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

机译:在准备Sentinel-3的非专用网站的Altimeter系列的区域Calval

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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]. However, 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. The 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]. These 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:原位校准通过与独立记录的比较确保高度计海面高度(SSH)时间序列的定期和长期控制。通常,在特定的CALVAL站点通过直接比较与原位数据的直接比较进行特定的CALVAL站点,以原位校准和验证进行了校准和验证。然而,Noveltis开发了一种区域性钙技术,旨在通过确定超细通过以及远离校准站点的卫星通行证来增加高度计偏见评估的数量和重复性。原则上,这将单一站点方法扩展到更广泛的区域规模,从而加强了本地和全球性钙分析之间的联系。它还提供了一种通过特定专用校准站点的数据中断期间维护校准时间序列的方法。最初在Senetosa和Ajaccio的Corsican校准点开发了区域方法。该方法用于计算在两个站点的jason-1,jason-2和Envisat的偏差(2010年在2010年的轨道发生变化之前和之后),并通过该交叉校准运动证明其稳定性和一般性[2]。除此之外,区域方法分别在加州收获遗址和澳大利亚澳大利亚的澳大利亚的澳大利亚澳大利亚的澳大利亚的澳大利亚分别与JPL和塔斯马尼亚大学的合作成功实施。这些最近的研究通过相同的方法在非专用网站上提供了第一个Envisat绝对偏见估计,并显示了与全球Calval团队的分析以及原位卡尔瓦尔队的工作的高度一致性。这些结果突出了该技术的许多优势,用于监测任何轨道上的任务,如未来的哨兵-3和jason-cs / sentinel-6任务。

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