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1.
为解决CORS系统中GNSS高程受技术条件限制精度不高的问题,贵阳市进行了区域似大地水准面精化工作。本文论述了GNSS和水准网的布设及精度,使用了3 877个点重力数据和54个GNSS水准资料,以EIGEN03C地球重力场模型作为参考重力场,由第二类Helmert凝集法完成大地水准面计算,利用球冠谐调和分析方法将GNSS水准与重力似大地水准面联合求解得出的2'!2'格网似大地水准面,在高原高差地区其精度达到"0.010 m。  相似文献   

2.
大地水准面(数字高程基准)为国家高程基准的建立与维持提供了全新的思路。然而,受限于地形、重力数据等原因,高原地区高精度数字高程基准模型的建立一直是大地测量领域的难题。本文以格尔木地区为例,探讨了高原地区高精度数字高程基准模型的建立方法。首先,基于重力和地形数据,由第二类Helmert凝集法计算了格尔木重力似大地水准面。在计算中,考虑到高原地形对大地水准面模型的影响,采用了7.5″×7.5″分辨率和高精度的地形数据来恢复大地水准面短波部分的方法,以提高似大地水准面的精度。然后,利用球冠谐调和分析方法将GNSS水准与重力似大地水准面联合,建立了格尔木高精度数字高程基准模型。与实测的67个高精度GNSS水准资料比较,重力似大地水准面的外符合精度为3.0 cm,数字高程基准模型的内符合精度为2.0 cm。  相似文献   

3.
蒋涛  党亚民  郭春喜  陈斌  章传银 《测绘学报》2022,51(8):1757-1767
2020珠峰高程测量,首次确定并发布了基于国际高程参考系统(IHRS)的珠峰正高。在珠峰地区实现国际高程参考系统,采用的方案是建立珠峰区域高精度重力大地水准面。利用地球重力场谱组合理论和基于数据驱动的谱权确定方法,测试优选参考重力场模型及其截断阶数和球冠积分半径等关键参数,联合航空和地面重力等数据建立了珠峰区域重力似大地水准面模型,61点高精度GNSS水准高程异常检核表明,模型精度达3.8 cm,加入航空重力数据后模型精度提升幅度达51.3%。提出顾及高差改正的峰顶高程异常内插方法,采用顾及地形质量影响的高程异常——大地水准面差距转换改正严密公式,使用峰顶实测地面重力数据,基于国际高程参考系统定义的重力位值W0和GRS80参考椭球,最终确定了国际高程参考系统中的高精度珠峰峰顶大地水准面差距。  相似文献   

4.
张衡  朱伟  张省 《测绘科学》2023,(4):54-59
针对区域似大地水准面模型构建中地面重力数据分布不均匀且较难获取的难题,该文提出一种基于谱组合重力场模型的似大地水准面精化方法,实现了卫星重力场模型与高阶重力场模型的优化组合,结合293个实测全球卫星导航系统(GNSS)水准数据,构建了山东省范围的高精度似大地水准面模型。利用GNSS水准数据检核表明:在山东省范围,利用谱组合重力场模型构建的区域似大地水准面模型具有较高的精度,能够满足大多数工程要求,与采用地面重力数据构建的似大地水准面模型对比发现,在不使用地面重力数据的情况下也可构建厘米级精度似大地水准面模型,具有成本低、效率高的明显优势,便于及时开展区域似大地水准面的维护更新。  相似文献   

5.
分析了最新的多类地球重力场模型解算GNSS点高程异常的精度,利用中国某测区内的GNSS/水准数据与地球重力场模型解算值相比较,选择出较优精度的重力场模型,在测区范围内解算精度达到21.09 cm,消除系统偏差后的精度最高为3.94 cm.结果表明在本区域地球重力场模型确定的重力似大地水准面与GNSS/水准的似大地水准面存在系统偏差,消除系统偏差后的结果精度有所提升,可在铁路工程测量中发挥一定的作用.  相似文献   

6.
综合利用中国海岸带GNSS水准和多源重力测量数据,通过精化陆海统一的重力似大地水准面计算高程异常零阶项,精密确定了中国1985国家高程基准相对于重力大地水准面的偏差。结果显示:中国1985国家高程基准相对于国际地球自转服务(International Earth Rotation Service,IERS)的IERS2010标准W0对应的重力大地水准面的偏差为30.4±1.0 cm;中国1985国家高程基准于20世纪80年代经琼州海峡传递到海南岛后,在1 cm精度水平上未发现明显差异;计算的重力似大地水准面经全球导航卫星系统(globa navigation satellite system,GNSS)水准外部检核,标准差约为4 cm,12个省市和陆海交界处在厘米级精度水平上无缝衔接。在近10 a内,天津市除西北角外,大部分地区存在地面下沉,东南部地面下沉约7 cm,上海市地面下沉约7 cm,浙江省、江苏省和福建省等沿海省份局部地区也出现地面下沉。  相似文献   

