一种具有抗互耦和误校正鲁棒性的新型盲自适应波束形成器

M. Y. Yagan, A. Coşkun, A. E. Pusane
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引用次数: 0

摘要

从多天线无线通信系统、通信情报和雷达目标探测的角度来看,在发射端或接收端使用的波束成形技术都实现了卓越的服务质量。尽管在理想的工作条件下具有压倒性的优势,但由于未知的相互耦合效应和校准错误的阵列元件,波束形成方法面临着严重的性能下降。作为一种很有前途的解决方案,盲波束形成器被提出作为一类不需要参考信号来工作的接收器波束形成器。本文提出了一种新型的基于梯度的盲波束形成器,目的是减轻未知互耦或误校准效应的恶化影响。结果表明,该方法可以在存在一些未知缺陷(如相互耦合效应、增益和相位变化引起的误校准效应、天线位置不准确)的情况下找到不同天线阵列配置下的最优权重。通过对不同阵列配置的数值结果,以及与其他现有方法的基准测试,表明该算法在许多方面都具有优越的性能。此外,为了验证目的,还包括了基于测量的分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Blind Adaptive Beamformer with Robustness against Mutual Coupling and Miscalibration Effects
Beamforming techniques utilized either at the transmitter or the receiver terminals have achieved superior quality-of-service performances from both the multi-antenna wireless communications systems, communications intelligence and radar target detection perspectives. Despite the overwhelming advantages in ideal operating conditions, beamforming approaches have been shown to face substantial performance degradations due to unknown mutual coupling effects and miscalibrated array elements. As a promising solution, blind beamformers have been proposed as a class of receiver beamformers that do not require a reference signal to operate. In this paper, a novel gradient-based blind beamformer is introduced with the aim of mitigating the deteriorating effects of unknown mutual coupling or miscalibration effects. The proposed approach is shown to find the optimal weights in different antenna array configurations in the presence of several unknown imperfections (e.g., mutual coupling effects, miscalibration effects due to gain and phase variations, inaccurate antenna positions). By providing numerical results related to the proposed algorithm for different array configurations, and bench-marking with the other existing approaches, the proposed scheme has been shown to achieve superior performance in many aspects. Additionally, a measurement-based analysis has been included with validation purposes.
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