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Two-Dimensional Adaptive Array Beamforming With Multiple Beam Constraints Using a Generalized Sidelobe Canceller

机译:广义旁瓣抵消器的多波束约束二维自适应阵列波束成形

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摘要

This paper deals with the problem of two-dimensional (2-D) adaptive array beamforming with multiple beam constraints (MBC) using a generalized sidelobe canceller (GSC). We present a method for the construction of signal blocking matrix required by the 2-D GSC. The resulting 2-D adaptive beamformer can provide almost the same performance as conventional 2-D adaptive beamformers based on a linearly constrained minimum variance (LCMV) criterion. The effectiveness of the proposed GSC is that the construction of the required signal blocking matrix requires only the computation of a few entries from analytical formulas. In comparison with conventional methods, the proposed technique gets rid of the computational complexity due to the eigendecom-position required for finding the 2-D signal blocking matrix. For dealing with the performance degradation due to coherent interference, we present a 2-D weighted spatial smoothing scheme to effectively alleviate the coherent jamming effect. Several simulation examples are provided for illustration and comparison.
机译:本文使用广义旁瓣抵消器(GSC)处理具有多个波束约束(MBC)的二维(2-D)自适应阵列波束成形问题。我们提出了一种构建二维GSC所需的信号阻塞矩阵的方法。基于线性约束最小方差(LCMV)准则,所得的2-D自适应波束形成器可以提供与常规2-D自适应波束形成器几乎相同的性能。提出的GSC的有效性在于,所需信号阻塞矩阵的构建仅需要从解析公式中计算一些条目。与传统方法相比,由于找到二维信号阻塞矩阵所需的特征分解,所提出的技术摆脱了计算复杂性。为了应对由于相干干扰而导致的性能下降,我们提出了一种二维加权空间平滑方案,以有效缓解相干干扰效应。提供了几个仿真示例以进行说明和比较。

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