航空/海洋重力测量仪器发展综述
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Review on the Development of Airborne/Marine Gravimetry Instruments
  • 作者:胡平华 ; 赵明 ; 黄鹤 ; 刘东斌 ; 唐江河 ; 尉超
  • 英文作者:HU Ping-hua;ZHAO Ming;HUANG He;LIU Dong-bin;TANG Jiang-he;WEI Chao;Beijing Institute of Automatic Control Equipment;Rockets Force Military Representative Office in the 33rd Research Institute;
  • 关键词:航空/海洋(标量)重力仪 ; 航空/海洋矢量重力仪 ; 航空/海洋重力梯度仪
  • 英文关键词:Airborne/marine(scalar)gravimeter;;Airborne/marine vector gravimeter;;Airborne/marine gravity gradiometer
  • 中文刊名:DWSS
  • 英文刊名:Navigation Positioning and Timing
  • 机构:北京自动化控制设备研究所;火箭军驻第三十三研究所军事代表室;
  • 出版日期:2017-07-15
  • 出版单位:导航定位与授时
  • 年:2017
  • 期:v.4;No.19
  • 基金:国家自然科学基金重大科研仪器研制项目(41527803)
  • 语种:中文;
  • 页:DWSS201704003
  • 页数:10
  • CN:04
  • ISSN:10-1226/V
  • 分类号:14-23
摘要
简要介绍了航空/海洋重力测量仪器的基本概念和分类,全面分析了其应用领域。针对航空/海洋(标量)重力仪、航空/海洋矢量重力仪和航空/海洋重力梯度仪三种类型,综合阐述了其国际、国内发展现状,指出了我国航空/海洋重力测量仪器的后续发展方向。
        This report introduces the basic meaning and classification of airborne/marine gravimetry instrument,and analyses its application areas roundly.For airborne/marine(scalar)gravimeter,airborne/marine vector gravimeter and airborne/marine gravity gradiometer,development history and current situation at home and abroad are summarized comprehensively,and the near future development in China is presented.
引文
[1]熊盛青,周锡华,郭志宏,等.航空重力勘探理论方法及应用[M].北京:地质出版社,2010.
    [2]黄谟涛,翟国君,管铮,等.海洋重力场测定及其应用[M].北京:测绘出版社,2005.
    [3]赵希亮,尤宝平,金绍华,等.潜地战略导弹对海洋重力场精度需求分析[J].海军大连舰艇学院学报,2015,38(6):53-54.
    [4]黄谟涛,翟国君,欧阳永忠,等.海洋磁场重力场信息军事应用研究现状与展望[J].海洋测绘,2011,31(1):71-76.
    [5]常国宾,李胜全.惯性技术视角下动态重力测量技术评述(一):比力测量与载体动态的影响[J].海洋测绘,2014,34(3):77-82.
    [6]张昌达.航空重力测量和航空重力梯度测量问题[J].工程地球物理学报,2005,2(4):282-291.
    [7]张永明,盛君,张贵宾.航空重力测量技术的现状及应用[J].勘探地球物理进展,2006,29(2):94-97.
    [8]宁津生,黄谟涛,欧阳永忠,等.海空重力测量技术进展[J].海洋测绘,2014,34(3):67-72.
    [9]孙中苗,翟振和,李迎春.航空重力仪发展现状和趋势[J].地球物理学进展,2013,28(1):1-8.
    [10]夏哲仁,孙中苗.航空重力测量技术及其应用[J].测绘科学,2006,31(6):43-46.
    [11]王静波,熊盛青,周锡华,等.航空重力测量系统研究进展[J].物探与化探,2009,33(4):369-373.
    [12]徐遵义,晏磊,宁书年,等.海洋重力辅助导航的研究现状与发展[J].地球物理学进展,2007,22(1):105-111.
    [13]Forsberg R,Olesen A V,Einarsson I.Airborne gravimetry for geoid determination with Lacoste Romberg and Chekan gravimeter[J].Gyroscopy and Navigation,2015,6(4):265-270.
    [14]Krasnov A A,Sokolov A V,Rzhevskiy N N.First airborne gravity measurements aboard a dirigible[J].Seismic Instruments,2015,51(3):252-255.
