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REGIONAL CALVAL OF ALTIMETER RANGE AT NON-DEDICATED SITES IN PREPARATION OF SENTINEL-3

机译:SENTINEL-3制备中非专用位点海拔范围的区域评价

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摘要

In situ calibration ensures regular and long-term control of the altimeter sea surface height (SSH) time series through comparisons with independent records. Usually, in situ calibration and validation of altimeter SSH is undertaken at specific CALVAL sites through the direct comparison of the altimeter data with in situ data [1].rnHowever, NOVELTIS has developed a regional CALVAL technique, which aims at increasing the number and the repeatability of the altimeter bias assessments by determining the altimeter bias both on overflying passes and on satellite passes located far away from the calibration site. In principle this extends the single site approach to a wider regional scale, thus reinforcing the link between the local and the global CALVAL analyses. It also provides a means to maintain a calibration time series through periods of data-outage at a specific dedicated calibration site.rnThe regional method was initially developed at the Corsican calibration sites of Senetosa and Ajaccio. The method was used to compute the biases of Jason-1, Jason-2 and Envisat (before and after the orbit change in 2010) at both sites, and proved its stability and generality through this cross-calibration exercise [2].rnThese last years, the regional method was successfully implemented at the Californian site of Harvest and at the Australian site of Bass Strait, in close collaboration with JPL and the University of Tasmania, respectively. These recent studies gave the first Envisat absolute bias estimates at non-dedicated sites using the same method, and showed high consistency with the analyses of the global CALVAL teams and the work of the in situ CALVAL teams. These results highlight the numerous advantages of this technique for monitoring missions on any orbits such as the future Sentinel-3 and Jason-CS/Sentinel-6 missions.
机译:通过与独立记录进行比较,原位校准可确保对海拔高度海表高度(SSH)时间序列进行定期和长期控制。通常,高度计SSH的原位校准和验证是通过直接比较高度计数据和原位数据在特定的CALVAL站点进行的。[1]然而,NOVELTIS已经开发了一种区域CALVAL技术,旨在增加数量和增加通过确定飞越通道和远离校准地点的卫星通道上的高度计偏差,可以实现高度计偏差评估的可重复性。原则上,这将单站点方法扩展到更大的区域范围,从而加强了本地和全球CALVAL分析之间的联系。它还提供了一种在特定的专用校准站点上通过数据中断来维持校准时间序列的方法。区域方法最初是在Senetosa和Ajaccio的Corsican校准站点开发的。该方法用于计算两个站点的Jason-1,Jason-2和Envisat(2010年轨道变化前后)的偏差,并通过此交叉校准练习证明了其稳定性和通用性[2]。几年来,分别与JPL和塔斯马尼亚大学密切合作,在加利福尼亚的Harvesta网站和澳大利亚的Bass Strait网站成功实施了区域方法。这些最近的研究使用相同的方法对非专用站点进行了首次Envisat绝对偏差估计,并显示了与全球CALVAL团队的分析以及现场CALVAL团队的工作高度一致。这些结果凸显了这种技术在任何轨道上进行监视的技术的众多优势,例如未来的Sentinel-3和Jason-CS / Sentinel-6任务。

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  • 会议地点 Venice(IT)
  • 作者单位

    NOVELTIS, 153 rue du Lac, 31670 Labège, France, Email: mathilde.cancet@noveltis.fr;

    University of Tasmania, Hobart, TAS, Australia 7001, Email: christopher.watson@utas.edu.au;

    JPL, 4800 Oak Grove Drive, MS 238-600, Pasadena, CA 91109, USA, Email: bruce.j.haines@jpl.nasa.gov;

    OCA/Géoazur, 250 rue Albert Einstein, 06560 Valbonne, France, Email: pascal.bonnefond@obs-azur.fr;

    LEGOS/OMP/UPS, 14 Avenue Edouard Belin, 31400 Toulouse, France, Email: florent.lyard@legos.obs-mip.fr;

    ESA/ESRIN, Via Galileo Galilei, Frascati, I-00044, Italy, Email:pierre.femenias@esa.int;

    CNES, 18 Avenue Edouard Belin, 31400 Toulouse, Email:thierry.guinle@cnes.fr;

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  • 入库时间 2022-08-26 14:17:33

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