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Introduction of sensor spectral response into image fusion methods. Application to wavelet-based methods

机译:将传感器光谱响应引入图像融合方法。在基于小波的方法中的应用

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摘要

Usual image fusion methods inject features from a high spatial resolution panchromatic sensor into every low spatial resolution multispectral band trying to preserve spectral signatures and improve spatial resolution to that of the panchromatic sensor. The objective is to obtain the image that would be observed by a sensor with the same spectral response (i.e., spectral sensitivity and quantum efficiency) as the multispectral sensors and the spatial resolution of the panchromatic sensor. But in these methods, features from electromagnetic spectrum regions not covered by multispectral sensors are injected into them, and physical spectral responses of the sensors are not considered during this process. This produces some undesirable effects, such as resolution overinjection images and slightly modified spectral signatures in some features. The authors present a technique which takes into account the physical electromagnetic spectrum responses of sensors during the fusion process, which produces images closer to the image obtained by the ideal sensor than those obtained by usual wavelet-based image fusion methods. This technique is used to define a new wavelet-based image fusion method.
机译:通常的图像融合方法将来自高空间分辨率全色传感器的特征注入到每个低空间分辨率多光谱带中,以保持光谱特征并将空间分辨率提高到全色传感器的分辨率。目的是获得具有与多光谱传感器和全色传感器的空间分辨率相同的光谱响应(即,光谱灵敏度和量子效率)的传感器将观察到的图像。但是在这些方法中,来自电磁频谱区域的未被多光谱传感器覆盖的特征被注入到其中,并且在此过程中未考虑传感器的物理频谱响应。这会产生一些不良影响,例如分辨率过高的注入图像和某些特征中的光谱特征稍有修改。作者提出了一种在融合过程中考虑传感器物理电磁频谱响应的技术,该技术产生的图像比通过常规基于小波的图像融合方法获得的图像更接近于理想传感器所获得的图像。该技术用于定义一种新的基于小波的图像融合方法。

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