共形阵列非圆信号波达方向估计算法

Direction of arrival estimation for noncircular signals using conformal array

  • 摘要: 受共形载体变曲率结构的影响,各天线单元指向不尽相同,使得共形天线阵列呈现极化多样性。因此,共形天线阵列的建模过程中需考虑不同阵元的极化响应特性。基于柱面共形天线阵列的快拍数据模型,利用非圆信号的特性对阵列输出进行扩展,基于秩亏理论和子空间原理实现信号波达方向(DOA)估计,所提方法估计精度高,不需要参数配对。存在相干信源时,提出对扩展后的虚拟阵列进行划分,对划分出的子阵进行虚拟的空间平滑,实现解相干的预处理操作。仿真结果表明该方法能有效应用于柱面共形阵列非圆信号DOA估计,并提高了空间分辨率。

     

    Abstract: The pattern of each element in the conformal array has different orientations caused by the variable curvature of the conformal platform, which results in the polarization diversity of the conformal array. The polarization parameters of incident signals are considered in the array output data model. Based on the model of the cylindrical platform, the array output is extended by using the noncircular source property of the received signals, and the rank-reduction(RARE) estimator, subspace principle are adopted to estimate the direction-of-arrival(DOA). The proposed algorithm can achieve high-resolution without parameter matching. In the case of coherent sources, virtual spatial smoothing algorithm for decorrelating the signals is presented with the subarray of the extended virtual array. Simulation results verify that the proposed algorithm is effective in DOA estimation for noncircular signals based on cylindrical array with high resolution.

     

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