首页> 外文会议>Geoscience and Remote Sensing Symposium, 1996. IGARSS '96. 'Remote Sensing for a Sustainable Future.', International >Signal processing aspects of polarimetric random noise radar data for shallow subsurface imaging
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Signal processing aspects of polarimetric random noise radar data for shallow subsurface imaging

机译:浅层地下成像的极化随机噪声雷达数据的信号处理方面

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摘要

A novel polarimetric random noise radar system has been developed by the University of Nebraska for shallow subsurface probing applications. The radar system has been fabricated and tested, and its initial performance has been found to be quite satisfactory in detecting and locating buried objects. The system produces images of the co-polarized amplitude, cross-polarized amplitude, depolarization ratio, and polarization phase difference of the radar reflected signal as the antennas are scanned over the surface below which the objects are buried. Various signal processing algorithms are being explored to enhance target detection and clutter suppression. Since the radar system provides polarization phase differences between the orthogonal receive channels, algorithms based on Stokes matrix processing are being explored to detect and identify specific targets. One of the main advantages of Stokes matrix processing is in detecting long and slender cylindrical targets, which are not clearly detected in the conventional images. Furthermore, the optimal use of thresholding and smoothing operations to reduce and eliminate clutter is being examined. Examples of the pre-processed and post-processed images are presented.
机译:内布拉斯加大学开发了一种新颖的极化随机噪声雷达系统,用于浅层地下探测应用。雷达系统已经过制造和测试,其初始性能在检测和定位掩埋物体方面非常令人满意。当天线在掩埋物体的表面下扫描时,该系统生成雷达反射信号的同极化幅度,交叉极化幅度,去极化率和极化相位差的图像。正在探索各种信号处理算法以增强目标检测和杂波抑制。由于雷达系统在正交接收通道之间提供极化相位差,因此正在探索基于斯托克斯矩阵处理的算法来检测和识别特定目标。 Stokes矩阵处理的主要优点之一是可以检测到细长的圆柱形目标,而在常规图像中无法清楚地检测到这些目标。此外,正在研究最佳使用阈值和平滑操作来减少和消除混乱。给出了预处理图像和后处理图像的示例。

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