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Time-Domain Simulation of Along-Track Interferometric SAR for Moving Ocean Surfaces

机译:移动海洋表面沿航迹干涉SAR的时域模拟

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A time-domain simulation of along-track interferometric synthetic aperture radar (AT-InSAR) has been developed to support ocean observations. The simulation is in the time domain and based on Bragg scattering to be applicable for moving ocean surfaces. The time-domain simulation is suitable for examining velocities of moving objects. The simulation obtains the time series of microwave backscattering as raw signals for movements of ocean surfaces. In terms of realizing Bragg scattering, the computational grid elements for generating the numerical ocean surface are set to be smaller than the wavelength of the Bragg resonant wave. In this paper, the simulation was conducted for a Bragg resonant wave and irregular waves with currents. As a result, the phases of the received signals from two antennas differ due to the movement of the numerical ocean surfaces. The phase differences shifted by currents were in good agreement with the theoretical values. Therefore, the adaptability of the simulation to observe velocities of ocean surfaces with AT-InSAR was confirmed.
机译:已经开发了一种沿时干涉合成孔径雷达(AT-InSAR)的时域仿真,以支持海洋观测。该模拟是在时域中进行的,基于布拉格散射,适用于移动海洋表面。时域仿真适用于检查运动对象的速度。该模拟获得微波反向散射的时间序列,作为海洋表面运动的原始信号。就实现布拉格散射而言,用于生成数字海洋表面的计算网格元素被设置为小于布拉格共振波的波长。在本文中,对带有电流的布拉格共振波和不规则波进行了仿真。结果,由于数字海洋表面的运动,来自两个天线的接收信号的相位不同。电流偏移的相位差与理论值非常吻合。因此,证实了该模拟对于用AT-InSAR观测海面速度的适应性。

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