首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到17条相似文献,搜索用时 125 毫秒
1.
提出一种改进的永久散射体PS(Persistent Scatterer)探测方法,首先基于时序SAR影像的振幅信息,利用振幅和振幅离差指数双阈值法获取PS候选点,然后根据干涉相位空间相关性,对所有候选点进行相位稳定性分析,筛选出既满足雷达反射强度高、又符合散射稳定性要求的真实PS点,最后基于所选PS点提取形变信息。选取上海市局部区域作为实验区,以16幅TerraSAR-X(TSX)影像为数据源,进行PS探测和形变信息提取。结果表明,相比于已有的PS探测方法,本文方法能够更准确、可靠地识别出时序SAR影像中的PS点。形变结果显示,研究区域内最大沉降速率为-51mm/a,平均沉降速率为-15.8mm/a,以水准实测数据进行检核,验证了基于改进的PS探测方法进行地表形变信息提取结果的可靠性。  相似文献   

2.
应用永久散射体雷达干涉(PSI)技术进行地表沉降监测研究,对PSI建模时采用的各相位分量的空间相关特性和沉降结果精度进行详细分析。试验选取覆盖上海地区的16幅高分辨率TerraSAR-X(TSX)SAR影像为数据源,进行PSI建模、形变提取和精度分析,并使用地面水准数据进行对比验证。结果表明,根据PS各相位分量的空间相关特性进行PS点的识别是合理的。与水准数据对比,两类年沉降速率结果具有很好的一致性,差异均值和标准偏差分别为1.6 mm/a和±4.6 mm/a,最小和最大差异量分别为0.198 7 mm/a和10.132 mm/a,证实了PSI技术在上海地区地表沉降监测的应用是有效和可靠的。  相似文献   

3.
基于时序SAR影像准确识别PS是永久散射体合成孔径雷达干涉(PSI)技术建模及形变信息提取中最为关键的问题之一。本文提出了一种改进的PS探测算法,它是基于时序SAR影像的振幅信息,利用振幅和振幅离差指数双阈值法获取PS候选点,对所有候选点进行相位稳定性分析,筛选出既满足雷达反射强度高、又符合散射稳定性要求的真实PS点,并基于所选PS点提取形变信息。实验结果表明,相比于已有PS探测方法,本文所提出的方法能够更准确、可靠地识别出时序SAR影像中的PS目标,进而提高了PSI形变探测结果的精度和可靠性。  相似文献   

4.
利用高分辨率聚束模式TerraSAR-X影像的PSInSAR监测地表变形   总被引:1,自引:0,他引:1  
利用20景于2010-03~2010-11期间采集的高分辨率聚束(1m分辨率)模式的TerraSAR-X SAR数据,采用永久散射体干涉测量技术(PSInSAR)获取了西藏羊八井地区由地热电站开采地下水引起的地面沉降。结果显示,羊八井地热电站周边及地热开采井地区在2010年期间的地面沉降速率最大达到25mm·a-1,而盆地其他地区的地面平均沉降速率为1mm·a-1。将其与ASAR获取的平均沉降速率结果对比,两者的相关性达到了0.76,这说明TerraSAR-X高分辨率SAR数据不仅可以提供高密度PS点,而且更好地体现了散射体的细节变化和微量位移情况。  相似文献   

5.
唐嘉  刘国祥  宋云帆  陈巍  于冰  吴松波  张瑞  邓琳 《遥感学报》2015,19(6):1019-1029
永久散射体雷达干涉(PSI)已被广泛应用于城市缓慢沉降监测,但针对显著性地表沉降监测及PSI适用性的探讨较少。本文选取天津市与廊坊市城郊结合部的典型工业化城镇为研究区,分别以2007至2010年间的23幅L波段(23.6 cm)ALOS PALSAR影像和2007至2009年间的23幅C波段(5.6 cm)ENVISAT ASAR影像为数据源,使用基于相位空间相关性分析的PSI方法进行时空沉降提取,并对两个平台的结果进行对比分析和交叉验证。在此基础上,结合长短波SAR对沉降敏感性不同的特征探讨该PSI方法应用于显著沉降解算的可靠性,并结合地质条件及地下水开采信息对实验区沉降的时空分布进行深入分析和解释。研究表明,两平台的沉降结果十分吻合,在沉降漏斗区二者均方根误差(RMSE)为6.5 mm/a;实验区地表沉降呈现出显著的非均匀性,最大沉降速率超过200 mm/a,造成严重沉降的主要原因为地下水的大量开采;证实了PSI方法在显著地表沉降监测方面的有效性和可靠性。  相似文献   

