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首页> 外文期刊>IEEE Transactions on Image Processing >Signal-to-noise ratio and autocorrelation function of the image intensity in coherent systems. Sub-Rayleigh and super-Rayleigh conditions
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Signal-to-noise ratio and autocorrelation function of the image intensity in coherent systems. Sub-Rayleigh and super-Rayleigh conditions

机译:相干系统中图像强度的信噪比和自相关函数。子瑞利和超瑞利条件

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摘要

This paper is devoted to developing a scattering model for coherent imaging systems. It describes the statistical properties of the image intensity due to the distribution of scatterers on a subresolution scale. The roughness of the scatterers' strength, the randomness of the spatial architecture, and the birth-death process of the scattering centers are considered. Two parameters of the image intensity are examined for the characterization of the scattering medium: 1) the signal-to-noise ratio (SNR), which permits the distinguishing of sub-Rayleigh (SNR>1) from super-Rayleigh (SNR<1) conditions and 2) the correlation coefficient. These parameters permit the estimation of the roughness and randomness degrees of the structure. The model is then extended to account for specular effects and applied to sea clutter. A quantitative treatment of the spatial and temporal correlation characteristics, based on a physical understanding of the underlying process, is derived. Experimental results are presented to validate the model.
机译:本文致力于为相干成像系统开发散射模型。它描述了由于散射在亚分辨率尺度上的分布而导致的图像强度的统计特性。考虑了散射体强度的粗糙度,空间结构的随机性以及散射中心的生灭过程。检查图像强度的两个参数以表征散射介质:1)信噪比(SNR),可区分子瑞利(SNR> 1)与超瑞利(SNR <1) )条件和2)相关系数。这些参数允许估计结构的粗糙度和随机度。然后将模型扩展以考虑镜面反射效应,并将其应用于海杂波。基于对基本过程的物理理解,得出了对空间和时间相关性特征的定量处理。实验结果被提出来验证该模型。

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