Robust Widely Linear Reduced-Rank Adaptive Beamforming Based on Joint Iterative Optimization

Yonghua Wang, Lei Huang, Yunmei Shi
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引用次数: 4

Abstract

Based on joint iterative optimization, a robust widely linear (WL) reduced-rank minimum variance distortion less response (MVDR) beam forming algorithm is proposed for noncircular signals. To handle the issue of the mismatch between the presumed array steering vector and actual array steering vector, a diagonal loading technique is devised. As the proposed beam former takes advantage of the noncircular properties of source signals, it performs better than the reduced-rank robust joint iterative optimization (JIO) and the WL reduced-rank JIO adaptive beam formers. Simulation results shows that the proposed beam former provides faster convergence speed, larger output signal-to-interference-plus-noise gain and less mean square errors than the existing approaches.
基于联合迭代优化的鲁棒宽线性降阶自适应波束形成
针对非圆信号,提出了一种基于联合迭代优化的鲁棒宽线性(WL)降阶最小方差失真响应(MVDR)波束形成算法。为了解决假设的阵列转向矢量与实际的阵列转向矢量不匹配的问题,设计了一种对角加载技术。该波束形成方法利用了源信号的非圆特性,优于降阶鲁棒联合迭代优化(JIO)和WL降阶JIO自适应波束形成方法。仿真结果表明,与现有方法相比,该波束形成器具有更快的收敛速度、更大的输出信噪比增益和更小的均方误差。
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