6.
利用2011年10月—2013年7月间获取的37景TerraSAR-X高分辨率条带模式SAR数据,采用干涉测量点目标分析(interferometric point target analysis,IPTA)技术得到常州地区因工厂集中开采地下水所引起的地表沉降信息,即常州市武进地区有多处地表沉降,在2011—2013年间最大沉降速率为31.494 mm/a。通过与Envisat ASAR数据获取的平均沉降速率对比,说明TerraSAR-X数据不仅可以提高永久散射体(permanment scatter,PS)的点密度,而且能更好地描述散射体的细节变化和微量位移情况,体现出TerraSAR-X数据监测地表形变的优势。沈海高速公路常州沿线地面沉降的监测结果表明:TerraSAR-X数据在人工线状地物形变监测中具有广阔的应用前景;IPTA监测结果与水准测量结果具有较好的一致性,表明将IPTA技术应用于城市地表形变监测的正确性。  相似文献   

7.
利用时序InSAR反演常州市地表沉降速率   总被引:2,自引:1,他引:1  
利用25景Envisat ASAR数据和29景高分辨率(3 m分辨率)TerraSAR-X数据,采用永久散射体干涉测量技术(PSInSAR)研究了常州市2004-2014年的地表沉降速率。结果显示,常州市的主要沉降区域发生在武进区,存在2个主要的沉降中心和1个大范围的沉降条带,2004-2010年间的地表沉降速率达到26 mm/a,2010-2014年间沉降速率变缓,最大为24 mm/a。两组数据同时段的沉降量相关性达到0.78,并利用研究区域同期水准数据检验了本文的研究结果,两者的平均速率差值均在5 mm/a以内,表明时序InSAR技术反演结果的可靠性和精度。X波段高分数据监测到C波段无法监测的高速路段存在5.3 mm/a的沉降速率,与水准结果的RMS分别为2.5、4.2 mm/a,表明TerraSAR-X比Envisat ASAR不仅具有更高密度的PS点,并且探测目标的位移具有更高的灵敏度和更高的精度。  相似文献   

8.
以徐州北部重要煤矿产地沛县为例,采用永久散射体时序分析技术(PS-In SAR)对2007~2011年间的18景ALOS PALSAR影像进行时序分析,反演了该地区这4 a间由于煤矿开采造成的地表形变过程。实验结果表明,(1)实验区域存在两处较大矿区形变,分别为沛城煤矿和孔庄煤矿,其沉降中心区沉降速率分别达到-38 mm/y和-18 mm/y,且与实际矿区的空间分布位置一致;(2)受孔庄煤矿开采的影响,沛县北部的省道321以及县内道路沉降也较为明显,沉降速率为-8 mm/y;(3)其他形变区域中心形变速率为-6^-16 mm/y。  相似文献   

9.
为削弱常规卫星DInSAR技术在区域地表形变探测应用中时空失相关与大气延迟的负面影响,探索和发展了基于永久散射体(PS)观测网络建模与参数稳健估计的算法并开发一套完整的计算程序,可达到分离和提取线性与非线性形变时间序列、地形数据误差与大气信号的目的。以上海市沉降场为对象,选取1992~2002年间ERS-1/2卫星所获取的26幅SAR影像为源数据,分别开展模拟和真实数据的实验,证实该算法和计算程序是有效而可靠的。  相似文献   

10.
随着城市的扩张,大型城市的郊区逐步成为新的工业生产及居民中心,为满足生产及生活用水需求,地下水被大量开采,进而导致地表沉降。目前对地表沉降的监测多集中在城市区域,城郊的地表沉降较少受到关注。本文提出使用高分辨率永久散射体(PS)雷达盖分干涉(PS-DInSAR)技术对大型城市郊区的沉降进行监测。选取某市城郊为实验区,使用覆盖该区的16幅高分辨率TerraSAR影像为数据进行PS-DIn-SAR沉降建模和解算,获取了谈区大范围的高分辨率沉降信息。谈市效区最大年沉降速度达到62mm/a(即年沉降量),平均沉降速度为24mm/a。分析表明,该区域的不均匀沉降与地下水的开采密切相关。  相似文献   

