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多传感器集成的体视化形变监测模型研究 被引量:2

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摘要 采用地面合成孔径雷达干涉测量(GB-SAR)、三维激光扫描、数码相机、GNSS和无线传感器网络等多种传感器集成技术,设计集成角反射器、紧凑有源转发器、GNSS接收机天线和物理传感器的专用目标特征点装置,将其布设在监测对象表面,自动获取监测对象的空间信息和内部物理状态信息,对GB-SAR雷达干涉测量数据算法进行探讨,在此基础上研究地基雷达干涉影像,将监测对象表面三维模型和内部物理状态模型进行融合,建立体视化形变监测模型的算法,从而实现在模型上对任意兴趣点形变信息进行自动提取和分析。
出处 《测绘通报》 CSCD 北大核心 2014年第S2期16-18,22,共4页 Bulletin of Surveying and Mapping
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  • 1冉崇宪,邹进贵,王新洲,邱卫宁,邹双朝,王永弟,刘万科,杨荣华,黄超,廖群.基于GPS天线阵列技术的变形监测系统研制[J].测绘通报,2006(8):28-30. 被引量:4
  • 2GENG J, TEFERLE F N, SHI C, et al. Ambiguity Resolution in Precise Point Positioning with Hourly Data [J ]. GPS Solutions, 2009,13 ( 4 ) : 263-270.
  • 3ZOU Shuangchao, WANG Xinzhou, ZOU Jingui, et al. Research on Application of GPS Multi-antenna Array Deformation Monitoring System [ C ] //GNSS 2005 Conference. Hong Kong: [ s. n. ] ,2005.
  • 4University of California at Los Angeles. WINS:Wireless Integrated Network Sensors [ DB/OL ]. [ 2009-05-08 ]. http://www, janet, ucla. edu/WINS/bibio, htm.
  • 5敦旭锋,田丰,孙小平.无线传感器网络节点的研究与设计[J].沈阳航空工业学院学报,2007,24(5):61-64. 被引量:9
  • 6Ferretti A,Claudio P,Rocca A. Permanent Scatters in SAR Interferometry[J].IEEE Transactions on Geoscience and Remote Sensing,2001,(01):8-20.
  • 7R(ǒ)delspergera S,Becker M,Gerstenecker C. Digital Elevation Model with The Ground-based SAR IBISL as Basis for Volcanic Deformation Monitoring[J].Journal of Geodynamics,2010.241-246.
  • 8Noferini L,Takayama T,Pieraccini M. Analysis of Ground-Based SAR Data with Diverse Temporal Baselines[J].Transactions on Geoscience and Remote Sensing,2008,(06):1614-1623.
  • 9Noferini L,Pieraccini M,Mecatti D. DEM by Ground-Based SAR Interferometry[J].Geoscience and Remote Sensing Letters,2007,(04):659-663.
  • 10李征航,张小红,朱智勤.利用GPS进行高精度变形监测的新模型[J].测绘学报,2002,31(3):206-210. 被引量:54

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  • 1李宗春,李广云,冯其强,李干,李国俊,曹林.上海天文台Ф65m射电望远镜精密安装测量[J].测绘通报,2012(S1):126-130. 被引量:4
  • 2张正禄.工程测量学[M].武汉:武汉大学出版社,2014.
  • 3中国测绘学会.中国测绘科学发展蓝皮书[M].北京:测绘出版社,2013.
  • 4YAO T,THOMPSON L, YANG W, et al. DifferentGlacier Status with Atmospheric Circulations in TibetanPlateau and Surroundings [ J]. Nature Climate Change,2012’ 2(9) : 663-667.
  • 5KAAB A. Combination of SRTM3 and Repeat ASTERData for Deriving Alpine Glacier Flow Velocities in theBhutan Himalaya [ J]. Remote Sensing of Environment,2005,94(4) : 463-474.
  • 6QUINCEY D,COPLAND L,MAYER C,et al. Ice Ve-locity and Climate Variations for Baltoro Glacier, Paki-stan [J ]. Journal of Glaciology, 2009,55 ( 194 ):1061-1071.
  • 7KUMAR V, VENKATARAMANA G,HODGA K A.Glacier Surface Velocity Estimation Using SAR Interfer-ometry Technique Applying Accending and DescendingPasses in Himalayas [ J]. International Journal of Ap-plied Earth Observation and Geoinformation, 2011,13(4): 545-551.
  • 8RANKLM, KIENHOLZ C, BRAUN M. Glacier Changesin the Karakoram Region Mapped by Multi-mission Sat-ellite Imagery [J]. The Cryosphere, 2014,8(3) : 977-989.
  • 9NOFERINI L, PIERACCINI M, MECATTI D, et al.Using GB-SAR Technique to Monitor Slow Moving Land-slide [J]. Engineering Geology, 2007, 95(3) : 88-98.
  • 10EMANUELE I,FEDERICO D, CHIARA D, et al. FlankInstability of Stromboli Volcano ( Aeolian Islands,Southern Italy) : Integration of GB-InSAR and Geomor-phological Observations [J]. Geomorphology, 2013(201) : 60-69.

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