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New Vary-Chap Scale Height Profile Retrieved From COSMIC Radio Occultation Data

机译:新Vary-Chap规模高度配置文件检索宇宙无线电掩星数据

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The Global Navigation Satellite System radio occultation technique provides materials for the validation of a mathematical description of the topside ionosphere up to the low Earth orbit (LEO) satellite altitude. An attempt to represent the topside electron density profile is using α-Chapman function with a continuously varying scale height. In this study, the Vary-Chap scale height profiles are obtained based on Constellation Observing System for Meteorology, Ionosphere, and Climate (COSMIC) electron density profiles from 1 January 2008 to 31 December 2013 and fitted by a shape function composed of two weighted patterns representing the ion and electron contributions of lower and higher altitudes. The associated fitting parameters a and b are analyzed to reveal their temporal and spatial features and variations along with enhancement of solar activity. The prominent dependence on latitudes, longitudes, the local time, the season, and the solar cycle shown in the parameters inspires future modeling of the Vary-Chap scale height in constructing empirical topside ionospheric models.
机译:全球导航卫星系统广播掩星技术提供了材料验证的数学描述上部电离层低地球轨道卫星(LEO)高度。在甲板上电子密度剖面α查普曼功能不断变化规模高度。高度概要文件的基础上获得的星座为气象观测系统,电离层电子密度和气候(宇宙)概要文件从2008年1月1日到2013年12月31日和拟合函数组成的两个形状代表了离子和加权模式电子的贡献越来越高海拔。和b是揭示他们的时间和分析空间特性和变化太阳活动的增强。依赖纬度,经度,当地时间、季节和太阳周期中所示建模的参数激励的未来Vary-Chap规模高度建设经验上部电离层模型。

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