    [15]Krasnov A A,Odintsov A A,Semenov I V.Gyro stabilization system of a gravimeter[J].Gyroscopy and Navigation,2010,1(3):191-200.
    [16]Smoller Y L,Yurist S S,Golovan A A,et al.Using a multiantenna GPS receiver in the airborne gravimeter GT-2Afor surveys in polar areas[J].Gyroscopy and Navigation,2015,6(4):299-304.
    [17]Koneshov V N,Klevtsov V V,Soov V N.Upgrading the GT-2A aerogravimetric complex for airborne gravity measurements in the arctic[J].Physics of the Solid Earth,2016,52(3):452-459.
    [18]Ayres-Sampaio D,Deurloo R,Bos M,et al.A comparison between three IMUs for strapdown airborne gravimetry[J].Survey Geophys,2015,36(4):571-586.
    [19]Becker D,Nielsen J E,Ayres-Sampaio D,et al.Drift reduction in strapdown airborne gravimetry thermal correction[J].Journal of Geodesy,2015,89(11):1133-1144.
    [20]Becker D,Becker M,Olesen A V,et al.Latest results in strapdown airborne gravimetry using an iMAR RQH unit[C]//4th IAG Symposium on Terrestral Gravimetry,2016:19-25.
    [21]赵德军.航空矢量重力测量的理论与方法[D].郑州:解放军信息工程大学,2005.
    [22]王丽红.航空矢量重力测量中载体矢量加速度的确定方法[M].郑州:解放军信息工程大学,2008.
    [23]Li X,Jekeli C.Ground-vehicle INS/GPS vector gravimetry[J].Geophysics,2008,73(2):I1-I10.
    [24]Jekeli C,Kwon J H.Results of airborne vector(3-D)gravimetry[J].Geophysical Research Letters,1999,26(23):3533-3536.
    [25]Sander L,Ferguson S.Advances in SGL AIRGrav acquisition and processing[C]//Richard Lane.Airborne Gravity 2010,Abstracts from the ASEG-PESA Airborne Gravity 2010 Workshop.Australia:Onshore Energy Minerals Division,Geoscience Australia,2010:172-177.
    [26]Touboul P,Foulon B,Rodrigues M,et al.In orbit nano-g measurements,lessons for future space missions[J].Aerospace Science and Technology,2004,8(5):431-441.
    [27]Moody M V,Paik H J,Canavanc,E R.Three-axis superconducting gravity gradiometer for sensitive gravity experiments[J].Review of Scientific Instruments,2002,73(11):3957-3974.
    [28]Snadden M J,McGuirk J M,Bouyer P,et al.Measurement of the earth’s gravity gradient with an atom interferometer-based gravity gradiometer[J].Physical Review Letters,1998,81(5):971.
    [29]Wu X.Gravity gradient survey with a mobile atom interferometer[D].Stanford University,2009.
    [30]Brown D,Mause L,Young B,et al.Atom interferometric gravity sensor system[C]//Position Location and Navigation Symposium.IEEE,2012.
    [31]Cai S K,Wu M P,Zhang K D,et al.The first airborne scalar gravimetry system based on SINS/DGPS in China[J].Science China:Earth Sciences,2013,56(12):2198-2208.
    [32]Wang W J,Luo C,Xue Z,et al.Progress in the development of laser strapdown airborne gravimeter in China[J].Gyroscopy and Navigation,2015,6(4):271-277.
    [33]胡平华,黄鹤,赵明,等.GIPS-1AM高精度惯性稳定平台式海空重力仪的设计与试验[J].导航定位与授时,2015,2(3):16-22.
    [34]王峥.联合捷联式惯性导航与全球导航卫星数据的航空矢量重力测量方法[J].测绘学报,2016,45(11):1384.
    [35]Wang P,Li R B,Yan H,et al.Demonstration of a Sagnac-type cold atom interferometer with stimulated Raman transitions[J].Chinese Physics Letters,2007,24(1):27.
    [36]Zhou L,Xiong Z Y,Yang W,et al.Measurement of local gravity via a cold atom interferometer[J].Chinese Physics Letters,2001,28(1):013701.
    [37]Duan X C,Zhou M K,Mao D K,et al.Operating an atom-interferometry-based gravity gradiometer by the dual-fringe-locking method[J].Physical Review A,2014,90(2):023617.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700