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Adaptive re-traking of Jason-1 altimeter data for inland waters (on an example the Gorky reservoir on the Volga river

机译:内陆水域Jason-1高度计数据的自适应重新追踪(在伏尔加河上的高尔基水库上的示例

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The problem of minimization of the errors in the water level retrieving for the Gorky reservoir from altimetry measurements can be resolved by re-tracking of Jason-1 satellite altimeter data. For justification of the optimal re-tracking algorithm the average impulse response of the statistically inhomogeneous surface were calculated theoretically for the model of the terrain in the vicinity of Gorky reservoir. The modeled waveforms are in good agreement with the Jason-1 ,2 waveforms for the same area. Comparing of the data with in situ measurements shows that re-tracking significantly improves measurements of the water level. General principles of re-tracking algorithms for complex areas (land, coastal zone, inland waters, etc) based on calculations of the waveforms taking into account statistical inhomogeneity of the reflecting surface adjusted to a certain geographic region, are discussed.
机译:通过重新跟踪Jason-1卫星高度计数据,可以解决从高尔维测量测量中检索高尔基储存器的水位中的误差问题。对于最佳重新跟踪算法的理由,理论上,在高尔基储层附近的地形模型地计算统计学上不均匀表面的平均脉冲响应。模型波形与同一区域的Jason-1,2波形吻合良好。与原位测量的数据的比较表明,重新跟踪显着改善了水位的测量。讨论了基于考虑到对特定地理区域的反射表面的统计不均匀性的波形计算的复杂区域(沿海区域,内陆水域等的重新跟踪算法的一般原理。

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