11.
Polarimetric data is an additional source of information in PSI technique to improve its performance in land subsidence estimation. The combination of polarimetric data and radar interferometry can lead to an increase in coherence and the number of PS pixels. In this paper, we evaluated and compared the dual polarized Sentinel-1A (S1A) and TerraSAR-X (TSX) data to improve the PSInSAR algorithm. The improvement of this research is based on minimizing Amplitude Dispersion Index (ADI) by finding the optimum scattering mechanism to increase the number of PSC and PS pixels. The proposed method was tested using a dataset of 40 dual-pol SAR data (VV/VH) acquired by S1A and 20 dual-pol SAR data (HH/VV) acquired by TSX. The results revealed that using the TSX data, the number of PS pixels increased about 3 times in ESPO method than using the conventional channels, e.g., HH, and VV. This increase in S1A data was about 1.7 times in ESPO method. In addition, we investigated the efficiency of the three polarimetric optimization methods i.e. ESPO, BGSM, and Best for the dual polarized S1A and TSX data. Results showed that the PS density increased about 1.9 times in BGSM and about 1.5 times in Best method in TSX data. However, in S1A data, PS density increased about 1.1 times in BGSM. The Best method was not successful in increasing the PS density using the S1A data. Also, the effectiveness of the method was evaluated in urban and non-urban regions. The experimental results showed that the method was successful in significantly increasing the number of final PS pixels in both regions.  相似文献   

12.
With the recent progress in synthetic aperture radar (SAR) technology, especially the new generation of SAR satellites (Sentinel-1 and TerraSAR-X), our ability to assess slope stability in open-pit mines has significantly improved. The main objective of this work is to map ground displacement and slope instability over three open-pit mines, namely, Hambach, Garzweiler and Inden, in the Rhenish coalfields of Germany to provide long-term monitoring solutions for open-pit mining operations and their surroundings. Three SAR datasets, including Sentinel-1A data in ascending and descending orbits and TerraSAR-X data in a descending orbit, were processed by a modified small baseline subset (SBAS) algorithm, called coherence-based SBAS, to retrieve ground displacement related to the three open-pit mines and their surroundings. Despite the continuously changing topography over these active open-pit mines, the small perpendicular baselines of both Sentinel-1A and TerraSAR-X data were not affected by DEM errors and hence could yield accurate estimates of surface displacement. Significant land subsidence was observed over reclaimed areas, with rates exceeding 500 mm/yr, 380 mm/yr, and 310 mm/yr for the Hambach, Garzweiler and Inden mine, respectively. The compaction process of waste materials is the main contributor to land subsidence. Land uplift was found over the areas near the active working parts of the mines, which was probably due to excavation activities. Horizontal displacement retrieved from the combination of ascending and descending data was analysed, revealing an eastward movement with a maximum rate of ∼120 mm/yr on the western flank and a westward movement with a maximum rate of ∼ 60 mm/yr on the eastern flank of the pit. Former open-pit mines Fortuna-Garsdorf and Berghein in the eastern part of Rhenish coalfields, already reclaimed for agriculture, also show subsidence, at locations reaching 150 mm/yr. The interferometric results were compared, whenever possible, with groundwater information to analyse the possible reasons for ground deformation over the mines and their surroundings.  相似文献   

13.
Persistent scatterer synthetic aperture radar interferometry (PSI) is a powerful remote sensing technique to detect and measure deformation of the Earth‘s crust – such as subsidence and landslides – with an accuracy of a few millimeters. Deformation is measured at specific points in a radar image called persistent scatterers (PS), which are characterized by long-term constant backscattering properties (high coherence) of the radar signal. Reliable PSI processing requires a stack of 15–50 SAR images and more, and processing is time-consuming (computational costs) and expensive (referring to both, costs for the SAR data and labor costs). Previous research for PS assessment used already acquired SAR data. This paper presents two new methods for predicting PS prior to the radar recording of the area of interest using freely available or low-cost land cover data, topographical maps and OpenStreetMap data. In the procedure, the distance between the assessed PS is calculated and classified regarding to the applicability for PSI processing. Additionally, the dispersion of the assessed PS within the site is analyzed. The results of the two assessment methods are validated using data of real PSI processing. Here, we show that the developed PS assessment techniques are fast and reliable tools to test the spatial applicability of PSI.  相似文献   

14.
We analyzed 23 satellite SAR (synthetic aperture radar) scenes using Persistent Scatter Interferometry (PSI) to study subsidence in Mexico City associated with groundwater withdrawal. The data were acquired by the Envisat ASAR system between January 2004 and July 2006. The spatial pattern of subsidence and the maximum subsidence rate (300 mm/year) are similar to earlier studies. Comparison to independent GPS data indicates RMS agreement between the two techniques of 6.9 mm/year, about the level expected based on joint data uncertainty. Significant annual variation in the GPS vertical data is not observed, suggesting minimal aquifer recharge during the rainy season, and justifying a simple linear model of phase variation through time for the PSI analysis.  相似文献   

