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增强型偏移跟踪方法:为城市地区 DInSAR 相位滤波提供辅助信息。

An Enhanced Offset Tracking Method: Providing Auxiliary Information for DInSAR Phase Filtering in Urban Areas.

机构信息

Key Laboratory of Radar Technology and Application, School of Information Engineering, Inner Mongolia University of Technology, Hohhot 010051, China.

出版信息

Sensors (Basel). 2023 Apr 7;23(8):3802. doi: 10.3390/s23083802.

Abstract

In the application of synthetic aperture radar differential interferometry in urban environments, it is easy to regard the phase change in the deformation band of buildings under construction as noise that requires filtering. This introduces an error into the surrounding area while over-filtering, resulting in an error in the magnitude of the deformation measurement results for the entire region and the loss of deformation details in the surrounding area. Based on the traditional DInSAR workflow, this study added a deformation magnitude identification step, determined the deformation magnitude by using enhanced offset tracking technology, supplemented the filtering quality map and removed the construction areas that affect the interferometry in the filtering stage. The enhanced offset tracking technique adjusted the ratio of contrast saliency and coherence via the contrast consistency peak in the radar intensity image, which was used as the basis for adjusting the adaptive window size. The method proposed in this paper was evaluated in an experiment on a stable region using simulated data and in an experiment on a large deformation region using Sentinel-1 data. The experimental results show that the enhanced method has a better anti-noise ability than the traditional method, and the accuracy rate is improved by about 12%. The supplemented quality map can effectively remove the large deformation area to prevent over-filtering while ensuring the filtering quality, and it can achieve better filtering results.

摘要

在合成孔径雷达差分干涉技术在城市环境中的应用中,很容易将建筑物施工变形带中的相位变化视为需要过滤的噪声。这会在过度过滤周围区域时引入误差,从而导致整个区域的变形测量结果的幅度误差和周围区域的变形细节丢失。本研究基于传统 DInSAR 工作流程,添加了一个变形幅度识别步骤,通过增强型偏移跟踪技术确定变形幅度,补充滤波质量图,并在滤波阶段去除影响干涉测量的施工区域。增强型偏移跟踪技术通过雷达强度图像中的对比度一致性峰值调整对比度显著性和相干性的比例,作为调整自适应窗口大小的依据。本文提出的方法在使用模拟数据的稳定区域实验和使用 Sentinel-1 数据的大变形区域实验中进行了评估。实验结果表明,增强方法比传统方法具有更好的抗噪能力,准确率提高了约 12%。补充的质量图可以有效地去除大变形区域,防止过度过滤,同时保证滤波质量,从而实现更好的滤波效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/673a/10140909/4a01cc0e3545/sensors-23-03802-g001.jpg

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