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Monitoring the Study of Offshore Sea Level Changes with GPS-MR Technology

机译:用GPS-MR技术监测海上海平面变化的研究

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The monitoring of sea level change is a hot issue in the field of marine environment and global climate change research. With the rapid development of GNSS theory and application, GPS-MR technology based on multipath effect has been proved by scholars to be used for tidal level monitoring. In order to further expand the application space of GPS-MR technology in the field of marine environment monitoring, this paper conducts research on offshore sea level change based on tidal level change data acquired by GNSS-MR. This paper first gives the calculation process of GPS-MR technology to obtain the daily average sea surface, and then obtains the high-precision daily average sea surface and month by using the measured data of GNSS at different time intervals and different frequencies on the shore of the Harbour Harbor in Washington, USA. The average sea surface is in good agreement with the results of the tide check station. The experimental results show that GPS-MR technology has higher precision for obtaining tidal level change and regional mean sea surface change, and lays a foundation for GPS-MR technology to supplement satellite altimetry for offshore sea level change and to carry out offshore sea tide model refinement.
机译:海平面变化的监测是海洋环境和全球气候变化研究领域的一个热门问题。随着GNSS理论和应用的快速发展,基于多径效应的GPS-MR技术已被学者用来用于潮汐层面监测。为了进一步扩大Marine环境监测领域GPS-MR技术的应用空间,本文对基于GNSS-MR获取的潮汐层面变化数据进行海上海平面变化的研究。本文首先给出了GPS-MR技术的计算过程,以获得每日平均海面,然后通过使用不同的时间间隔和岸上的不同频率获得GNSS的测量数据来获得高精度的日常平均海面和月份港口港口在华盛顿,美国。平均海面与潮汐检查站的结果很好。实验结果表明,GPS-MR技术具有更高的精度,可获得潮汐水平变化和区域平均海面变化,为GPS-MR技术为卫星高度改变进行补充卫星Altimetry以及陆上海浪模型的基础细化。

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