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首页> 外文期刊>NRIAG Journal of Astronomy and Geophysics >Precise troposphere delay model for Egypt, as derived from radiosonde data
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Precise troposphere delay model for Egypt, as derived from radiosonde data

机译:根据探空仪数据推导的埃及精确对流层延迟模型

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Tropospheric delay computation is necessary to improve GPS measurements accuracy. Precise determination of these propagation delays requires knowledge of the full refraction profile at signal path. In the present research, precise troposphere slant delay model (PTD) is derived based on ten stations of radiosonde data well-distributed over and around Egypt. To derive the PTD, the troposphere is divided into regular small layers. Ray tracing technique of actual signal path traveled in the troposphere is used to estimate tropospheric slant delay.Real GPS data of six stations in 8-day period were used for the assessment of zenith part of PTD model against the available international models. These international models include Saastamoinen, Hopfield, and the local Egyptian dry model proposed by Mousa & El-Fiky. The data were processed using Bernese software version 5.0. The closure error results indicate that the PTD model is the best model in all session, but when the available radiosonde stations are less, the accuracy of PTD model is near to classic models. As radiosonde data for all ten stations are not available every session, it is recommended to use one of the regularization techniques for database to overcome missing data and derive consistent tropospheric delay information.
机译:对流层延迟计算对于提高GPS测量精度是必要的。要精确确定这些传播延迟,需要了解信号路径上的完整折射轮廓。在本研究中,精确的对流层倾斜延迟模型(PTD)是基于在埃及及其周围分布良好的十个探空仪数据台站得出的。为了得出PTD,将对流层分为规则的小层。利用对流层中实际信号路径的光线追踪技术来估计对流层倾斜延迟。将八天周期内六个台站的真实GPS数据与现有国际模型相结合来评估PTD模型的天顶部分。这些国际模型包括Saastamoinen,Hopfield和Mousa&El-Fiky提出的本地埃及干燥模型。使用Bernese软件5.0版处理数据。闭合误差的结果表明,PTD模型是所有时段的最佳模型,但是当可用的探空电台数量较少时,PTD模型的准确性接近经典模型。由于并非每个会话都可获得所有十个电台的探空仪数据,因此建议对数据库使用一种正则化技术来克服丢失的数据并得出一致的对流层延迟信息。

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