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Hyperbola summation based synthetic aperture radar technique for ground penetrating radar image focusing

机译:基于双曲线求和的合成孔径雷达技术用于探地雷达图像聚焦

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Ground-penetrating radar (GPR) is a remote sensing technique used to obtain information on subsurface features from data collected over the surface. The process of collecting data may be viewed as mapping from the object space to an image space. Since most GPRs use broad beamwidth antennas, the energy reflected from a buried structure is recorded over a large lateral aperture in the image space. A B-scan GPR image contains underground scatterers which exhibit defocused, hyperbolic characteristics. This is mainly due to the data collection scheme and the finite beam width of the main lobe of the GPR antenna. To invert this undesirable effect and obtain focused images, various migration or focusing algorithms have been developed. The algorithm in this paper analyzes received data of a shallow buried targets. The practical usage of this algorithm is tested on both simulated and experimental data. We have taken measurements using Stepped Frequency Continuous Wave(SFCW) radar set up. The proposed algorithm is applied to B-scan GPR images to enhance its resolution quality. The resultant images depicted an enhanced resolution characteristics after application of proposed algorithm.
机译:探地雷达(GPR)是一种遥感技术,用于从地面上收集的数据中获取地下特征信息。收集数据的过程可以看作是从对象空间到图像空间的映射。由于大多数GPR使用宽波束宽度天线,因此从掩埋结构反射的能量记录在图像空间中的较大横向孔径上。 B扫描GPR图像包含具有散焦,双曲线特征的地下散射体。这主要是由于数据收集方案和GPR天线主瓣的有限波束宽度所致。为了反转这种不良影响并获得聚焦图像,已经开发了各种迁移或聚焦算法。本文中的算法分析了浅埋目标的接收数据。在模拟和实验数据上都测试了该算法的实际用法。我们使用步进频率连续波(SFCW)雷达装置进行了测量。该算法被应用于B扫描GPR图像,以提高其分辨率质量。应用所提出的算法后,所得图像表现出增强的分辨率特性。

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