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Adaptive detection of distributed targets in compound-Gaussian clutter with inverse gamma texture

机译:具有反伽马纹理的复合高斯杂波中分布式目标的自适应检测

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摘要

The problem of coherent detection for distributed target in compound-Gaussian clutter with inverse gamma texture is studied and three detectors. One-step generalized likelihood ratio test (GLRT), maximum a-posteriori GLRT and two-step GLRT, are proposed respectively in a Bayesian architecture. Resultantly, these detectors have similar detection structures with their test statistics modulated by the shape and scale parameters of the texture. Alternatively, they can be reformulated into another form with their test statistics associated with the scale parameter and detection thresholds related with the shape parameter. And this detection structure can be seen as a matched filter form with a shape-parameter-dependent threshold like the detectors for point target. Subsequently, the proposed detectors are compared with two-step GLRT based on compound-Gaussian clutter without considering texture model, their detection performances are evaluated, and their robustness are analyzed via Monte Carlo simulations. Results enlighten us that: (1) the three Bayesian detectors bear pretty much the same detection performances; (2) the detection performances fluctuate more intensely when the shape parameter or the scale parameter is smaller; (3) the shape parameter has more influences on the detection performances than the scale parameter, as it is an indication of the clutter impulsiveness.
机译:研究了具有反伽马纹理的复合高斯杂波中分布式目标的相干检测问题和三个检测器。在贝叶斯架构中分别提出了一步广义似然比检验(GLRT),最大后验GLRT和两步GLRT。结果,这些检测器具有相似的检测结构,其测试统计量由纹理的形状和比例参数调制。或者,可以将它们的测试统计信息与比例参数和与形状参数相关的检测阈值重新组合为另一种形式。这种检测结构可以看作是匹配滤波器形式,具有与形状参数相关的阈值,就像用于点目标的检测器一样。随后,在不考虑纹理模型的情况下,将所提出的检测器与基于复合高斯杂波的两步GLRT进行了比较,评估了它们的检测性能,并通过蒙特卡洛模拟分析了其鲁棒性。结果启发我们:(1)三个贝叶斯检测器具有几乎相同的检测性能; (2)当形状参数或比例尺参数较小时,检测性能波动较大; (3)形状参数比比例参数对检测性能的影响更大,因为它表示杂波的冲动。

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