7.
章传银  蒋涛  柯宝贵  王伟 《测绘学报》2017,46(8):945-951
从高程系统定义出发,探讨高程基准面的重力等位性质,测试分析不同类型高程系统地面点高程之间的差异,考察GNSS代替水准与实际水准测量成果的一致性,进而提出新的GNSS代替水准算法。主要结论包括:(1)当精度要求达到厘米级水平时,正常高的基准面也应是大地水准面。中国国家1985高程基准采用正常高系统,其高程基准面是过青岛零点的大地水准面。(2)近地空间中等解析正高面与大地水准面平行,GNSS代替水准能直接测定地面点的解析正高,但正常高系统更有利于描述地势和地形起伏。(3)本文给出的GNSS代替水准测定近地点正常高算法,大地高误差对正常高结果的影响比大地水准面误差大,前者影响约为后者的1.5倍。  相似文献   

8.
介绍区域似大地水准面再精化方法,以江苏省域内不同精度的重力似大地水准面及试验区全球导航卫星系统(global navigation satellite system,GNSS)/水准数据为例,计算分析了GNSS/水准点数、初始重力似大地水准面精度和内插拟合方法对再精化水准面的影响。结果表明,初始重力似大地水准面精度优于10 cm时,其再精化水准面结果精度与初始重力水准面精度关系不大,但其离散程度和初始重力水准面精度相关;平面/二次拟合与反距离平方加权内插结合使用效果更优,三次拟合与Shepard内插结合使用效果最优。结论对今后区域似大地水准面再精化工作中方案的选择、成本的节约等方面有一定的指导意义。  相似文献   

9.
本文利用全球重力位模型、胶州市地面重力观测数据、胶州市GPS水准数据和数字地面模型(DTM),采用组合法应用移去-恢复技术计算剩余大地水准面,并与地球位模型计算的高程异常进行拟合,得到该地区重力似大地水准面,再和布测、计算得到的GPS/水准所构成的几何大地水准面拟合,利用多项式拟合完成系统改正,获得最终的大地水准面结果及相关的精度信息。  相似文献   

10.
邢志斌  李姗姗 《测绘学报》2018,47(5):575-583
基于重力场水平分量-垂线偏差对地形信息敏感的特点,根据边值理论由重力与地形数据确定格网垂线偏差模型,在此基础上,首先利用三维重力矢量-格网垂线偏差与格网重力异常,联合格网高程数据求得格网点间高程异常差,然后通过GPS/水准点的控制,构成紧密的几何条件,进行严密平差,从而获得高分辨率、高精度似大地水准面的数值模型。按照本文方法,利用我国6600多个GPS/水准点、1'×1'的格网垂线偏差、格网重力异常、格网高程数据,整体平差计算了我国陆海统一的似大地水准面模型,经GPS/水准点检核,全国似大地水准面的绝对精度达到了4 cm,相对精度优于7 cm。  相似文献   

11.
This paper takes advantage of space-technique-derived positions on the Earth’s surface and the known normal gravity field to determine the height anomaly from geopotential numbers. A new method is also presented to downward-continue the height anomaly to the geoid height. The orthometric height is determined as the difference between the geodetic (ellipsoidal) height derived by space-geodetic techniques and the geoid height. It is shown that, due to the very high correlation between the geodetic height and the computed geoid height, the error of the orthometric height determined by this method is usually much smaller than that provided by standard GPS/levelling. Also included is a practical formula to correct the Helmert orthometric height by adding two correction terms: a topographic roughness term and a correction term for lateral topographic mass–density variations.  相似文献   

12.
研究了将陆地重力似大地水准面与GPS水;住似大地水准面拟合的处理方法推广到海洋的问题.首先从理论上证明了当存在海面地形.则海洋大地水准面与似大地水准面不重合.导出了在海洋上大地水;住面差距与高程异常之间差值的公式.由此给出了求定平均海面相对于区域高程基准的正常高以及测高似大地水准面的计算公式。由于测高平均海面与GPS大地高有相近的精度.提出了将海洋重力似大地水准面与区域测高似大地水准面拟合的处理方法.并利用当前最新的海面地形模型和测高平均海面模型做了数值估计。  相似文献   

13.
Improvements in height datum transfer expected from the GOCE mission   总被引:1,自引:1,他引:1  
 One of the aims of the Earth Explorer Gravity Field and Steady-State Ocean Circulation (GOCE) mission is to provide global and regional models of the Earth's gravity field and of the geoid with high spatial resolution and accuracy. Using the GOCE error model, simulation studies were performed in order to estimate the accuracy of datum transfer in different areas of the Earth. The results showed that with the GOCE error model, the standard deviation of the height anomaly differences is about one order of magnitude better than the corresponding value with the EGM96 error model. As an example, the accuracy of the vertical datum transfer from the tide gauge of Amsterdam to New York was estimated equal to 57 cm when the EGM96 error model was used, while in the case of GOCE error model this accuracy was increased to 6 cm. The geoid undulation difference between the two places is about 76.5 m. Scaling the GOCE errors to the local gravity variance, the estimated accuracy varied between 3 and 7 cm, depending on the scaling model. Received: 1 March 2000 / Accepted: 21 February 2001  相似文献   

