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首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >Precision of Ku-Band Reflected Signals of Opportunity Altimetry
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Precision of Ku-Band Reflected Signals of Opportunity Altimetry

机译:Ku波段机会测高信号的精度

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摘要

This letter provides a proof-of-concept experiment and validation of an error model for bistatic altimetry using signals of opportunity (SoOps). Coastal sea surface height plays a prominent role in measuring the total water-level envelope directly and is one of the key quantities required by storm surge applications and services. Nadir satellite altimeters have a long history of mapping the variability of the earth's open ocean. However, they exhibit problems operating in coastal areas due to the effects, such as land contamination, rapid variations due to tides, and atmospheric effects. One technique for filling this gap is bistatic altimetry using SoOp (e.g., digital communication signal reflections). In this letter, we investigate capabilities of this technique. Twenty three days of data were collected at platform harvest from a single channel of the Ku-Band direct broadcast satellite. The wind speed observed during the experiment was between 4 and 14 m/s and significant wave height was between 0.7 and 4 m as measured by buoy 46 218 located 8 km away. The standard deviation in the estimation of height was found to be 7.2 cm (the same as predicted from theory). Using a least-squares approach improved the precision reducing the standard deviation to 6.8 cm. It is shown that the error in the estimation of height can be reduced to 3.5 cm by utilizing the full bandwidth (all the channels) of the SoOp. Extrapolating these results, we predict a precision of 5.3 cm from a typical (e.g., Jason) orbit of 1380 km.
机译:这封信提供了概念证明实验,并使用机会信号(SoOps)对双基地测高的误差模型进行了验证。沿海海面高度在直接测量总水位包络中起着重要作用,并且是风暴潮应用和服务所需的关键量之一。天底卫星高度计具有绘制地球开放海洋变化性的悠久历史。然而,由于这些影响,它们表现出在沿海地区运行的问题,例如土地污染,潮汐引起的快速变化以及大气影响。填补这一空白的一种技术是使用SoOp的双基地测高技术(例如,数字通信信号反射)。在这封信中,我们将研究这项技术的功能。在平台收获时从Ku波段直接广播卫星的单个频道收集了23天的数据。实验中观察到的风速在4到14 m / s之间,而显着的波高在0.7到4 m之间,这是由位于8公里之外的46218浮标测得的。发现高度估计的标准偏差为7.2 cm(与理论预测的相同)。使用最小二乘法提高了精度,将标准偏差降低到6.8 cm。结果表明,通过利用SoOp的全带宽(所有通道),可以将高度估计中的误差减小到3.5 cm。根据这些结果推算,我们预计从1380 km的典型(例如Jason)轨道的精度为5.3 cm。

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