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1.
The vegetation communities and spatial patterns on the Fire Island National Seashore are dynamic as the result of interactions with driving forces such as sand deposition, storm-driven over wash, salt spray, surface water, as well as with human disturbances. We used high spatial resolution QuickBird-2 satellite remote sensing data to map both terrestrial and submerged aquatic vegetation communities of the National Seashore. We adopted a stratified classification and unsupervised classification approach for mapping terrestrial vegetation types. Our classification scheme included detailed terrestrial vegetation types identified by previous vegetation mapping efforts of the National Park Service and three generalized categories of high-density seagrass, low-density seagrass coverages, and unvegetated bottom to map the submerged aquatic vegetation habitats. We used underwater videography, GPS-guided field reference photography, and bathymetric data to support remote sensing image classification and information extraction. This study achieved approximately 82% and 75% overall classification accuracy for the terrestrial and submnerged aquatic vegetations, respectively, and provided an updated vegetation inventory and change analysis for the Northeast Coastal and Barrier Network of the National Park Service.  相似文献   
2.
Differential GPS (DGPS) and Differential Interferometric Synthetic Aperture Radar (DInSAR) analyses were applied to the Kos-Yali-Nisyros Volcanic Field (SE Hellenic Volcanic Arc) to quantify the ground deformation of Nisyros Volcano. After intense seismic activity in 1996, a GPS network was installed in June 1997 and re-occupied annually up to 2002. A general uplift ranging from 14 to 140 mm was determined at all stations of the network. The corresponding horizontal displacements ranged from 13 to 53 mm. The displacement vectors indicate that the island is undergoing extension towards the East, West and South. A two-source “Mogi” model combined with assumed motion along the Mandraki Fault was constructed to fit the observed deformation. The best-fit model assumes sources at a depth of 5500 m NW of the centre of the island and at 6500 m offshore ESE of Yali Island. DInSAR analysis using four pairs of images taken between May 1995 and September 2000 suggests that deformation was occurring during 1995 before the start of the seismic crisis. An amplitude of at least 56 mm along the slant range appeared for the period 1996 through 1999. This deformation is consistent with the two-source model invoked in DGPS modelling. Surface evidence of ground deformation is expressed in the contemporaneous reactivation of the Mandraki Fault. In addition, a 600 m long N-S trending irregular rupture in the caldera floor was formed between 2001 and 2002. This rupture is interpreted as the release of surface stress in the consolidated epiclastic and hydrothermal sediments of the caldera floor.  相似文献   
3.
DGPS(DifferentialGlobalPositioningSystem)测量技术即差分定位技术,包括实时差分和后处理差分定位技术,正在远海和近海测量中得到广泛应用。后处理差分定位与微波定位及GPS实时差分定位相比,具有作用距离远,不受基准台与船台之问的障碍物影响以及减少基准台等优点。对于近海大比例尺(大于1:1万)测量,可采用实时差分定位的方法,而小于1:1万中小比例尺海底地形图测绘及海上其他工程测量,采用后处理差分定位,既能满足精度要求,又能提高工作效率。本文主要介绍利用DGPS后处理定位方法,在测绘广西沿海1:5万海底地形图中的应用情况。  相似文献   
4.
珠江口外走航ADCP资料的系统误差订正与质量控制   总被引:1,自引:1,他引:0  
在对珠江口外2006年冬季航次走航ADCP观测资料处理中发现用Joyce的方法不能有效地订正系统误差,其原因在于订正角与航速、船艏向相关。给出了一个订正角为船艏向余弦的拟合函数,得出良好的订正结果。分析了VmDas软件处理流速结果的精度,给出了系统误差识别的方法。发现观测资料中一些不能为VmDas软件识别的错误数据,分析了海况对观测资料的影响,提出了观测资料质量控制与误差订正的一套程序。  相似文献   
5.
IMU/DGPS系统辅助ADS40三线阵影像的区域网平差   总被引:3,自引:0,他引:3  
推导ADS40航带间外方位元素归一化处理的数学公式,设计一种描述IMU/DGPS系统误差的数学模型,采用改进的定向片内插模型实现ADS40影像的区域网平差.试验结果表明,仅需一个地面控制点,IMU/DGPS数据的定位精度就可显著提高,在四角布设地面控制点的情况下,IMU/DGPS数据与ADS40影像的联合平差可得到优于1.5个像素的3维定位精度;构架航线对平差结果的改善作用有限,在作业中采用的必要性不大.  相似文献   
6.
