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1.
张小红  马兰  李盼 《测绘学报》2016,45(6):631-638
利用动态PPP对香港12个GPS测站2007—2012年的数据反演了海潮负荷位移,通过与7个全球海潮模型、1个区域模型和静态PPP反演的结果比较发现,相对于另外几个模型,动态PPP反演结果与TPXO.7.2、EOT11a、HAMTIDE和NAO99Jb模型的结果符合得更好。与静态PPP的结果比较发现其RMS与各模型的RMS大体上一致,只是在S2、K2和K1的E方向和M2、S2的N方向稍有增加。此外,除K2和K1潮波外,动态PPP与模型的RMS值在水平方向上均小于1 mm,在垂直方向上均小于2.5 mm,能达到和静态PPP相当的精度。本文反演的结果与NAO99Jb模型值存在明显的系统偏差,当去除系统偏差后,所有潮波的RMS值都有明显的减小,尤其在K1的垂直方向RMS从16.4 mm减少到1.3 mm。此外,通过将香港2012年验潮站数据反演的潮波参数与模型的结果进行比较发现,其结果同样与TPXO.7.2、EOT11a、HAMTIDE和NAO99Jb这4个模型更为符合,这进一步验证了动态PPP反演海潮的有效性,同时说明这4个模型比较适合香港区域。  相似文献   

2.
王俊杰  郭锴 《测绘科学》2021,46(10):13-19
针对新型海潮模型对区域海潮负荷位移估计的影响分析不足的问题,该文依托福建省基础地理信息中心A级GNSS网,基于八大系列全球海潮模型的最新版本和区域海潮模型NAO99Jb,分析了不同海潮模型对福建地区海潮负荷位移的影响,并利用验潮站数据评定了海潮模型在当地的适用性.结果表明,海潮模型的差异主要集中在台湾海峡两岸,而在湄洲湾以北至浙江沿海一带,M2分潮的STD甚至超过30 cm;海潮模型差异主要影响海潮负荷位移的垂向分量,平均影响程度基本是水平分量的3倍;福建地区M2、S2、N2、K1和O1等分潮负荷位移的最大差异可达亚毫米至毫米级,且各分潮负荷位移的STD随着离海距离增大按负指数函数规律减小,海潮模型差异仅对近海50 km内的地区影响较大;FES2014b在闽台附近海域精度最高,是福建地区海潮负荷位移估计首选的海潮模型.  相似文献   

3.
比较并分析了FES99潮汐模型和NAO.99Jb潮汐模型在浙江近海的精度;利用调和分析法计算了浙江近海的8个主要分潮和3个浅水分潮的调和常数;研究了浙江近海海图深度基准面的计算方法;利用长期验潮站资料验证了本文方法的可靠性与准确性;利用径向基函数方法格网化了经验潮站海图深度基准值加密后的数据,最终得到了浙江近海分辨率为2.5'×2.5'的海图深度基准面模型.  相似文献   

4.
为了分析全球定位系统/北斗三号(GPS/BDS-3)长基线解算中海潮模型的影响,该文采用常用的NAO.99b、FES2004、FES2014海潮模型,分别对BDS-3和GPS基线解算进行标准化均方根误差(NRMS)、基线重复率和均方根误差对比分析。通过中国周边17个MGEX站7 d数据测试表明:加入海潮模型后GPS/BDS-3的NRMS值均有提升,GPS基线重复性略优于BDS-3,均达到10-9;NAO99.b、FES2004、FES2014海潮模型对BDS-3内符合精度在N、E方向上提升不明显,U方向上分别提升6%、8.5%、9%,外符合精度在E方向上提升19%、23.8%、28.8%,在U方向上提升6.5%、5.5%、8%;GPS内符合精度提升不明显,外符合精度在N方向上提升1%、11.9%、12.2%,在E方向上精度相当,在U方向上提升2.3%、4.1%、5.1%。  相似文献   

