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Analysis of space–time adaptive processing performance using K-means clustering algorithm for normalisation method in non-homogeneity detector process

机译:非均质检测器过程中使用K-means聚类归一化方法进行时空自适应处理性能分析

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摘要

This study describes the performance analysis of the non-homogeneity detector (NHD) with various normalisation methods for the space–time adaptive processing (STAP) of airborne radar signals under the non-homogeneous clutter environments. The authors can calculate a threshold value from the statistical analysis of generalised inner product (GIP) using the normalisation method using mean, median and the K-means clustering algorithm of training data snapshots in the NHD process. The selected homogeneous data using the threshold value are used to recalculate covariance matrix of the total interference. To evaluate the performance of the covariance matrix, the authors calculated the eigenspectra and signal to interference noise ratio (SINR) loss. The accuracy of the recalculated covariance matrix is verified by the modified sample matrix inversion (MSMI) test statistic for the target detection. Projection statistics (PS) based on GIP is also used to compare the performance of detecting single and multiple targets. The authors' simulation results demonstrate that the K-means clustering algorithm as a normalisation method for both GIP and GIP-based PS can improve the STAP performance in the severe non-homogeneous clutter environment even under the multiple targets scenarios, compared to the other normalisation methods.
机译:这项研究描述了非均匀性检测器(NHD)在非均匀性杂波环境下对机载雷达信号进行时空自适应处理(STAP)的各种归一化方法的性能分析。作者可以使用NHD过程中训练数据快照的均值,中位数和K-均值聚类算法的归一化方法,根据广义内积(GIP)的统计分析来计算阈值。使用阈值选择的均质数据用于重新计算总干扰的协方差矩阵。为了评估协方差矩阵的性能,作者计算了本征谱和信噪比(SINR)损失。重新计算的协方差矩阵的准确性通过用于目标检测的改进的样本矩阵求逆(MSMI)测试统计数据进行验证。基于GIP的投影统计(PS)也用于比较检测单个和多个目标的性能。作者的仿真结果表明,与其他归一化方法相比,K-均值聚类算法作为针对GIP和基于GIP的PS的归一化方法,即使在多目标场景下,也可以提高严重非均匀杂波环境下的STAP性能。方法。

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  • 来源
    《Signal Processing, IET》 |2011年第2期|p.113-120|共8页
  • 作者

    Kang S.; Ryu J.; Lee J.; Jeong J.;

  • 作者单位

    Department of Computer and Radio Communication Engineering, Korea University, 1, 5 Ka, Anam-dong, Sungbuk-ku, Seoul 136-713, Korea;

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  • 正文语种 eng
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