bandwidth that the receiver samples and processes. Real-time experiments show reasonable recovery performance while operating as a 4 × 5 thinned random array wherein the combined spatial and spectral sampling factor reduction is 87.5% of that of a filled 8 × 10 array.
机译:我们介绍了雷达原型的设计和硬件实现,该原型展示了子奈奎斯特分割的多输入多输出(MIMO)雷达的原理。该设置允许以低于奈奎斯特采样定理的速率下的空间和光谱域中的抽样。我们的原型实现了一种X波段MIMO雷达,其可以被配置为具有最多8个发射和10个接收天线元件。我们使用频分复用(FDM)来实现MIMO波形的正交性,并应用Xampling框架进行信号恢复。原型还实现认知传输方案,其中每个发送波形被限制为接收器样本和过程的完整信号带宽的那些预定的子带。实时实验显示合理的恢复性能,同时作为4×5稀薄的随机阵列操作,其中组合的空间和光谱采样因子减少为填充的8×10阵列的87.5%。

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