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利用 PUNet 和 Weibull 模型融合的 SBAS-InSAR 监测矿区非线性大梯度沉降。

Monitoring nonlinear large gradient subsidence in mining areas through SBAS-InSAR with PUNet and Weibull model fusion.

机构信息

College of Geoscience and Surveying Engineering, China University of Mining and Technology-Beijing, Beijing, China.

Beijing Vastitude Technology Co., Ltd., Beijing, China.

出版信息

Environ Sci Pollut Res Int. 2024 Aug;31(40):52815-52826. doi: 10.1007/s11356-024-34678-9. Epub 2024 Aug 20.

DOI:10.1007/s11356-024-34678-9
PMID:39160409
Abstract

The subsidence of the earth's surface in mining areas is characterized by fast speed and large gradients. Conventional small baseline subset interferometric synthetic aperture radar (SBAS-InSAR) monitoring can significantly underestimate results, making it challenging to capture the surface's temporal subsidence features. In this context, this paper proposes a method for monitoring subsidence in mining areas. It utilizes a phase unwrapping network (PUNet) and a fused Weibull model within the SBAS-InSAR framework to address nonlinear and large-gradient subsidence. The basic principle of this method is to first process the SAR images using the small baseline method to obtain the differential interferogram, utilizing the PUNet to obtain reliable large-gradient unwrapped phases. Next, the Weibull model parameters of each pixel are calculated based on the unwrapped phase, and the temporal subsidence of each point on the surface is determined using the calculated parameters. This method introduces a nonlinear model into the SBAS-InSAR solution, which is more consistent with the subsidence characteristics of mining areas. Through experimentation in a backfilled mining working face, the proposed method in this paper yields superior monitoring results compared to conventional approaches.

摘要

矿区地表沉降的特点是速度快、坡度大。传统的小基线子集干涉合成孔径雷达(SBAS-InSAR)监测方法可能会显著低估结果,难以捕捉地表的时间沉降特征。在这种情况下,本文提出了一种矿区沉降监测方法。它利用相位展开网络(PUNet)和 SBAS-InSAR 框架内的融合威布尔模型来解决非线性和大坡度沉降问题。该方法的基本原理是首先使用小基线法处理 SAR 图像,以获得差分干涉图,然后利用 PUNet 获得可靠的大坡度展开相位。接下来,根据展开相位计算每个像素的威布尔模型参数,并使用计算得到的参数确定表面各点的时间沉降。该方法将非线性模型引入到 SBAS-InSAR 解算中,与矿区沉降特征更加一致。通过在回填采场的实验,本文提出的方法比传统方法具有更好的监测结果。

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