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Investigating the effects of ultra-rapid, rapid vs. final precise orbit and clock products on high-rate GNSS-PPP for capturing dynamic displacements

机译:研究超快速,快速与最终精确轨道和时钟产品对高速GNSS-PPP的影响,以捕获动态位移

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摘要

The use of final IGS precise orbit and clock products for high-rate GNSS-PPP proved its effectiveness in capturing dynamic displacement of engineering structures caused by earthquakes. However, the main drawback of using the final products is that they are available after approximately two weeks of data collection, which is not suitable for timely measures after an event. In this study, the use of ultra-rapid products (observed part), which are available after a few hours of data collection, and rapid products, which are available in less than 24 hrs, are investigated and their results are compared to the more precise final products. The tests are designed such that harmonic oscillations with different frequencies and amplitudes and ground motion of a simulated real earthquake are generated using a single axis shake table and the PPP was used to capture these movements by monitoring time-change of the table positions. To evaluate the accuracy of PPP using ultra-rapid, rapid and final products, their results were compared with relative GNSS positioning and LVDT (Linear Variable Differential Transformer) data, treated as reference. The results show that the high-rate GNSS-PPP solutions based on the three products can capture frequencies of harmonic oscillations and dynamic displacement with good accuracy. There were slight differences between ultra-rapid, rapid and final products, where some of the tested events indicated that the latter two produced are more accurate and provide better results compared to the ultra-rapid product for monitoring short-term dynamic displacements.
机译:将最终IGS精确轨道和时钟产品用于高速GNSS-PPP,证明了其在捕获地震引起的工程结构动态位移方面的有效性。但是,使用最终产品的主要缺点是,大约需要两周的数据收集后才可以使用它们,这不适合在事件发生后及时采取措施。在这项研究中,调查了几个小时的数据收集后可获得的超快速产品(观察到的部分)和不到24小时即可获得的快速产品的使用,并将其结果与更多产品进行比较。精确的最终产品。设计测试的目的是使用单轴振动台产生具有不同频率和振幅的谐波振荡以及模拟真实地震的地震动,并使用PPP通过监视平台位置的时变来捕获这些运动。为了评估使用超快速,快速和最终产品的PPP的准确性,将其结果与相对GNSS定位和LVDT(线性可变差动变压器)数据进行比较,以作为参考。结果表明,基于这三种产品的高速GNSS-PPP解决方案可以准确捕获谐波振荡和动态位移的频率。超快速,快速和最终产品之间存在细微差异,其中一些测试事件表明,与用于监测短期动态位移的超快速产品相比,后两种产品更准确并提供更好的结果。

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