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Two Novel Two-Stage Direction of Arrival Estimation Algorithms for Two-Dimensional Mixed Noncircular and Circular Sources

机译:二维混合非圆形和圆形源的两种新颖的两阶段到达方向估计算法

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This paper addresses the two-dimensional (2D) direction-of-arrival (DOA) estimation problem with two novel methods for mixed noncircular and circular signals. The first proposed method is named the two-stage direction-of-arrival matrix (TSDOAM) method, and the other is called the two-stage rank reduction (TSRARE) method. The proposed methods utilize both the circularity and the direction-of-arrival differences between the noncircular and circular sources to estimate the 2D directions-of-arrival (DOAs). The maximum detectable 2D angle parameters of the TSDOAM and TSRARE methods are twice those of the existing methods. Moreover, the TSRARE method can detect more incident signals than the TSDOAM method due to the array aperture of two parallel uniform linear arrays (ULAs) being fully utilized. Simulation results show that compared to the existing methods for the small angle separation of 2D directions-of-arrival, the two proposed methods perform well in terms of the signal-to-noise ratio (SNR) and snapshots.
机译:本文使用两种用于混合非圆形和圆形信号的新颖方法来解决二维(2D)到达方向(DOA)估计问题。提出的第一种方法称为两阶段到达方向矩阵(TSDOAM)方法,另一种方法称为两阶段秩减少(TSRARE)方法。所提出的方法利用非圆形和圆形源之间的圆度和到达方向的差异来估计二维到达方向(DOA)。 TSDOAM和TSRARE方法的最大可检测2D角度参数是现有方法的两倍。此外,由于充分利用了两个平行均匀线性阵列(ULA)的阵列孔径,TSRARE方法比TSDOAM方法可以检测更多的入射信号。仿真结果表明,与现有的二维到达方向小角度分离方法相比,两种方法在信噪比和快照方面均表现良好。

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