首页> 外文期刊>Journal of tropical meteorology >RESEARCH ON THE LOCAL CORRECTION MODEL OF ATMOSPHERIC DRY DELAY IN GPS REMOTE SENSING WATER VAPOR
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RESEARCH ON THE LOCAL CORRECTION MODEL OF ATMOSPHERIC DRY DELAY IN GPS REMOTE SENSING WATER VAPOR

机译:GPS遥感水汽中大气干滞后局部校正模型的研究

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The precision of atmospheric dry delay model is closely correlated with the accuracy of GPS water vapor in the process of GPS (Global Position System) remote sensing. Radiosonde data (from 1996 to 2001) at Qingyuan are used to calculate the exact values of the atmospheric dry delay. Base on these calculations and the surface meteorological parameters, the local year and month correction models of dry delay at the zenith angle of 0° are established by statistical methods. The analysis result shows that the local model works better and is slight more sensitive to altitude angle than universal models and that it is not necessary to build models for each month due to the slight difference between year model and month model. Furthermore, when the altitude angle is less than 75°, the difference between curve path and straight path increases rapidly with altitude angle's decrease.
机译:在全球定位系统(GPS)遥感过程中,大气干燥延迟模型的精度与GPS水汽的精度密切相关。清远地区的探空仪数据(1996年至2001年)用于计算大气干燥延迟的精确值。基于这些计算和地表气象参数,通过统计方法建立了天顶角为0°时的局部年,月干滞后校正模型。分析结果表明,局部模型比通用模型更有效,对高度角更敏感,并且由于年模型和月模型之间的细微差异,因此不必为每个月构建模型。此外,当仰角小于75°时,曲线路径和直线路径之间的差随着仰角的减小而迅速增大。

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