|
- 2016
Cryosat-2数据的大地水准面分辨能力研究
|
Abstract:
Cryosat-2卫星首次提供了369 d重复周期的密集漂移轨道测高数据,可用于改进海洋重力场反演精度和分辨率。从信号和噪声两个角度对其沿轨数据进行自回归建模,给出了一种以重复轨道观测序列差分加和确定信号谱和噪声谱,并比较分析测高数据大地水准面分辨能力的方法(称为信噪比分析法)。对全球5个试验区域采用谱关联性法和信噪比法来分析Cryosat-2沿轨数据的大地水准面,其分辨能力约为23~33 km,均值约为27 km,优于单周期Geosat/ERM、ERS-1/ERM和T/P数据的38 km、43 km和37 km。研究表明,Cryosat-2数据具有更低噪声水平和更高大地水准面信号辨识度,可以为构建海洋重力场模型提供更高分辨率的短波信息
[1] | Driscoll A L, Sailor R V. GFO On-Orbit Altimeter Noise Assessment[R]. NASA:NTRS, 2001 |
[2] | Sandwell D, Smith W H F. Marine Gravity Anomaly from Geosat and ERS-1 Satellite Altimetry[J]. <em>Journal of Geophysical Research</em>, 1997, 102(B5):10039-10054 |
[3] | Sailor R V, Driscoll M L. Comparison of Noise Models and Resolution Capabilities for Satellite Radar Altimeters[C]. Oceans 92 Mastering the Oceans Through Technology, Newport, 1992 |
[4] | Marks K M, Sailor R V. Comparison of GEOS-3 and Seasat Altimeter Resolution Capabilities[J]. <em>Geophysical Research Letters</em>, 1986, 13(7):697-700 |
[5] | Sailor R V. Signal Processing Techniques, Geoid and Its Geophysical Interpretation[M]. Boca Raton, FL:CRC Press, 1993 |
[6] | Yang Yuande, E Dongchen, Hwang Cheinway, et al. Chinese Coastal Gravity Anomalies from Waveform Retracked Geosat/GM Altimetry[J]. <em>Geomatics and Information Science of Wuhan University, </em>2008,33(12):1288-1291(杨元德,鄂栋臣,黄金维,等.Geosat/GM波形重跟踪反演中国沿海区域重力异常[J].武汉大学学报·信息科学版,2008,33(12):1288-1291) |
[7] | Yale M M, Sandwell D, Smith W H F. Comparison of Along-Track Resolution of Stacked Geosat, ERS-1 and Topex Satellite Altimeters[J]. <em>Journal of Geophysical Research</em>, 1995, 100(B8):15117-15127 |
[8] | Maus S, Green C M, Fairhead J D. Improved Ocean-Geoid Resolution from Retracked ERS-1 Satellite Altimeter Waveforms[J]. <em>Geophysical Journal International</em>, 1998, 134(1):243-253 |
[9] | Labroue S, Boy F, Picot N, et al. First Quality Assessment of the Cryosat-2 Altimeter System over Ocean[J]. <em>Advances in Space Research</em>, 2012, 50:1030-1045 |
[10] | Anzenhofer M, Gruber T. Fully Reprocessed ERS-1 Altimeter Data from 1992 to 1995:Feasibility of the Detection of Long Term Sea Level Change[J]. <em>Journal of Geophysical Research</em>,1998, 103(C4):8089-8112 |
[11] | Jin Taoyong, Li Jiancheng, Jiang Weipin, et al. The New Generation of Global Mean Sea Surface Height Model Based on Multialtimetric Data[J]. <em>Acta Geodaetica et Cartographica Sinica</em>, 2011,40(6):723-729(金涛勇,李建成,姜卫平,等.基于多源卫星测高数据的新一代全球平均海面高模型[J].测绘学报,2011,40(6):723-729) |
[12] | Zhang Chuanyin, Li Jiancheng, Chao Dingbo, et al. Calculating Stationary Sea Surface Topography of Coastal Area with Altimeter and Oceanographic Data[J]. <em>Journal of Wuhan Technical University of Surveying and Mapping</em>, 2000,25(6):500-504(章传银,李建成,晁定波,等.联合卫星测高和海洋物理数据计算近海稳态海面地形[J].武汉测绘科技大学学报,2000,25(6):500-504) |
[13] | Wingham D J, Francis C R, Baker S, et al. CryoSat:A Mission to Determine the Fluctuations in Earth's Land and Marine Ice Fields[J]. <em>Adcances in Space Research</em>,2006, 37:841-871 |
[14] | Brammer R F, Sailor R V. Preliminary Estimates of the Resolution Capability of the Seasat Radar Altimeter[J].<em>Geophysical Research Letters</em>, 1998, 7(3):193-196 |
[15] | ESRIN, ESA and Mullard Space Science Laborator. Cryosat Product Handbook[EB/OL]. University College London, https://earth.esa.int/documents/10174/125272/CryoSat_Product_Handbook, 2012 |
[16] | Marsh J G, Koblinsky J, Zwally H J, et al. A Global Mean Sea Surface based Upon GEOS3 and Seasat Altimeter Data[J]. <em>Journal of Geophysical Research</em>, 1992, 97(B4):4915-4921 |
[17] | Deng Kailiang, Bao Jingyang, Zhang Chuanyin, et al. The Determination of Quasi-Stationary Sea Surface Topography over China Sea by Using Multi-altimeter Data[J]. <em>Acta Geodaetica et CartographicaSinica</em>, 2009,38(2):114-119(邓凯亮,暴景阳,章传银,等.联合多代卫星测高数据确定中国近海稳态海面地形模型[J].测绘学报,2009,38(2):114-119) |
[18] | Andersen O B, Knudsen P. Global Marine Gravity Field from the ERS-1 and Geosat Geodetic Mission Altimetry[J]. <em>Journal of Geophysical Research</em>, 1998, 103(C4):8129-8137 |
[19] | Zhang Linghua, Zheng Baoyu. Stochastic Signal Processing[M].Beijing:Press of Tsinghua University, 2003(张玲华,郑宝玉.随机信号处理[M].北京:清华大学出版社,2003) |
[20] | Laxon S W, Giles K A, Ridout A L, et al. CryoSat-2 Estimates of Arctic Sea Ice Thickness and Volume[J].<em>Geophysical Research Letters</em>,2013, 40:732-737 |
[21] | Wang Hubiao, Wang Yong, Lu Yang. High Precision Vertical Deflection over China Marginal Sea and Global Sea Derived from Multi-satellite Altimeter[J]. <em>Geomatics and Information Science of Wuhan University,</em> 2007, 32(9):770-773(王虎彪,王勇,陆洋.联合多种测高数据确定中国边缘海及全球海域的垂线偏差[J].武汉大学学报·信息科学版,2007,32(9):770-773) |
[22] | Li Jiancheng, Ning Jinsheng, Chen Junyong, et al. Geoid Determination in China Sea Areas[J]. <em>Acta Geodaetica et Cartographica Sinica</em>, 2003,32(2):114-119(李建成,宁津生,陈俊勇,等.中国海域大地水准面和重力异常的确定[J]. 测绘学报,2003,32(2):114-119) |
[23] | Li Dawei,Li Jiancheng, Jin Taoyong, et al. Monitoring Global Sea Level Change from 1993 to 2011 Using TOPEX and Jason Altimeter Missions[J].<em>Geomatics and Information Science of Wuhan University</em>, 2012,37(12):1421-1424(李大炜,李建成,金涛勇,等.利用多代卫星测高资料监测1993~2011年全球海平面变化[J].武汉大学学报·信息科学版,2012,37(12):1421-1424) |