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Analyses of the performance of adaptive subspace detector on fluctuating target detection in system-dependent clutter background

机译:系统相关杂波背景下自适应子空间检测器对波动目标检测的性能分析

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摘要

The adaptive subspace detector in system-dependent clutter background (SDC-ASD) is proved to be able to improve the detection performance for deterministic target detection in the authors' previous study. However, the exact performance of the SDC-ASD for fluctuating target detection is still unknown. In this study, with the aid of matrix decomposition theory, the analytical performance of the SDC-ASD for detecting fluctuating target is considered and assessed. At the design stage, the rigorous mathematical derivation processes for the exact theoretical detection performance of the SDC-ASD for fluctuating target detection is derived. The theoretical results, which have explicitly expressions for both the false alarm probability and the detection probability, not only provide an effective mathematical method to analyse the fluctuating target detection performance, but also can further simplify the deterministic target detection assessments. At the analysis stage, Monte Carlo simulations are resorted to validate the analytical results. Numerical experiments are conducted to assess the effectiveness of the SDC-ASD for fluctuating target detection. Results show that the SDC-ASD, by dealing separately with the clutter and the noise, performs the best in comparison with its published counterparts, i.e. the generalised likelihood ratio detectors, the adaptive matched filters, the adaptive subspace detectors and the low-rank detectors based on sample covariance matrix.
机译:在作者先前的研究中,系统依赖杂波背景下的自适应子空间检测器(SDC-ASD)被证明能够提高确定性目标检测的检测性能。但是,仍然不清楚SDC-ASD用于波动目标检测的确切性能。在这项研究中,借助矩阵分解理论,考虑并评估了SDC-ASD用于检测波动目标的分析性能。在设计阶段,得出了用于波动目标检测的SDC-ASD精确理论检测性能的严格数学推导过程。理论结果对误报概率和检测概率都有明确的表述,不仅为分析波动目标检测性能提供了一种有效的数学方法,而且可以进一步简化确定性目标检测的评估。在分析阶段,采用蒙特卡洛模拟来验证分析结果。进行了数值实验,以评估SDC-ASD对波动目标检测的有效性。结果表明,与DCDC-ASD分别处理杂波和噪声相比,SDC-ASD的性能优于已发布的同类产品,即广义似然比检测器,自适应匹配滤波器,自适应子空间检测器和低秩检测器基于样本协方差矩阵

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