5.
针对基于沿海GPS站点坐标时间序列反演海潮负荷特征信息研究较少的问题,提出利用FFT与HHT提取海潮负荷信息,两种频谱方法原理各异,但都可将目标信息从原始数据中分离出。基于沿海站点的坐标时间序列,经小波去噪后进行海潮分潮特征信息提取试验,最后与3种全球海潮模型FES2004、NAO.99b和GOT4.7的模型值比较,评估两种方法的反演精度,结果显示:HHT、FFT都能够准确探测到海潮分潮信号,FFT全日潮周期反演结果优于HHT反演结果,半日潮周期反演精度相当;HHT边际谱的谱值为对应频率出现的可能程度,无法与模型值进行比较,而FFT振幅值为绝对值,其结果与模型值符合情况良好;在探测未知信号时,FFT可能会探测出虚假信号,而HHT更能真实反映信号的组成。  相似文献   

6.
针对全球海潮模型在不同沿海地区存在差异性以及在中国近海精度不高的问题,利用全球海潮模型FES2004和NAO99b计算上海地区(经纬度范围为120.85°E~122.2°E,30.6667°N~31.8833°N)S2、M2、K1和O1四个分潮的海潮负荷位移在垂直分量上的差异;并利用中国近海模型osu.chinasea.2010对全球海潮模型FES2004中相应的区域进行替换,计算近海效应对SHJZ站(上海金山)、SHJBS站(上海宝山)、SHAO站(上海佘山)以及DCMD站(上海崇明)四个测站精密定位的影响。结果表明:1) 全球海潮模型FES2004和NAO99b在上海地区存在较明显的差异,尤其是垂直分量,最大接近4 mm,且两个模型的差异随离海洋距离增大而减小;2) 利用修正前后的全球海潮模型FES2004经过计算分析得出,近海效应对上海地区GPS测站精密定位的影响达到5 mm,对测站垂直分量的位移影响从大到小分别是DCMD站(5.1 mm)、SHBS站(4.9 mm)、SHJS(4.2 mm)、SHAO(3.6 mm)。   相似文献   

7.
基于TOPEX/Poseidon和Jason-1卫星高度计16 a原始轨道、6 a变轨轨道数据,利用同步观测期间测高数据计算中国南海海域的系统偏差,生成基于TOPEX/Poseidon高度计平均海面的统一潮高时间序列,按纬差0.1°间隔提取原始轨道2 184个正常点和变轨轨道1 626个正常点,分别对原始轨道、变轨轨道逐正常点进行调和分析及响应分析,各得到8个分潮(Q1、O1、P1、K1、N2、M2、S2和K2)调和常数。利用交叉点处升轨、降轨不符值评估潮汐参数的稳定性,结果表明,变轨轨道交叉点处误差相对较大,多分潮总体综合预报误差RSS值为7.28 cm。通过与全球海潮模型比较表明,该结果与海潮模型在中国南海开阔海域精度表现一致,在半封闭浅水海域差异较大;与验潮站结果进行比较发现,受中国南海复杂的潮波系统、与测高星下点距离等因素影响,中国南海北部海域RSS值较大,海潮模型结果在M2分潮单分潮预报中误差RMS值较大,为13.64 cm,其余分潮均在10 cm内。  相似文献   

8.
中国近海及邻近海域高精度高分辨率海面高的确定   总被引:1,自引:0,他引:1  
利用新的海潮模型(NAO99B)更为合理的共线方法和交叠平差技术,有效改善了ERM数据的径向轨道误差和时变海面高的影响,提高了浅海海域测高数据的测高精度。  相似文献   

9.
GPS精密定位中的海潮位移改正   总被引:2,自引:0,他引:2  
根据海洋负荷潮理论,利用NAO99b全球海潮模型,计算了中国部分IGS站的海潮位移改正,并将海潮位移改正应用到GPS数据处理当中。在GAMIT软件的解算过程中,分别按加入和不加入海潮位移改正,对GPS基线分量和测站坐标分别进行了计算和比较分析。结果表明,海潮位移改正无论是对GPS基线分量还是对测站坐标,都有一定的影响。  相似文献   

