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A WAVEFORM COVARIANCE MATRIX FOR HIGH SINR AND LOW SIDE-LOBE LEVELS

机译:高SINR和低侧凸水平的波形协方差矩阵

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In this work to exploit the benefits of both multiple-input multiple-output (MIMO)-radar and phased-array a waveform covariance matrix is proposed. Our analytical results show that the proposed covariance matrix yields gain in signal-to-interference-plus-noise ratio (SINR) compared to MIMO-radar while the gain in SINR is close to phased-array and recently proposed phased-MIMO scheme. Transmitted waveforms with the proposed covariance matrix, at the receiver, significantly supress the side-lobe levels compared to phased-array, MIMO-radar, and phased-MIMO schemes. Moreover, in contrast to phased-MIMO our proposed scheme allows same power transmission from each antenna. Simulation results validate the analytical results.
机译:在这项工作中,利用多输入多输出(MIMO)-Radar和相控阵的优势,提出了波形协方差矩阵。我们的分析结果表明,与MIMO-雷达相比,所提出的协方差矩阵产生信号到干扰噪声比(SINR)的增益,而SINR中的增益接近相位阵列和最近提出的相位MIMO方案。与分阶段阵列,MIMO-雷达和相控 - MIMO方案相比,在接收器中与所提出的协方差矩阵传输的波形显着抑制了侧瓣水平。此外,与相算MIMO相比,我们所提出的方案允许来自每个天线的相同电力传输。仿真结果验证了分析结果。

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