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适用于自然地表形变反演的小基线集方法
An Improved Small Baseline Subset Method for Deformation Retrieval of Natural Terrains

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黄俊松 1   曾琪明 1 *   高胜 1,2   焦健 1   胡乐银 3  
文摘 由于自然地表像元在长期观测中容易发生时空失相干,利用时序InSAR(Synthetic Aperture Radar Interferometry)技术对其开展形变监测会面临可用形变测量点不足的挑战。针对这一问题,提出一种改进的小基线(Small Baseline Subset,SBAS)方法。该方法改进了传统SBAS中初始高相干像元筛选及相位滤波过程:首先利用拟合优度检验,并结合相干性阈值条件来识别同质像元;然后根据同质像元数量将所有像元分成2部分,即PS(Persistent Scatterers)候选点和DS(Distributed Scatterers)候选点;其次分别在这两部分像元中开展初始高相干PS点及DS点筛选;最后对选出的高相干PS点及DS点进行加权相位滤波。利用覆盖北京平原区西北部(含城区及山区)的27景ENVISAT ASAR影像开展的形变监测实验表明:与2个参考方法相比,该方法能够有效扩展形变结果上的测量点数量和覆盖范围,测量点数量分别提高了22.6%及27.6%,且自然地表的形变测量点密度得到了明显提升。同时,研究区形变结果与4个连续GPS站的位移数据有很好的一致性,证明了该方法在地表形变反演中的有效性及优越性。
其他语种文摘 Owning to that the pixels in natural terrains are prone to spatial-temporal decorrelation during the long-term observation, using time-series InSAR (Synthetic Aperture Interferometry) technique to carry out deformation monitoring of natural terrains will face the challenge of lacking of available deformation measurement points. To solve this problem, an improved Small Baseline Subset (SBAS) method is proposed. It improves the selection process of initial high coherent pixels and phase filtering in conventional SBAS. Firstly, it uses the goodness of fit and the coherence threshold condition to identify statistically homogeneous pixels (SHP). After this, all pixels are divided into two parts base on the number of SHP, i.e. Persistent Scatterers (PS) candidates and Distributed Scatterers (DS) candidates. Then, initial high coherent PS and DS are selected from these two parts respectively. Finally those selected high coherent PS and DS are filtered by a weighted phase filter. The deformation monitoring experiment with 27 ENVISAT ASAR images, acquired over the northwest part of Beijing plain shows that: compared with StaMPS-PS (refers to the PS-InSAR in StaMPS) method and StaMPS-SBAS (refers to the SBAS in StaMPS) method, the improved method can effectively extend the quantity and coverage of deformation measurement points. The quantity of measurement points is increased by 22.6% and 27.6% respectively, and the deformation result of natural terrains is improved effectively. The deformation result of this study area is in good agreement with the displacement of 4 continuous GPS stations. Experimental results prove the effectiveness and superiority of this method in the inversion of ground deformation.
来源 地球信息科学学报 ,2018,20(4):440-451 【核心库】
DOI 10.12082/dqxxkx.2018.170579
关键词 SBAS ; 形变 ; 时序InSAR ; PS-InSAR ; PS ; DS
地址

1. 北京大学遥感与地理信息系统研究所, 北京, 100871  

2. 中国科学院电子学研究所, 北京, 100190  

3. 北京市地震局, 北京, 100080

语种 中文
文献类型 研究性论文
ISSN 1560-8999
学科 测绘学
基金 国家重点研发计划 ;  内蒙古自治区科技厅"数字化矿区资源管理与矿区生态环境监测技术与应用"项目
文献收藏号 CSCD:6216733

参考文献 共 28 共2页

1.  Hanssen R F. Radar interferometry data interpretation and error analysis. Journal of the Graduate School of the Chinese Academy of Sciences,2001,2(1):V5-577-V5-580 CSCD被引 2    
2.  Hooper A. A new method for measuring deformation on volcanoes and other natural terrains using InSAR persistent scatterers. Geophysical Research Letters,2004,31(23):1-5 CSCD被引 154    
3.  高胜. 永久散射体雷达干涉研究综述. 遥感技术与应用,2016,31(1):86-94 CSCD被引 7    
4.  Berardino P. A new algorithm for surface deformation monitoring based on small baseline differential SAR interferograms. IEEE Transactions on Geoscience and Remote Sensing,2002,40(11):2375-2383 CSCD被引 591    
5.  Schmidt D. Time-dependent land uplift and subsidence in the Santa Clara Valley, California. Journal of Geophysical Research Solid Earth,2003,108(B9):ETG 4-1 CSCD被引 16    
6.  Gong W. Comparison of small baseline interferometric SAR processors for estimating ground deformation. Remote Sensing,2016,8(4):330 CSCD被引 2    
7.  Hooper A. A multi-temporal InSAR method incorporating both persistent scatterer and small baseline approaches. Geophysical Research Letters,2008,35(16):96-106 CSCD被引 89    
8.  Lanari R. A small-baseline approach for investigating deformations on full-resolution differential SAR interferograms. Geoscience & Remote Sensing IEEE Transactions on,2004,42(7):1377-1386 CSCD被引 100    
9.  范锐彦. InSAR时序分析高相干目标选取方法比较研究. 地球信息科学学报,2016,18(6):805-814 CSCD被引 4    
10.  Mora O. Linear and nonlinear terrain deformation maps from a reduced set of interferometric SAR images. IEEE Transactions on Geoscience & Remote Sensing,2003,41(10):2243-2253 CSCD被引 95    
11.  陈强. 干涉雷达永久散射体自动探测--算法与实验结果. 测绘学报,2006,35(2):112-117 CSCD被引 28    
12.  曲世勃. PSDInSAR的永久散射体时序选择方法. 电子与信息学报,2011,33(2):381-387 CSCD被引 1    
13.  Hooper A. StaMPS/MTI manual. Delft institute of earth observation and space systems delft university of technology, Kluyverweg,2010,1:2629 CSCD被引 1    
14.  Wegmuller U. GAMMA IPTA Processing Example Luxemburg, GAMMA Technical Report,2005 CSCD被引 1    
15.  丁伟. PSInSAR点目标提取及相位解缠技术研究,2011 CSCD被引 5    
16.  Ferretti A. A new algorithm for processing interferometric data-stacks: SqueeSAR. IEEE Transactions on Geoscience and Remote Sensing,2011,49(9):3460-3470 CSCD被引 121    
17.  Kvam P H. Nonparametric statistics with applications to science and engineering,2007 CSCD被引 9    
18.  Ferretti A. Permanent scatterers in SAR interferometry. IEEE Transactions on geoscience and remote sensing,2001,39(1):8-20 CSCD被引 509    
19.  罗小军. 时序差分雷达干涉中永久散射体的自动探测. 西南交通大学学报,2007,42(4):414-418 CSCD被引 13    
20.  Xia Y. Homogeneous pixel selection for distributed scatterers using multitemporal SAR data stacks,2016 CSCD被引 2    
引证文献 2

1 李路 改进的SBAS技术在矿区地表沉降监测中的应用 测绘科学,2020,45(10):92-101
CSCD被引 1

2 张志亮 利用结合土地覆盖类型的自适应DS-InSAR方法监测矿区地表形变 北京大学学报. 自然科学版,2024,60(2):265-276
CSCD被引 0 次

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