10.
针对影响山东地区GPS测量精度的重要因素之一——海潮负荷,不同海潮模型在山东沿海地区差异较大的问题,该文以山东CORS数据为例,基于FES2004、NAO99b、CSR4.0、GOT00.2 4种全球海潮模型,使用GAMIT软件,分析了海潮负荷对山东地区GPS定位及基线解算的影响。通过对比分析,海潮负荷对山东地区GPS定位的影响主要体现在U方向上,振幅达到厘米级;海潮负荷对山东沿海定位的影响大于山东内陆,U方向达到了2cm,为内陆地区2倍以上;海潮负荷对基线解算的影响与基线方位和基线两端测站负荷差异有关,其中差异较大的基线U方向的影响接近8mm;除GOT00.2海潮模型以外,不同模型对山东地区较长观测时段的GPS数据解算结果的影响并无太大差异,但对于短时观测或实时的GPS高精度定位,半日分潮迟角的精度还有待提高,因此有必要精细化山东区域海潮模型。  相似文献   

11.
The quality of altimeter data and ocean tide model is critical to the recovery of coastal gravity anomalies. In this contribution, three retracking methods (threshold, improved threshold and Beta-5) are investigated with the aim of improving the altimeter data over a shallow water area. Comparison indicates that the improved threshold is the best retracking method over China Sea. Two ocean tide models, NAO99b and CSR4.0, are analyzed. Results show that different tide models used in the processing of altimeter data may result in differences more than 10 mGal in recovered coastal gravity anomalies. Also, NAO99b is more suitable than CSR4.0 over the shallow water area of China Sea. Finally, gravity anomalies over China Sea are calculated from retracked Geosat/GM and ERS-1/GM data by least squares collocation. Comparison with shipborne gravimetry data demonstrates that gravity anomalies from retracked data are significantly superior to those from non-retracked data. Our results have the same order as the other two altimeter-derived gravity models: Sandwell&Smith(V16) and DNSC08.  相似文献   

12.
In this paper we examine OTL displacements detected by GPS stations of a dedicated campaign and validate ocean tide models. Our area of study is the continental shelf of Brittany and Cotentin in France. Brittany is one of the few places in the world where tides provoke loading displacements of ∼10–12 cm vertically and a few cm horizontally. Ocean tide models suffer from important discrepancies in this region. Seven global and regional ocean tide models were tested: FES2004 corrected for K2, TPXO.7.0, TPXO.6.2, GOT00.2, CSR4.0, NAO.99b and the most recent regional grids of the North East Atlantic (NEA2004). These gridded amplitudes and phases of ocean tides were convolved in order to get the predicted OTL displacements using two different algorithms. Data over a period of 3.5 months of 8 GPS campaign stations located on the north coast of Brittany are used, in order to evaluate the geographical distribution of the OTL effect. We have modified and implemented new algorithms in our GPS software, GINS 7.1. GPS OTL constituents are estimated based on 1-day batch solutions. We compare the observed GPS OTL constituents of M2, S2, N2 and K1 waves with the selected ocean tide models on global and regional grids. Large phase-lag and amplitude discrepancies over 20° and 1.5 cm in the vertical direction in the semi-diurnal band of M2 between predictions and GPS/models are detected in the Bay of Mont St-Michel. From a least squares spectral analysis of the GPS time-series, significant harmonic peaks in the integer multiples of the orbital periods of the GPS satellites are observed, indicating the existence of multipath effects in the GPS OTL constituents. The GPS OTL observations agree best with FES2004, NEA2004, GOT00.2 and CSR4.0 tide models.  相似文献   

13.
在高精度GPS数据处理中,海潮的影响是一个不可忽略的因素。利用GAMIT软件解算2011年东南极沿海地区中国中山站及其周边6个IGS站的GPS数据,对比分析了FES2004、DTU10、EOT11a、GOT4.7、HAMTIDE11a、OSU12以及TPXO7.2等7个全球海潮模型在不同测站的海潮负荷差异,比较了海潮负荷对于GPS基线解的影响。结果表明,海潮负荷对GPS基线解的影响与测站所处位置及基线方位有关,达到cm级,相对影响达到10-8,因此,在高精度的GPS基线解算中必须考虑海潮的影响;但选用不同海潮模型对东南极沿海地区GPS基线解算的差异可忽略不计。  相似文献   

