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首页> 外文期刊>Acta Oceanologica Sinica >Shenzhou -4 spaceborne altimeter waveform processing and significant wave height retrieval
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Shenzhou -4 spaceborne altimeter waveform processing and significant wave height retrieval

机译:神舟-4星载高度计波形处理和有效波高提取

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摘要

The Shenzhou -4 spaceborne (SZ -4) altimeter waveforms were processed, and then the significant wave heights (SWH) was retrieved on the basis of waveform fitting and waveform retracking. Waveforms processing includes the waveform Is averaging, the elimination of thermal noise and the waveforms normalization. Double peaks were found on each SZ - 4 waveform, and it was pointed out that the region of waveforms with the second peak is abnormal and its effects on the whole waveform in the waveform fit should be taken into consideration. To obtain the width of the waveform leading-edge, a method was proposed to find the starting point of waveform, and the half-power point of waveform was found by retracking the waveform. The normalized waveforms were fitted with the Haynes model by using the weighting least square fit method. Then the selections of the weighting coefficients and their effects on significant wave hight retrieving were discussed, and the optimal five-region weighting method was proposed. At last, the SWH data of SZ - 4 altimeter retrieved by using the proposed method were compared with those of ERS - 2 and Jason - 1 altimeter, and it was concluded that the SZ -4 altimeter can detect significant wave height.
机译:处理了神舟-4星载(SZ -4)高度计波形,然后在波形拟合和波形重新跟踪的基础上检索了重要的波高(SWH)。波形处理包括平均波形,消除热噪声和波形归一化。在每个SZ-4波形上都发现了两个峰值,并指出带有第二个峰值的波形区域是异常的,应考虑其对波形拟合中整个波形的影响。为了获得波形前沿的宽度,提出了一种找到波形起点的方法,并通过对波形进行重新跟踪来找到波形的半功率点。使用加权最小二乘拟合方法将标准化后的波形与Haynes模型拟合。然后讨论了加权系数的选择及其对有效波高反演的影响,提出了最佳的五区加权方法。最后,将所提方法得到的SZ-4高度表的SWH数据与ERS-2和Jason-1高度表的SWH数据进行了比较,得出的结论是SZ-4高度表可以检测到明显的波高。

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