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Fully Quaternion-Valued Adaptive Beamforming Based on Crossed-Dipole Arrays

机译:基于交叉偶极子阵列的完全四元数值自适应波束形成

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摘要

Based on crossed-dipole antenna arrays, quaternion-valued data models have been developed for both direction of arrival estimation and beamforming in the past. However, for almost all the models, and especially for adaptive beamforming, the desired signal is still complex-valued as in the quaternion-valued Capon beamformer. Since the complex-valued desired signal only has two components, while there are four components in a quaternion, only two components of the quaternion-valued beamformer output are used and the remaining two are simply discarded, leading to significant redundancy in its implementation. In this work, we consider a quaternion-valued desired signal and develop a fully quaternion-valued Capon beamformer which has a better performance and a much lower complexity. Furthermore, based on this full quaternion model, the robust beamforming problem is also studied in the presence of steering vector errors and a worst-case-based robust beamformer is developed. The performance of the proposed methods is verified by computer simulations.
机译:基于交叉偶极子天线阵列,过去已经开发了用于到达方向估计和波束成形的四元数值数据模型。但是,对于几乎所有模型,尤其是对于自适应波束成形,所需的信号仍然像四元数值的Capon波束成形器一样是复值的。由于复值期望信号仅具有两个分量,而在四元数中有四个分量,因此仅使用四元数值波束形成器输出的两个分量,而其余两个分量则被简单地丢弃,从而导致其实现上的大量冗余。在这项工作中,我们考虑了四元数值的期望信号,并开发了一种具有更好性能和更低复杂度的全四元数值的Capon波束形成器。此外,基于这个完整的四元数模型,还研究了在存在转向矢量误差的情况下的鲁棒波束形成问题,并开发了基于最坏情况的鲁棒波束形成器。通过计算机仿真验证了所提出方法的性能。

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  • 作者

    Lan X.; Liu W.;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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