首页> 外文会议>IASTED International Conference on Signal and Image Processing >MATERIAL CHARACTERISTICS IN FOURIER DOMAIN (MCFD) FORMULATION, A SIGNATURE TO DETERMINE SOIL TYPE, MOISTURE, AND VEGETATION HEALTH, BASED ON MULTILAYER GROUND PENETRATING RADAR REFLECTION
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MATERIAL CHARACTERISTICS IN FOURIER DOMAIN (MCFD) FORMULATION, A SIGNATURE TO DETERMINE SOIL TYPE, MOISTURE, AND VEGETATION HEALTH, BASED ON MULTILAYER GROUND PENETRATING RADAR REFLECTION

机译:傅立叶域(MCFD)配方中的材料特征,基于多层地面渗透雷达反射来确定土壤类型,水分和植被健康的签名

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The ground penetrating radar (GPR) incident wave to ground is not totally reflected, part of it travels to the next layer, and its intensity and form depends on the boundary reflectivity and the type of materials in the experiment. It is observed that the reflected wave is attenuated, convolved, and compressed differently, as it travels through distinct materials. A material characteristic in Fourier domain (MCFD) is defined and calculated at every reflection. It is possible to determine the characteristics of the media by using the wavelet of the electromagnetic signal before and after it is reflected from the media. An algorithm is developed which calculated MCFD trains a 2-layer Back-propagation Neural Network (NN). This NN is further linked to second NN that determines the material moisture. Material type can be determined irregardless of the layer at which the object is buried (limited to GPR reflection intensity level), object size, or if an extended subsurface layer is present It was also found that by using the MCFD, vegetation could be classified according to its health using GPR This is a great advantage in terms of higher resolution achievable by active as opposed to passive satellites in the measurements of vegetation health index.
机译:地面穿透雷达(GPR)入射波没有完全反射,一部分行进到下一层,其强度和形式取决于边界反射率和实验中的材料类型。观察到,当通过不同的材料时,反射波被衰减,卷曲和压缩。在每次反射时定义和计算傅里叶域(MCFD)中的材料特性。通过在从介质中反射之前和之后,可以通过使用电磁信号的小波来确定介质的特性。开发了一种算法,该算法计算出MCFD列出2层背部传播神经网络(NN)。该NN进一步与确定材料水分的第二NN相连。可以确定物质类型的图像埋下的层(限于GPR反射强度水平),对象尺寸,或者如果存在扩展的地下层,还发现,通过使用MCFD,可以按照植被进行分类利用GPR的健康,这是在植被健康指标测量中的无源卫星实现的最高分辨率方面是一个很大的优势。

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