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Retracking of Jason-1 Data

机译:跟踪Jason-1数据

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We present the results of retracking 18 cycles (15 from the Jason-TOPEX collinear period) of Jason-1 data. We used the retracking method of Rodriguez which simultaneously solves for all relevant waveform parameters using a 26 Gaussian model of the altimeter point target response. We find significant differences from the Jason-1 Project retracking in the key parameters of range and significant wave height (SWH) in the second version of the Project SGDRs. The differences from the Jason-1 data have a strong dependence on off-nadir angle and some dependence on SWH. The dependence of range on SWH is what is called sea state bias. The retracking technique also estimates surface skew-ness. For Jason-l with its very clean waveforms we make the first direct estimates of the skewness effect on altimeter data. We believe that the differences found here and thus in overall sea surface height are the result of the standard project processing using a single Gaussian approximation to the Point Target Response (PTR) and not solving simultaneously for off nadir angle. We believe that the relatively large sea state bias errors estimated empirically for Jason-1 during the cal/val phase result from sensitivity of quantities, particularly SWH, in project GDRs to off nadir angle. The TOPEX-Jason-1 bias can be determined only when a full retracking of Jason-l is done for the collinear period.
机译:我们介绍了Jason-1数据重新跟踪18个周期(Jason-TOPEX共线性周期中有15个周期)的结果。我们使用Rodriguez的重新跟踪方法,该方法使用高度计点目标响应的26高斯模型同时求解所有相关的波形参数。我们发现在第二版Project SGDR中,距离Jason-1项目重新跟踪的关键参数在范围和有效波高(SWH)方面存在显着差异。与Jason-1数据的差异对离天底角有很强的依赖性,而对SWH也有一定的依赖性。距离对SWH的依赖性就是所谓的海态偏差。重新跟踪技术还可以估计表面偏斜度。对于具有非常干净的波形的Jason-1,我们首先对高度计数据的偏度影响进行了直接估计。我们相信,这里发现的差异以及整个海表高度的差异是标准项目处理的结果,该处理使用对点目标响应(PTR)的单个高斯近似,而不是同时求解最低天底角。我们认为,在cal / val阶段,根据经验估算的Jason-1相对较大的海面偏差误差是由于项目GDR中的量(尤其是SWH)对离天底角的敏感性所致。仅当在共线周期内完成Jason-1的完全重新跟踪时,才能确定TOPEX-Jason-1偏差。

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