差分GPS方法在城市活断层探测中的应用探讨   总被引:5,自引:4,他引:1  
使用差分GPS方法, 测量西宁盆地内部各级阶地参数, 对比野外阶地特征, 探讨区域新构造时期活动特征, 以及西宁城市周缘活断层的分布及活动特征。 通过这一区域的实践, 认为DGPS方法能够快速、 精确的获得区域内阶地面的坐标和高程, 是确定弱活动或隐伏断裂的可行方法。 南川河断裂错断T3、 T4、 T5阶地, 断裂的活动时间为T3阶地形成后, T2级阶地形成前的0.10 Ma B.P.至0.05 Ma B.P.。 垂直断距15~20 m, 最小垂直活动速率约为0.30 mm/a。  相似文献   
7.
This paper describes the GPS applicability for detecting the vertical displacements of ground stations caused by ocean tide loading effects. An experiment was carried out using 12 permanent GPS stations located in the coastal area of Korea using data in the period 1 July until 26 August 2003. The relative height differences were calculated from hourly DGPS data processing based on the carrier-phase observation. The power spectra of the M2 and N2 constituents of ocean tide loading were derived using the CLEAN algorithm. The differential vertical displacements generated by the ocean tide loading effect are typically 3–25 mm in coastal area of the Korea. We compared the results from GPS with those of the ocean tide models, NAO.99Jb regional model and GOT00.2, FES99 global models. The M2 (N2) amplitude differences of vertical displacements between GPS and GOT00.2 is 1.22 ± 3.61 mm (1.01 ± 1.48 mm), and that of the M2 (N2) amplitude difference between GPS and FES99 is 0.04 ± 4.64 mm (0.64 ± 1.75 mm), whereas the M2 (N2) amplitude difference between GPS and NAO.99Jb are 0.05 ± 1.03 mm (0.86 ± 1.18 mm). The highest vertical displacements at the PALM station are found for 24.5 ± 0.7 mm from GPS observation, and 22.9 mm from the regional model NAO.99Jb and 13.17 and 10.00 mm from the global models GOT00.2 and FES99, respectively. These values show that the vertical displacements derived from GPS are in good agreement with those of the regional model NAO.99Jb around Korea, more than with the global models. This result indicated that GPS is an effective tool to measure the vertical displacement caused by the ocean tide loading effect in the coastal area, and we need to use the NAO.99Jb ocean tide model rather than the global ocean tide models in and around the Korean peninsula for position determination with permanent GPS installations. This work demonstrates that vertical displacement caused by the M2 and N2 constituents of ocean tide loading can be measured by carrier-phase DGPS.  相似文献   
8.
DGPS在资源环境遥感中的应用方法研究   总被引:1,自引:0,他引:1  
为了能够利用较低配置的GPS设备,方便有效地完成与资源环境遥感有关的地物定位测量任务,利用伪距DGPS设备进行了如下试验研究:基站参考坐标对定位精度的影响,基于大地测量三角控制点和WGS84到北京54坐标系转换模型进行基站参考坐标差分测量导算的方法和精度,在导算出的控制点处建立基站进行试验区样地定位测量的方法及所能达到的精度,试验结果表明,在具备测区至少一个三角控制点和坐标转换参数条件下,可以采用首先从已恬三角点导算出一个位于方便位置处的点的大地坐标,然后在该点所能达到的在当地坐标系中的相对定位精度远远小于一个像元大小,可以推广应用到资源环境遥感的各个应用领域,在不具备基站参考坐标和坐标系转换参数的条件下,可以基于差分测量结果之图形要素绝对位置图形转换到已经和当地坐标系配准的遥感影上去,采用这种办法,在差分处理时不用考虑基站的精确WGS84地心参考坐标,也不用考虑坐标系的转换参数,利用其站单点绝对定位结果作为参考坐标进行差分就可,可以节省不少人力和物力,试验研究及结论为如何利用较低配置的伪距DGPS设备,简捷,快速,精确地完成资源环境遥感领域地物定位测量任务提供了有益参考。  相似文献   
9.
多波束海底地形探测是目前世界上最为先进的海底地形探测方法.高精度的差分GPS定位是实现多波束系统高精度测深的最基本前提.在海上探测作业过程中,由于客观原因,差分GPS数据存在偶然误差,影响多波束测深精度.本文提出对差分GPS数据进行航速、航向平滑处理、误差定位点位置推算的实时优化方法和数学模型,并给出实际实现的例子.  相似文献   
10.
差分GPS水下立体定位系统   总被引:15,自引:3,他引:15  
差分GPS水下立体定位系统包括GPS差分基准站、GPS浮标、水下收发机、船基控制中心四部分。差分基准站提供GPS差分改正,实现浮标内置GPS高精度实时定位。GPS浮标完成水上和水下的集成,检测水下收发机发射的定位信号并测量信号到达的时间,同时将各种数据发送到船基控制中心。船基控制中心接收各个浮标的数据后实时解算水下收发机的位置,同时将结果发送给水下收发机。本文首先对系统的总体构成和各个部分的功能进行了介绍,然后详细推导了系统定位算法,最后结合系统试验情况给出了系统试验精度统计结果。  相似文献   
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