15.
Excessive groundwater extraction has caused land subsidence in a large rural area located southwest of Tehran, Iran. We used radar images to estimate the temporal and spatial variation in the magnitude of the subsidence. Due to the large perpendicular baselines and rapid temporal decorrelation of the available data, the application of conventional synthetic aperture radar interferometry (InSAR) to monitor the deformation was not possible. Instead, we applied a recently developed Persistent Scatterer InSAR (PSI) method but found that displacements were underestimated in some areas due to high deformation rates that cause temporal aliasing of the signal. We therefore developed a method that combines conventional InSAR and PSI to estimate the high deformation rates in the southwestern Tehran Basin. We used rates estimated from conventional small temporal baseline interferograms to reduce the likelihood of aliasing and then applied PSI to the residual phase. The method was applied to descending and ascending ENVISAT ASAR images spanning from 2003 to 2009. Mean line-of-sight velocities obtained from both orientations that were further decomposed into horizontal and vertical deformation components were highly compatible with each other, indicating the high performance of the applied method. The mean precision of the estimated vertical component is 2.5 mm/yr. We validated our results using measurements from a continuous GPS station located in one of the subsiding areas. The results also compare favourably with levelling data acquired over a different time interval. Finally, we compared the estimated displacements to hydraulic head variations and geologic profiles at several piezometric wells. We found that the geology is the most important factor controlling the subsidence rate in the southwestern Tehran Basin, regardless of the water level decline.  相似文献   

16.
South-west of Tehran, the capital city of Iran, is subjected to a high deformation rate due to excessive groundwater extractions. Persistent Scatterrer SAR Interferometry (PS-InSAR) technique is used to monitor Tehran’s deformation. Three time series data including two Sentinel-1A (S-1A) spanning from 2014 to 2017, and an ENVISAT-ASAR data stack spanning from 2004 to 2010, are analyzed. The PS-InSAR technique does not perform well on ENVISAT-ASAR due to poor selection of PS points induced by large perpendicular baselines and strong temporal decorrelation of the dataset. In this paper, a novel Iterative PSI method (IPSI) is proposed to increase the PS points which are lost in PS-InSAR technique because of the unsuccessful derivation of the absolute phase value due to an integer ambiguity. The method selects PS points based on simultaneous analysis of their amplitude and phase. Results demonstrate that the density of PSs has been increased by about 4.5 times. Line of Sight (LOS) velocities obtained from both S-1A and ENVISAT-ASAR data analysis are highly compatible with each other, indicating the reliability of the both applied methods. The maximum cumulative displacements are estimated as 39.6 cm and 88.4 cm for Sentinel-1A and ENVISAT-ASAR datasets respectively. Moreover, the subsidence area has grown in the period between the data acquisition time. The methods are successfully validated by subsidence rates obtained from precise leveling and GPS observations.  相似文献   

17.
With the aim of addressing the problem of accurately monitoring complete deformation fields over mining areas by means of Synthetic Aperture Radar (SAR), this paper proposes a solution to obtain complete deformation fields using the probability integral model to fuse deformation data derived from Differential Interferometric SAR (D-InSAR), sub-band InSAR and offset-tracking. This method is used for small-scale, medium-scale and large-scale deformation monitoring using D-InSAR, sub-band InSAR and offset-tracking, respectively. Finally, the probability integral model is utilized to integrate the three deformation fields, and a complete deformation field with high-accuracy over the study area can be obtained. The method is tested on 13 TerraSAR-X (TSX) images from December 2, 2012 to April 24, 2013 of the working face 52,304 of the Daliuta mining area in Shaanxi province, China. The complete deformation field of the working face during the 113-day mining period is obtained. The results show that during the process of working face advancing, the subsidence basin has been expanding along the direction of excavation. The relationship between the average maximum subsidence rate and the advancing distance of the working face can be described by a quadratic polynomial. It has been also observed that, when the underground mining reaches the full mining condition, the maximum subsidence value does not increase further. The accuracy of the proposed method is verified against the global positioning system field survey data. The root mean square errors in the strike and dip directions are 0.134 m and 0.105 m, respectively. Due to the support provide by the reserved coal pillars, the subsidence value above the reserved coal pillars is smaller.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号