14.
Any errors in digital elevation models (DEMs) will introduce errors directly in gravity anomalies and geoid models when used in interpolating Bouguer gravity anomalies. Errors are also propagated into the geoid model by the topographic and downward continuation (DWC) corrections in the application of Stokes’s formula. The effects of these errors are assessed by the evaluation of the absolute accuracy of nine independent DEMs for the Iran region. It is shown that the improvement in using the high-resolution Shuttle Radar Topography Mission (SRTM) data versus previously available DEMs in gridding of gravity anomalies, terrain corrections and DWC effects for the geoid model are significant. Based on the Iranian GPS/levelling network data, we estimate the absolute vertical accuracy of the SRTM in Iran to be 6.5 m, which is much better than the estimated global accuracy of the SRTM (say 16 m). Hence, this DEM has a comparable accuracy to a current photogrammetric high-resolution DEM of Iran under development. We also found very large differences between the GLOBE and SRTM models on the range of −750 to 550 m. This difference causes an error in the range of −160 to 140 mGal in interpolating surface gravity anomalies and −60 to 60 mGal in simple Bouguer anomaly correction terms. In the view of geoid heights, we found large differences between the use of GLOBE and SRTM DEMs, in the range of −1.1 to 1 m for the study area. The terrain correction of the geoid model at selected GPS/levelling points only differs by 3 cm for these two DEMs.  相似文献   

15.
美国海洋卫星测高仪的出现,使应用Hotine积分确定海洋大地水准面成为现实。本文通过对Hotine积分及垂线偏差的计算公式进行改进,较好地改善了求和项的收敛性,减小了截断误差影响,并提出了利用Hotine函数和重力异常确定海洋大地水准面的方法。 实际计算表明:海洋重力大地水准面的精度在1米以内;卫星测高大地水准面间存在0.5米系统差;它和海底地形有一定的相关性,能较好地反映出海底地形的宏观特性。  相似文献   

16.
张赤军 《测绘学报》1998,27(4):352-356
鉴于我国中西部是多山地区,为满足国家统一高程和山区建设的需要,本文提出了用GPS和测距三角高程的方法确定高程异常,再用地形数据推求重力异常垂直梯度,由此可以经济和快速地实现精化大地水准面的目标。这时边远山区任意一点的精度可达30cm。  相似文献   

17.
徐义平  吴波 《测绘通报》2021,(4):126-130,155
本文分析了空间重力异常精度对水准测量高差重力异常改正的影响。在江苏两处试验区分别采用实测重力和布格异常数据库两种改正方法,计算测段重力异常改正值,对比两者间的差异。结果表明:未顾及地形起伏的实测重力点分布是导致两种改正方法改正值差异大的主要因素;地形起伏较大区域,水准线路出现转折或倾斜过大时,需加测重力,采用实测重力进行水准测量高差重力异常改正;平坦小区域内,利用布格异常数据库与实测重力进行水准测量高差重力异常改正的精度相当。  相似文献   

18.
Ellipsoidal geoid computation   总被引:1,自引:1,他引:0  
Modern geoid computation uses a global gravity model, such as EGM96, as a third component in a remove–restore process. The classical approach uses only two: the reference ellipsoid and a geometrical model representing the topography. The rationale for all three components is reviewed, drawing attention to the much smaller precision now needed when transforming residual gravity anomalies. It is shown that all ellipsoidal effects needed for geoid computation with millimetric accuracy are automatically included provided that the free air anomaly and geoid are calculated correctly from the global model. Both must be consistent with an ellipsoidal Earth and with the treatment of observed gravity data. Further ellipsoidal corrections are then negligible. Precise formulae are developed for the geoid height and the free air anomaly using a global gravity model, given as spherical harmonic coefficients. Although only linear in the anomalous potential, these formulae are otherwise exact for an ellipsoidal reference Earth—they involve closed analytical functions of the eccentricity (and the Earths spin rate), rather than a truncated power series in e2. They are evaluated using EGM96 and give ellipsoidal corrections to the conventional free air anomaly ranging from –0.84 to +1.14 mGal, both extremes occurring in Tibet. The geoid error corresponding to these differences is dominated by longer wavelengths, so extrema occur elsewhere, rising to +766 mm south of India and falling to –594 mm over New Guinea. At short wavelengths, the difference between ellipsoidal corrections based only on EGM96 and those derived from detailed local gravity data for the North Sea geoid GEONZ97 has a standard deviation of only 3.3 mm. However, the long-wavelength components missed by the local computation reach 300 mm and have a significant slope. In Australia, for example, such a slope would amount to a 600-mm rise from Perth to Cairns.  相似文献   

19.
利用GPS定位技术测定跨河两岸点位大地高差,同时使用精密水准仪测定同岸点位的水准高差,据此求出观测点位之高程异常值及其线性变化率,并利用似大地水准面在窄线条小区域范围内高程异常值均匀变化特性,拟合求得跨洋段的高程异常变化率及异常差,从而计算出水准高差。结果表明,采用这种方法得到的精度可靠,满足工程要求。本实践得出了一些有益启示,对类似工程有一定参考借鉴作用。  相似文献   

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