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Water level change time series extraction of Yellow River Delta based on small baseline subset approach

机译:基于小基线子集方法的黄河三角洲水位改变时间序列提取

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The water level change has a great impact on the composition of plant species, the variety of the species and the succession of the colony of the Yellow River Delta wetland. However, due to the lack of enough hydrological sites, it is very difficult to obtain the water level change of the wetlands, especially those covered with vegetation. Synthetic aperture radar Interferometry (InSAR) has been proposed and used to solve the problem. However, with limited InSAR pairs, water level change time series cannot be obtained. In this paper, an InSAR time series analysis method called small baseline subset approach (SBAS) has been used to solve this problem. A total of 13 scenes of PALSAR L band SAR images are used for small baseline subset analysis. Only interferometric pairs with average coherence above 0.3 in the region of interest (wetlands with vegetation cover) are selected. Then small baseline subset approach was applied to interferograms after flattening, removal of the phase of terrain, filtering and phase unwrapping using minimum cost flow algorithm. Finally time series of relative water level change from June 28th, 2007 to December 31th, 2008 was obtained. Preliminary results on test sites showed an approximate linear-rate water level change. Our experiments showed the feasibility and potential of wetland water level change monitoring using SBAS.
机译:水平变化对植物物种的组成,种类的种类和黄河三角洲湿地殖民地的成分产生了很大影响。然而,由于缺乏足够的水文遗址,很难获得湿地的水位变化,尤其是植被覆盖的水平。已经提出了合成孔径雷达干涉测量法(INSAR)并用于解决问题。然而,通过有限的INSAR对,无法获得水位变化时间序列。在本文中,已用于解决此问题的小基线子集方法(SBA)的Insar时间序列分析方法。总共13个Palsar L频带SAR图像用于小基线子集分析。仅选择在感兴趣区域(具有植被覆盖的湿地)的平均相干的干涉对。然后将小基线子集方法应用于平整后的干扰图,从而使用最小成本流量算法去除地形,滤波和相位展开的阶段。最后,从2007年6月28日到2008年12月31日开始的相对水平变化的时间系列。测试站点的初步结果显示了近似的线性速率水位变化。我们的实验表明,使用SBA的湿地水位变更监测的可行性和潜力。

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