14.
针对近海区域海潮变化复杂且海潮负荷效应显著,而全球海潮模型在近海区域精度较低的问题,该文提出了将全球海潮模型NAO.99b和区域模型osu.chinasea.2010相结合,分析海潮对中国大陆及周边地区IGS站的影响。使用GAMIT软件解算IGS站实测数据,通过海潮负荷计算软件SPOTL对解算结果进行改正,并对改正效果进行对比和分析。结果表明,海潮负荷对中国及周边区域站点的影响主要体现在垂直方向,对一些站点的影响可以达到厘米级;海潮负荷对站点坐标的改正效果明显,特别是日本的种子岛站改正效果接近30%;站点改正效果从沿海到内陆逐渐减弱。  相似文献   

15.
Three-dimensional ocean tide loading (OTL) displacements of eight diurnal and semidiurnal constituents at 12 sites in Hong Kong were estimated using 3–7 years of continuous global positioning system (GPS) observations. OTL displacements were estimated using the precise point positioning (PPP) technique on a daily basis and then combined. The OTL displacements obtained by GPS were compared with predictions using seven recent global ocean tide models. The effect of OTL displacements on GPS position time series was also investigated. The study shows that the GPS-derived OTL displacements (excluding K1 and K2 constituents) agree best with those predicted by the GOT4.7 and NAO99b models. The GPS/model agreement is generally at the sub-millimeter level, except for S2, K1, and K2 constituents with relatively large errors. After systematic biases between the GPS and model values are removed, the misfits of all sites for M2, S2, N2, O1, P1, and Q1 are less than 0.5 and 1.0 mm in the horizontal and vertical components, respectively, while larger misfits (within 2.5 mm) are observed for K1 and K2. Integer ambiguity fixing slightly improves the east component of OTL displacement estimates. The study also finds that GPS-derived OTL corrections, instead of model predicts, can be used in daily data processing with the exception of K1 and K2. Including K2 corrections, a secular vertical rate of up to 1 mm/year in position time series can be induced, which needs to be confirmed by further studies.  相似文献   

16.
In recent years, ocean tide loading displacements (OTLD) have been measured using the Global Positioning System (GPS) and Very Long Baseline Interferometry (VLBI). This study assesses the accuracy of GPS measurements of OTLD by comparison with VLBI measurements and estimates derived from numerical ocean tide models. A daily precise point positioning (PPP) analysis was carried out on ∼11 years of GPS data for each of 25 sites that have previous OTLD estimates based on data from co-located VLBI sites. Ambiguities were fixed to integer values where possible. The resulting daily estimates of OTLD, at eight principal diurnal and semi-diurnal tidal frequencies, were combined to give GPS measurements of OTLD at each site. The 3D GPS and VLBI measurements of OTLD were compared with estimates computed (by convolution with Green’s functions) from five modern ocean tide models (CSR4.0, FES2004, GOT00.2, NAO99b and TPXO6.2). The GPS/model agreement is shown to be similar to the VLBI/model agreement. In the important radial direction, the GPS/model misfit is shown to be smaller than the VLBI/model misfit for seven of the eight tidal constituents; the exception being the K2 constituent. Fixing of GPS carrier-phase ambiguities to integer values resulted in a marginal improvement to the GPS/model agreement. Statistically, it is shown there is no significance to the difference between the fit of the GPS and VLBI measurements of OTLD to modelled values. Equally, differences in fit of either the complete set of GPS or VLBI estimates to the five sets of model-derived values cannot be identified with statistical significance. It is thus concluded that, overall, we cannot distinguish between GPS and VLBI measurements of OTLD, and that at the global scale, present ocean tide models are accurate to within the current measurement noise of these techniques.  相似文献   

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