MIMO beamforming using quasi-orthogonal ultrawideband-impulse waveforms

M. Hussain
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引用次数: 5

Abstract

In this paper, the principles of multiple-input-multiple-output (MIMO) array beamforming based on quasi-orthogonal ultrawideband-impulse (UWBI) signals and the conventional narrowband-sinusoidal (NBS) signals are described in the time domain. Mathematical models of quasi-orthogonal UWBI signals and NBS signals modulated according to the Mary phase-shift-keying (PSK) scheme are first presented. The models are then used to derive and plot the average-power pattern of a coherent MIMO beamforming system typically considered for enhancing the resolution performance of an imaging radar. Computer plots of the MIMO beam patterns obtained for the quasi-orthogonal UWBI-PSK and NBS-PSK signals clearly demonstrate that the angular-resolution performance of MIMO beamforming based on UWBI-PSK signals is superior to that based on NBS-PSK signals. Improvement in resolution angle and peak-sidelobe level can be achieved by a trade-off between the design parameters of the UWBI-PSK signals and the MIMO array.
准正交超宽带脉冲波形的MIMO波束形成
本文介绍了基于准正交超宽带脉冲(UWBI)信号和传统窄带正弦信号的多输入多输出(MIMO)阵列波束形成的时域原理。首先建立了基于多相移键控(PSK)调制的准正交UWBI信号和NBS信号的数学模型。然后使用这些模型推导和绘制相干MIMO波束形成系统的平均功率方向图,通常考虑用于提高成像雷达的分辨率性能。对准正交UWBI-PSK和NBS-PSK信号的MIMO波束图进行计算机绘制,结果表明,基于UWBI-PSK信号的MIMO波束形成的角分辨性能优于基于NBS-PSK信号的MIMO波束形成。通过在UWBI-PSK信号和MIMO阵列的设计参数之间进行权衡,可以提高分辨率角和峰值旁瓣电平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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