Multiple constraint space-time direct data domain approach using nonuniformly, semicircular and sinusoidal spaced arrays of real elements

H. Elkamchouchi, D. Mohamed, W. Ali
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Abstract

A Direct Data Domain Least Squares (D3LS) approach is developed for multiple target detection in Space Time Adaptive Processing (STAP) and is applied on signal received from different configurations of real elements. We are interested in three different kinds of antenna configuration which are non-uniformly spaced linear array, semicircular array and sinusoidal spaced array. The mutual coupling between real elements will affect on the estimation of complex amplitude of Signal of Interest (SOI). It is necessary to use a transformation matrix to compensate for the strong mutual coupling that exists between the antenna elements. Then, we will apply the multiple constrained STAP D3LS on the compensated voltages. Numerical simulations are done using the three main methods of D3LS namely the forward, backward, and the forward-backward methods and it show that multiple beams are directed towards target directions maintaining their gains constrained along those directions.
多约束时空直接数据域方法采用实数元的非均匀、半圆和正弦间隔阵列
针对空时自适应处理(STAP)中的多目标检测问题,提出了一种直接数据域最小二乘(D3LS)方法,并将其应用于不同实测点结构的信号检测。我们对三种不同的天线结构感兴趣,即非均匀间隔线性阵列、半圆阵列和正弦间隔阵列。实元间的相互耦合会影响感兴趣信号复幅值的估计。有必要使用变换矩阵来补偿天线单元之间存在的强相互耦合。然后,我们将多重约束STAP D3LS应用于补偿电压。采用D3LS的三种主要方法即前向、后向和前向后向进行了数值模拟,结果表明多波束被引导到目标方向,并保持了沿目标方向的增益约束。
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