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GNSS-Based Sea Level Monitoring

机译:基于GNSS的海平面监测

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摘要

This paper attempts to assess the use of Global Navigation Satellite System (GNSS) as an accurate, reliable, and easy tool for sea level measurement. The GNSS technique was incorporated into a float based tide gauge system. A prototype of such an instrument was developed based on principles of conventional tide gauges, where high frequency noise is reduced mechanically. The ability of the GNSS based tide gauge (GTG) to monitor sea levels was tested in several experiments. The performance of the GTG was compared to that of a traditional tide gauge. The method of data analysis and data comparison between the GPS measurements and the tide gauge data is presented. The results show that the GTG is equal in performance to the traditional float operated tide gauge. It seems that the GTG is capable of delivering the same level of accuracy (1 cm), and its results are as reliable as its competitor, the traditional float tide gauge. The suggested instrument can be easily integrated into the array of permanent GNSS stations and assist in absolute measurements of sea level changes, caused by global warming and the greenhouse effect, for example.
机译:本文试图评估全球导航卫星系统(GNSS)作为海平面测量的准确,可靠和简便工具的使用。 GNSS技术已合并到基于浮标的潮位计系统中。这种仪器的原型是根据常规潮汐仪的原理开发的,其中机械地降低了高频噪声。在多个实验中测试了基于GNSS的潮汐仪(GTG)监测海平面的能力。将GTG的性能与传统的潮汐仪进行了比较。提出了GPS测量与潮汐仪数据之间的数据分析和数据比较方法。结果表明,GTG在性能上与传统的浮控潮汐仪相同。 GTG似乎能够提供相同水平的精度(1厘米),其结果与竞争对手传统的浮潮仪一样可靠。所建议的仪器可以轻松地集成到永久性GNSS站阵列中,并有助于绝对测量例如由全球变暖和温室效应引起的海平面变化。

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