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基于SINS/DGPS的捷联式航空重力矢量测量 被引量:5

Airborne Vector Gravimetry Based on SINS/DGPS
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摘要 国防科学技术大学研制成功了我国首套具有自主知识产权的捷联式航空重力测量系统SGA-WZ01。该重力测量系统由捷联式惯性导航系统(SINS)和差分全球定位系统(DGPS)组成。2012年4~5月,在南海某海域进行了飞行试验以测试这一新型重力仪的精度。描述了该系统的构成和数据处理过程,在数据处理中应用了全球重力场模型对重力测量结果进行校正。试验结果表明,该系统不仅可用于重力标量测量,还可用于矢量测量。重复测线的数据表明了该系统测得的重力异常的重复性可达到1.5m Gal,经过全球重力场模型校正之后北向分量的重复性为7.46m Gal,东向分量的重复性为4.46m Gal。 National University of Defense Technology has developed an airborne gravitmetry system named SGA-WZ01 based on SINS/DGPS ,the first system in which a strap-down inertial navigation system (SINS) is used for airborne gravimetry in China.The gravity system consists of a strap-down inertial navigation system and a differential global positioning system (DGPS).In April 2012, a flight test was carried out to test the accuracy of the new type airborne gravimetry system.The system structure and the data processing are mentioned, and the results show that SGA-WZ01 can obtain not only the gravity anomaly but also the horizontal components of the gravity.Gravity results in this test from repeated flight lines show that the repeatability of the gravity anomaly is 1.5mGal.After corrected by global gravitation model, the repeatability of the north component can reach 7.46 mGal and the repeatability of the east component can reach 4.46 mGal.
出处 《海洋测绘》 CSCD 2015年第3期24-28,共5页 Hydrographic Surveying and Charting
基金 国家自然科学基金(61273055) 国家863计划(2013AA063902)
关键词 航空重力测量 捷联惯性导航系统 差分全球定位系统 矢量 精度 airbome gravimetry strap-down inertial navigation system differential global positioning system vector precision
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参考文献10

  • 1Kwon J H,Jekeli C.A new approach for airborne vector gravimetry using GPS/INS[J].Journal of Geodesy,2000,74:690-700.
  • 2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. 被引量:21
  • 3Schwarz K P,Wei M.Some unsolved problems in airborne gravimetry[C]//In:Siinkel H Marson I(eds)Springer,Berlin Proc IAGSymp 113 Gravity and geoid.Springer,Berlin.1994; 131-150.
  • 4Senobari M S.New results in airborne vector gravimetry using strapdown INS/DGPS[J].Journal of Geodesy,2010,84:277-291.
  • 5宁津生,黄谟涛,欧阳永忠,邓凯亮.海空重力测量技术进展[J].海洋测绘,2014,34(3):67-72. 被引量:32
  • 6Wei M,Schwarz K P.Flight test results from a strap-down airborne gravity system[J].Journal of Geodesy,1998,72;323-332.
  • 7Titterton D H,J L Weston.Strapdown Inertial Navigation Technology[M].Institution of Electrical Engineers,2(XH.
  • 8Bruton A M,Hammada Y,Ferguson S,et al.A Comparison of Inertial Platform,Damped 2-axis Platform and Strap-down Airborne Gravimetry[C]//Proc Int Sym Kinematic System in Geodesy,Geomatics,and Navigation.The Banff Center,Banff,Canada June 5-8,2001:542-550.
  • 9李宜龙,曾敏,孙科,罗吉.航空重力测量中FIR滤波与高斯滤波的比较[J].海洋测绘,2014,34(6):40-42. 被引量:7
  • 10Sander S,Argyle M,Elieff S,et al.The AIRGrav airborne gravity system[C]//CSEG RECORDED,2005:32-35,59.

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