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预测系数作约束条件的自适应基阵处理

ADAPTIVE ARRAY PROCESSING USING PREDICTED COEFFICIENTS AS CONSTRAINED CONDITIONS

  • 摘要: 线性约束的自适应阵处理算法的优点是突出的,但它需要预先知道感兴趣方向上基阵信号的频率特性并由此预先给出自适应迭代运算的约束条件。
    对于频率特性未知的情况,本文提出了自适应基阵处理的新方法。在实际情况下容易得到的是观测方向上的功率谱估计,而不是频率特性。这时可将最大熵谱分析与自适应阵处理结合起来,由测量到的功率谱可计算出自相关函数,由求解相关矩阵的正则方程可得到最大熵方法的预测系数,而预测系数可用作自适应阵处理的约束条件。
    本文还提出了在观测方向上,信号完全未知的更广泛的情况下,自适应基阵处理的新方法。首先用频率域全通的约束条件完成自适应基阵的空间滤波,并估计自适应阵输出的功率谱。然后用上面提到的方法,用预测系数作约束条件的自适应基阵处理器,完成空间——频率域的最佳过滤。
    最后进行了一系列计算机模拟实验,并给出了计算机模拟实验的结果。

     

    Abstract: The algorithm for linearly constrained adaptive processing has outstanding advantages, but in this algorithm, the frequency characteristics o?the array signal in the direction of interest must be given and the constrained conditions be derived from the given frequency characterictics.
    When the frequency characteristics is unknown, a new method for adaptive array processing is described. In the practical situations, it is easy to obtain the estimation of the power spectrum in the observed direction instead of the frequency characteristics. Then the maximum entropy spectral analysis can be incorporated with the adaptive array processing. The autocorrelation function can be calculated from the power spectrum and the predicted coefficients of MEM can be obtained by solving the normal equation of the correlation matrix. The predicted coefficients can be used as the constrained conditions of the algoithm for the adaptive array processing..
    In this paper a new method of array processing is presented for the more general cases, in which the signal characteristics in the observed direction are completely unknown. Firstly, the space filtering of the adaptive array is performed by the all-pass constrained conditions in frequency domain and the power spectrum in the output of the array processor is estimated. Secondly, by using the above mentioned method, the space-frequency domain optimum filtering is performed by the adaptive array processor using predicted coefficients as constrained conditions.
    A series of computer simulation experiments have been conducted, and the results are presented at the end of the paper.

     

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