Nanjing Institute of Electronic Technology, Najing 210039, China.
National Laboratory of Radar Signal Processing, Xidian University, Xi'an 710071, China.
Sensors (Basel). 2023 Apr 28;23(9):4375. doi: 10.3390/s23094375.
Colocated multiple-input multiple-output (MIMO) radar can transmit a group of distinct waveforms via its colocated transmit antennas and the waveform diversity leads to several advantages in contrast to conventional phased-array radar. The performance depends highly on the degrees available, and element spacing can be deemed as another source of degrees of freedom. In this paper, we study the joint waveform and element spacing optimization problem. A joint waveform and array optimization criterion is proposed to match the transmit beampattern, the suppression range, and the angular sidelobes, under the constraints of minimal element spacing and total array aperture. Meanwhile, the effect of receive beamforming on suppressing mutual correlation between returns from different spatial directions is also incorporated into the optimization criterion. The optimization problem is solved by the sequential quadratic programming algorithm. Numerical results indicate that with more degrees of freedom from array spacings, colocated MIMO radar achieves a better transmit beampattern matching performance and a lower sidelobe level, compared with a fixed half-wavelength spaced array, but the benefits from additional degrees of freedom from array spacing optimization have a limit.
共置多发多收(MIMO)雷达可以通过其共置发射天线发送一组不同的波形,与传统相控阵雷达相比,波形分集具有多个优势。性能高度依赖于自由度的数量,并且单元间距可以视为自由度的另一个来源。在本文中,我们研究了联合波形和单元间距优化问题。提出了一种联合波形和阵列优化准则,以在最小单元间距和总阵列孔径的约束下匹配发射波束图、抑制范围和角旁瓣,同时将接收波束形成对抑制来自不同空间方向的回波之间的互相关的影响也纳入到优化准则中。优化问题通过序列二次规划算法求解。数值结果表明,与固定半波长间距阵列相比,共置 MIMO 雷达具有更多的单元间距自由度,可以实现更好的发射波束图匹配性能和更低的旁瓣电平,但来自额外自由度的好处单元间距优化有一定的限制。