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Wide band SAR sub-band splitting and inter-band coherence measurements

机译:宽带SAR子带分割和带间相干测量

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摘要

Range resolution of SAR images is determined by transmitted radar signal bandwidth. Most recent SAR sensors use wide band signals in order to achieve metric range resolution, whereas metric azimuth resolution can be achieved in spotlight mode. As an example, ENVISAT ASAR sensor uses a 15-MHz bandwidth chirp whereas TerraSAR-X spotlight mode uses signals having a 150-MHz bandwidth leading to a potentially 10 times higher resolution. One can also take advantage of wide band to split the full band into sub-bands and generate several lower resolution images from a single acquisition, each being centred on slightly different frequencies. These sub-images can then be used in a classical interferometric process to measure inter-band coherence of a given scene. This inter-band coherence reveals scatterers keeping a stable-phase behaviour along with frequency shift. A simple coherence model derived from Zebker model for randomly distributed surface scatterers is proposed. Examples are presented, showing that scatterers can have a behaviour that deviates from the model, leading to a new information channel.
机译:SAR图像的距离分辨率取决于发射的雷达信号带宽。最新的SAR传感器使用宽带信号以获得公制范围分辨率,而公制方位角分辨率可以在聚光灯模式下实现。例如,ENVISAT ASAR传感器使用15 MHz带宽的线性调频脉冲,而TerraSAR-X聚光灯模式使用150 MHz带宽的信号,导致分辨率可能提高10倍。还可以利用宽带将整个频带划分为多个子频带,并通过一次采集生成几个较低分辨率的图像,每个图像都以略微不同的频率为中心。然后,可以在经典的干涉测量过程中使用这些子图像来测量给定场景的带间相干性。这种带间相干性揭示了散射体保持了稳定的相位行为以及频移。提出了一种从Zebker模型导出的简单随机模型,用于随机分布的表面散射体。给出了一些示例,这些示例显示了散射体的行为可能会偏离模型,从而导致新的信息渠道。

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