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Altimetric Algorithm and Errors of Ocean Altimetry Using GNSS Reflection Signals 被引量:1

Altimetric Algorithm and Errors of Ocean Altimetry Using GNSS Reflection Signals
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摘要 As a new remote sensing technology, the global navigation satellite system(GNSS) reflection signals can be used to collect the information of ocean surface wind, surface roughness and sea surface height. Ocean altimetry based on GNSS reflection technique is of low cost and it is easy to obtain large amounts of data thanks to the global navigation satellite constellation. We can estimate the sea surface height as well as the position of the specular reflection point. This paper focuses on the study of the algorithm to determine the specular reflection point and altimetry equations to estimate the sea surface height over the reflection region. We derive the error equation of sea surface height based on the error propagation theory. Effects of the Doppler shift and the size of the glistening zone on the altimetry are discussed and analyzed at the same time. Finally, we calculate the sea surface height based on the simulated GNSS data within the whole day and verify the sea surface height errors according to the satellite elevation angles. The results show that the sea surface height can reach the precision of 6 cm for elevation angles of 55° to 90°, and the theoretical error and the calculated error are in good agreement. As a new remote sensing technology, the global navigation satellite system(GNSS) reflection signals can be used to collect the information of ocean surface wind, surface roughness and sea surface height. Ocean altimetry based on GNSS reflection technique is of low cost and it is easy to obtain large amounts of data thanks to the global navigation satellite constellation. We can estimate the sea surface height as well as the position of the specular reflection point. This paper focuses on the study of the algorithm to determine the specular reflection point and altimetry equations to estimate the sea surface height over the reflection region. We derive the error equation of sea surface height based on the error propagation theory. Effects of the Doppler shift and the size of the glistening zone on the altimetry are discussed and analyzed at the same time. Finally, we calculate the sea surface height based on the simulated GNSS data within the whole day and verify the sea surface height errors according to the satellite elevation angles. The results show that the sea surface height can reach the precision of 6 cm for elevation angles of 55° to 90°, and the theoretical error and the calculated error are in good agreement.
出处 《China Ocean Engineering》 SCIE EI CSCD 2015年第6期933-944,共12页 中国海洋工程(英文版)
基金 financially supported by the National Natural Science Foundation of China(Grant No.41374009) the Shandong Natural Science Foundation of China(Grant No.ZR2013DM009) the National Basic Research Program of China(973 Program Grant No.2013CB733302) the Public Benefit Scientific Research Project of China(Grant No.201412001) the SDUST Research Fund(Grant No.2014TDJH101)
关键词 GNSS refection technique sea surface height specular reflection point error propagation ocean altimetry GNSS refection technique sea surface height specular reflection point error propagation ocean altimetry
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