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Quaternion-based worst case constrained beamformer based on electromagnetic vector-sensor arrays

机译:基于电磁矢量传感器阵列的基于四元数的最坏情况约束波束形成器

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A robust adaptive beamforming scheme based on two-component electromagnetic (EM) vector-sensor arrays is proposed by extending the well-known worst-case constraint into the quaternionic domain. After defining the uncertainty set of the desired signal's quaternionic steering vector, two quaternion-based constrained minimization problems are derived. We then reformulate them into two real-valued convex quadratic problems, which can be easily solved via the second-order cone (SOC) programming approach. Numerical simulations show that our quaternion-based robust beamformer significantly outperforms the sample matrix inversion minimum variance distortionless response (SMI-MVDR) beamformer and the quaternion Capon (Q-Capon) beamformer in the presence of steering vector mismatches.
机译:通过将众所周知的最坏情况约束扩展到四元离子域,提出了一种基于二元电磁(EM)矢量传感器阵列的鲁棒自适应波束形成方案。在定义了所需信号的四元数导引向量的不确定性集之后,得出了两个基于四元数的约束最小化问题。然后,我们将它们重新构造为两个实值凸二次问题,可以通过二阶圆锥(SOC)编程方法轻松解决。数值模拟表明,在存在转向矢量不匹配的情况下,基于四元数的鲁棒波束形成器明显优于样本矩阵求逆最小方差无失真响应(SMI-MVDR)波束形成器和四元数Capon(Q-Capon)波束形成器。

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