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Sea Surface Heights Retrieval from Ship-Based Measurements Assisted by GNSS Signal Reflections

机译:GNSS信号反射辅助基于船载测量的海面高度反演

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Measurements of the sea surface height (SSH) can be carried out with GNSS aboard ships, but data about the static draft and the hydrodynamic squat effect are necessary. This information is often not available or has an insufficient accuracy. In this study, an alternative method based on the GNSS signal-to-noise ratio observations is presented. Using this method, the distance between the water surface and a GNSS antenna can be estimated directly, if corrections of the heave and the ship's attitude are considered properly. Suitable segments of a 3-month dataset, gathered aboard a ferry ship operating in the German Bight, were analysed. A global optimization approach based on interval analysis was used and all available observations from a segment were analysed in a common adjustment calculation. The resulting SSH was validated with data from a tide gauge station at Heligoland. The mean difference is 4mm and a standard deviation of the differences of 5.3cm was found. The SSH for the same GNSS dataset was also derived from a well-established processing based on the comprehensive consideration of ship dynamics. The mean difference with respect to the tide gauge was 2mm with a slightly smaller standard deviation of 4.0cm.
机译:可以使用船上的GNSS进行海面高度(SSH)的测量,但是有关静态吃水和水动力下蹲效应的数据是必需的。该信息通常不可用或准确性不足。在这项研究中,提出了一种基于GNSS信噪比观测值的替代方法。使用这种方法,如果适当地考虑了升沉和船舶姿态的校正,则可以直接估算水面与GNSS天线之间的距离。分析了三个月数据集的适当部分,这些数据是在德国湾的一艘渡轮上收集的。使用了基于区间分析的全局优化方法,并在通用调整计算中分析了来自某个段的所有可用观察值。最终的SSH已通过Heligoland潮汐仪站的数据进行了验证。平均差异为4毫米,差异的标准偏差为5.3厘米。相同的GNSS数据集的SSH也是基于对船舶动力学的综合考虑,从完善的处理过程中得出的。相对于潮位仪的平均差为2mm,标准差为4.0cm,略小。

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