Li Wanru, Deng Ke
Faculty of Electronic and Information Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Sensors (Basel). 2022 Jul 21;22(14):5435. doi: 10.3390/s22145435.
In this paper, a novel two-stage subspace-based direction of arrival (DOA) estimation algorithm with the nested array is proposed for mixed signals containing circular and non-circular ones. By exploiting the difference between the two types of steering vectors, the DOAs of circular signals are estimated in the first stage. After eliminating the estimated information of circular signals by the covariance matrix reconstruction and oblique projection methods, the dimensions of the noise subspace are increased in estimating the DOAs of non-circular signals in the second stage. Through the two-stage estimation, the DOAs of the circular and non-circular signals are estimated separately and different types of signals with similar or the same DOAs can be distinguished. Furthermore, to avoid the two-dimensional (2-D) search with huge computational burden, a one-dimensional (1-D) search method exploiting the rank deficiency is proposed in the DOA estimation for non-circular signals. The simulation results show that the proposed algorithm can effectively improve the estimation accuracy and resolution probability, especially when circular and non-circular signals have similar DOAs.
针对包含循环信号和非循环信号的混合信号,本文提出了一种基于嵌套阵列的新颖两阶段子空间波达方向(DOA)估计算法。通过利用两类导向矢量之间的差异,在第一阶段估计循环信号的波达方向。在通过协方差矩阵重构和斜投影方法消除循环信号的估计信息后,在第二阶段估计非循环信号的波达方向时增加噪声子空间的维度。通过两阶段估计,分别估计循环信号和非循环信号的波达方向,并且可以区分具有相似或相同波达方向的不同类型信号。此外,为避免具有巨大计算负担的二维(2-D)搜索,在非循环信号的DOA估计中提出了一种利用秩亏缺的一维(1-D)搜索方法。仿真结果表明,所提算法能有效提高估计精度和分辨概率,尤其是当循环信号和非循环信号具有相似波达方向时。