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An Efficient Algorithm for Direction Finding against Unknown Mutual Coupling

机译:一种有效的针对未知互耦的测向算法

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摘要

In this paper, an algorithm of direction finding is proposed in the presence of unknown mutual coupling. The preliminary direction of arrival (DOA) is estimated using the whole array for high resolution. Further refinement can then be conducted by estimating the angularly dependent coefficients (ADCs) with the subspace theory. The mutual coupling coefficients are finally determined by solving the least squares problem with all of the ADCs utilized without discarding any. Simulation results show that the proposed method can achieve better performance at a low signal-to-noise ratio (SNR) with a small-sized array and is more robust, compared with the similar processes employing the initial DOA estimation and further improvement iteratively.
机译:本文提出了一种在未知相互耦合的情况下的测向算法。使用高分辨率的整个阵列估计初步到达方向(DOA)。然后可以通过用子空间理论估计角度相关系数(ADC)来进行进一步的优化。互耦系数最终通过使用所有使用的ADC求解最小二乘问题来确定,而不丢弃任何一个。仿真结果表明,与采用初始DOA估计的类似过程相比,该方法能够在低信噪比(SNR)下以较小的阵列实现更好的性能,并且更加健壮。

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