Adapting a MIMO/phased-array radar transmit beampattern to target location

D. Fuhrmann, J. P. Browning, M. Rangaswamy
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引用次数: 4

Abstract

Proposed MIMO and hybrid MIMO/phased array (HMPAR) radar systems have the potential for tremendous flexibility in the choice of the transmit beampattern, through the selection of multiple transmitted signals. This paper considers how one might exploit that flexibility in light of prior information or uncertainty in target spatial location, for parameter estimation or tracking applications. We first consider an idealized problem of distributing energy across multiple target sites given a prior probability distribution on those sites. It shown that the optimal allocation of energy would be proportional to the square root of the prior probability. Second, we propose a method to approximate this optimal distribution of energy using a MIMO radar or HMPAR radar system. The method chooses signals that realize an intrapulse beamscan over the region of interest, with a nonuniform distribution of scan points matched to the desired distribution of energy.
使MIMO/相控阵雷达发射波束图适应目标位置
MIMO和混合MIMO/相控阵(HMPAR)雷达系统通过选择多个发射信号,在选择发射波束模式方面具有巨大的灵活性。本文考虑了如何根据先验信息或目标空间位置的不确定性来利用这种灵活性,用于参数估计或跟踪应用。我们首先考虑一个理想问题,即在给定多个目标点上的先验概率分布的情况下,在这些点上分配能量。结果表明,能量的最优分配与先验概率的平方根成正比。其次,我们提出了一种使用MIMO雷达或HMPAR雷达系统来近似这种最佳能量分布的方法。该方法选择在感兴趣的区域上实现脉冲内波束扫描的信号,扫描点的非均匀分布与期望的能量分布相匹配。
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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