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Ground-based interferometric synthetic aperture radar-based atmospheric phase compensation method

机译:地基干涉合成孔径雷达大气相位补偿方法

摘要

The present invention relates to the technical field of synthetic aperture radar, and in particular to a ground-based interference synthetic aperture radar-based atmospheric phase compensation method. The present invention first uses the inverse fast Fourier transform algorithm to rapidly and effectively realize the focusing in the range and cross-range dimension. Then a triple threshold method which combines coherence coefficient, amplitude, and amplitude dispersion index is used to select reliable PS points. Finally, under a full consideration of the spatial correlation of the atmospheric phase, the atmospheric phase is estimated by using a two-dimensional-polynomial model. The present invention can rapidly and accurately estimate and compensate the atmospheric phase, is helpful in improving the accuracy of GB-InSAR real-time measurement, and valuable and universal in practical application.
机译:本发明涉及合成孔径雷达技术领域,尤其涉及一种基于地面干扰的基于合成孔径雷达的大气相位补偿方法。本发明首先使用快速傅里叶逆变换算法来快速有效地实现在范围和跨范围维度上的聚焦。然后结合相干系数,幅度和幅度色散指数的三阈值方法来选择可靠的PS点。最后,在充分考虑大气相的空间相关性的情况下,通过使用二维多项式模型来估算大气相。本发明能够快速,准确地估计和补偿大气相位,有助于提高GB-InSAR实时测量的精度,在实际应用中具有重要的通用性。

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