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GNSS original observation data set of Xinpu landslide in Three Gorges from 2019 to 2021


数据基本信息
数据时间:
December 2019 to December 2021
空间位置:
Fengjie County, Chongqing
关键词:
Landslide GNSS; Real time observationLandslide GNSS; Real time observation
学科类别:
170 Earth Sciences - 170.35 geodesy - 170.3550 space geodesy
主题分类:
Other data - Ground monitoring data - -
数据条目:
0 条
数据分辨率:
数据类型:
Other data

数据集缩略图


数据摘要

The data included original observation data from 10 GNSS monitoring sites of the Xinpu landslide in the Three Gorges. The observation period is from December 2019 to December 2021. The real-time three-dimensional deformation information of each monitoring point can be further obtained by processing the data. It can be used to further analyze the landslide deformation of the Three Gorges Reservoir. It can also provides a basis for the relationship between the main inducing factor rainfall and the periodic change of reservoir water level.


数据作者(联系人)信息
姓名:
Huangguanwen
联系人电话:
13636801167
邮编:
710061
联系人邮箱:
huang830928@163.com
单位:
Chang'an University
地址:
DaYanTa street, Yanta District, Xi'an City, Shaanxi Province

空间位置


数据引用方式及申明

Suggestions for use statement: the original GNSS observation data of Xinpu landslide in the Three Gorges from 2019 to 2021 come from the national key research and development plan project "real time monitoring and early warning of catastrophic landslide and research and development of technical equipment (2018yfc1505100)"; Citation: Zhang Qin, Huang Guanwen, Du yuan, Bai Zhengwei Chang'an University Original GNSS observation data of Xinpu landslide in the Three Gorges from 2019 to 2021 2022


数据分发和版权信息
授权分发范围:
Domestic distribution
数据级别:
Public service access
数据共享方式:
Apply offline

数据其他信息
平台名称:
仪器名称:
产品级别::
-
数据投影信息:
WGS84

数据溯源信息
数据来源描述:
Self generated.
数据生成过程描述:
Raw data, unprocessed.
数据质量信息:
The data source is the GNSS landslide monitoring receiver developed by the project. The GNSS satellite data is collected through the measuring antenna, and the built-in low-cost positioning module is used for data processing. The data quality control is realized through standardized equipment installation process and data quality inspection.

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1.基于TIKHONOV正则化的短基线单历元模糊度解算方法研究.孔令杰,黄观文. 大地测量与地球动力学[J],2010,30(2),148-151,155

2.附有系统参数和附加约束条件的GPS城市沉降监测网数据处理方法研究.张勤,黄观文,王利,丁晓光. 武汉大学学报. 信息科学版[J],2009,34(3),269-272

3.利用相位平滑伪距和最小二乘曲面函数建立西安市区域电离层延迟模型.涂锐,张勤,黄观文,凌晴. 武汉大学学报. 信息科学版[J],2011,36(2),218-221

4.天线相位中心偏差变化及改正模型对精密单点定位精度的影响.涂锐,黄观文,邹顺. 大地测量与地球动力学[J],2010,30(3),113-117

5.单频精密单点定位电离层延迟处理方法研究.黄观文,张勤,涂锐. 大地测量与地球动力学[J],2010,30(2),99-103,108

6.GPS天线相位模型变化对高精度GPS测量解算的影响研究.丁晓光,张勤,黄观文,管建安. 测绘科学[J],2010,35(3),18-20

7.全球导航卫星系统GNSS最新进展及带来的机遇和挑战.张双成,王利,黄观文. 工程勘察[J],2010,38(8),49-53

8.GPS单频精密单点定位的研究实现.涂锐,黄观文,凌晴. 测绘科学[J],2011,36(3),68-69,72

9.基于SEID模型的单频PPP双频解算方法研究.涂锐,黄观文,张勤,王利. 武汉大学学报. 信息科学版[J],2011,36(10),1187-1190

10.利用单基准站改正信息和电离层参数估计的单频PPP算法.涂锐,黄观文,张勤,王利. 武汉大学学报. 信息科学版[J],2012,37(2),170-173,182

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