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Adaptive detection algorithm for full pixel targets in hyperspectral images

机译:高光谱图像全像素目标的自适应检测算法

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摘要

The problem of full pixel target detection (FPTD) in hyperspectral images assuming that the target spectral signature is known is considered. Most of the detection algorithms proposed in the literature for FPTD have been derived from the additive model (AM) assumption. Since the AM is not appropriate to describe the FPTD problem, we resort to the more realistic replacement target model (RTM). It exploits the fact that in FPTD problems the target completely fills the image pixel obscuring or replacing the background. The derivation of an RTM-based detection strategy is one of the original contributions of this work. It is assumed that both the background and the target classes are characterised by the Gaussian model and that the two classes share the same covariance matrix. Assuming that both the background mean vector and the covariance matrix are unknown, the fully adaptive detector (FAD) is derived. It is shown that the performances of the FAD in typical operating conditions can be approximated by those of the adaptive detector (AD) derived by assuming that the background mean vector is known. The AD is theoretically analysed, its performances are derived and its CFAR behaviour is demonstrated. It is also stated that, in practice, the AD design methodology can be adopted to design FAD automatic target detectors. This issue is proved by simulation in a case study in which the model parameters are estimated from a hyperspectral dataset acquired by the airborne visible/infrared imaging spectrometer (AVIRIS).
机译:考虑假设目标光谱特征已知的高光谱图像中的全像素目标检测(FPTD)问题。文献中针对FPTD提出的大多数检测算法均来自加性模型(AM)假设。由于AM不适合描述FPTD问题,因此我们诉诸更现实的替代目标模型(RTM)。它利用了以下事实:在FPTD问题中,目标完全填充了遮盖或替换背景的图像像素。基于RTM的检测策略的派生是这项工作的最初贡献之一。假设背景类别和目标类别均由高斯模型表征,并且两个类别共享相同的协方差矩阵。假设背景均值向量和协方差矩阵均未知,则导出全自适应检测器(FAD)。结果表明,在典型工作条件下,FAD的性能可以通过假设背景均值矢量已知的自适应检测器(AD)的性能来近似。从理论上分析了AD,推导了其性能并演示了CFAR行为。还指出,在实践中,可以采用AD设计方法来设计FAD自动目标检测器。在一个案例研究中通过仿真证明了此问题,在该案例研究中,模型参数是从机载可见/红外成像光谱仪(AVIRIS)获取的高光谱数据集中估算出来的。

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