东马来西亚陆地和海域的航空大地水准面测绘

IF 0.9 Q4 REMOTE SENSING Journal of Geodetic Science Pub Date : 2017-02-23 DOI:10.1515/jogs-2017-0010
H. Jamil, M. Kadir, R. Forsberg, A. Olesen, M. N. Isa, S. Rasidi, A. Mohamed, Z. Chihat, E. Nielsen, F. Majid, K. Talib, SAIFUL AMAN Bin HJ SULAIMAN
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引用次数: 15

摘要

摘要本文介绍了马来西亚测绘部利用航空重力数据开发的一种新的基于大地水准面的垂直基准,该基准位于陆地和南中国海东马来西亚地区沿海,覆盖面积约61万平方公里。结合了东马陆地和海洋地区超过107,000公里的机载重力数据飞行路线,提供了无缝的陆地到海洋重力场覆盖;估计精度优于2.0 mGal。在2014-2016年的一次航空测量中,使用iMAR-IMU处理的重力异常数据,使用悬垂技术将复合重力解决方案扩展到选定线路上的一些小间隙。大地水准面计算全部使用DTU-Space的GRAVSOFT程序套件完成。采用GOCE增强的EGM2008球谐模型,使球谐度N = 720。重力大地水准面首先被绑在一个潮汐计上(在Kota Kinabalu, KK2019),以产生一个拟合的大地水准面my_geoid2017_fit_kk。根据潮汐计基准KK2019的比较,拟合的大地水准面与重力大地水准面偏移了+0.852 m。根据HGPS Lev = HGPS - Nmy_geoid2017_.t_kk计算其他6个测潮站的正测高度。在六个验潮仪位置的常规(HLev)和gps水准高度(HGPS Lev)比较显示,均方根高度差为2.6厘米。最终的重力大地水准面被安装到七个潮汐测量站,并被称为my_geoid2017_fit_east。据估计,在东马来西亚大部分陆地和海洋地区,重力大地水准面精度优于5厘米
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Airborne geoid mapping of land and sea areas of East Malaysia
Abstract This paper describes the development of a new geoid-based vertical datum from airborne gravity data, by the Department of Survey and Mapping Malaysia, on land and in the South China Sea out of the coast of East Malaysia region, covering an area of about 610,000 square kilometres. More than 107,000 km flight line of airborne gravity data over land and marine areas of East Malaysia has been combined to provide a seamless land-to-sea gravity field coverage; with an estimated accuracy of better than 2.0 mGal. The iMAR-IMU processed gravity anomaly data has been used during a 2014-2016 airborne survey to extend a composite gravity solution across a number of minor gaps on selected lines, using a draping technique. The geoid computations were all done with the GRAVSOFT suite of programs from DTU-Space. EGM2008 augmented with GOCE spherical harmonic model has been used to spherical harmonic degree N = 720. The gravimetric geoid first was tied at one tide-gauge (in Kota Kinabalu, KK2019) to produce a fitted geoid, my_geoid2017_fit_kk. The fitted geoid was offset from the gravimetric geoid by +0.852 m, based on the comparison at the tide-gauge benchmark KK2019. Consequently, orthometric height at the six other tide gauge stations was computed from HGPS Lev = hGPS - Nmy_geoid2017_.t_kk. Comparison of the conventional (HLev) and GPS-levelling heights (HGPS Lev) at the six tide gauge locations indicate RMS height difference of 2.6 cm. The final gravimetric geoidwas fitted to the seven tide gauge stations and is known as my_geoid2017_fit_east. The accuracy of the gravimetric geoid is estimated to be better than 5 cm across most of East Malaysia land and marine areas
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来源期刊
Journal of Geodetic Science
Journal of Geodetic Science REMOTE SENSING-
CiteScore
1.90
自引率
7.70%
发文量
3
审稿时长
14 weeks
期刊最新文献
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