Iterative Adaptive Approach Based on Long-time Coherent Integration Outputs

Zichen Kong, J. Tian, Chen Ning, W. Cui
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Abstract

Wideband radar systems have excellent target imaging and recognition performance because of high range resolution. However, range migration occurred in long-time coherent processing and range-Doppler sidelobes may deteriorate the performance of wideband radar systems seriously, especially in multi-target scenarios. To address the two problems above, a fast iterative adaptive approach based on long-time coherent integration outputs is proposed for wideband range-Doppler imaging. The proposed algorithm first correct range migration by Keystone transform and then suppress sidelobes of targets based on the long-time coherent integration outputs within a small processing window around mainlobes. The computational complexity of the proposed method can be further reduced thanks to employing a threshold criterion and exploiting the structure of the covariance matrix. The performance of the proposed algorithm is demonstrated by numerical examples.
基于长时间相干积分输出的迭代自适应方法
宽带雷达系统由于距离分辨率高,具有良好的目标成像和识别性能。然而,在长时间相干处理过程中发生的距离偏移和距离-多普勒副瓣会严重影响宽带雷达系统的性能,特别是在多目标情况下。针对上述两个问题,提出了一种基于长时间相干积分输出的宽带距离多普勒成像快速迭代自适应方法。该算法首先通过Keystone变换对距离偏移进行校正,然后在主叶瓣周围的小处理窗口内,利用长时间相干积分输出抑制目标的副瓣。采用阈值准则和利用协方差矩阵的结构进一步降低了该方法的计算复杂度。通过数值算例验证了该算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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