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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Radio occultation data analysis by the radioholographic method
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Radio occultation data analysis by the radioholographic method

机译:放射全息法的无线电掩星数据分析

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The radioholographic method is briefly described and tested by using data of 4 radio occultation events observed by the GPS/MET experiment of 9 February 1997. The central point of the radioholographic method (Pavelyev, 1998)is the generation of a radiohologram along the LEO satellite trajectory which allows the calculation of angular spectra of the received GPS radio wave field at the LEO satellite. These spectra are promising in view of detection, analysis and reduction of multipath/diffraction effects, study of atmospheric irregularities and estimation of bending angle error. Initial analysis of angular spectra calculated by the multiple signal classification (MUSIC) method gives evidence that considerable multibeam propagation occurs at ray perigee heights below 20 km and at heights around 80-120 km for the 4 GPS/MET occultation events. Temperature profiles obtained by our analysis (radioholographic method, Abel inversion) are compared with those of the traditional retrieval by the UCAR GPS/MET team (bending angle from slope of phase front, Abel inversion). In 3 of 4 cases we found good agreement (standard deviation #sigma# _T approx 1.5 deg K between both retrievals at heights 0-30 km).
机译:通过使用1997年2月9日的GPS / MET实验观测到的4次无线电掩星事件的数据简要描述和测试了放射全息图方法。放射全息图方法的中心点(Pavelyev,1998年)是沿着LEO卫星生成放射线全息图。可以计算LEO卫星接收的GPS无线电波场的角谱的轨迹。这些光谱在检测,分析和减少多径/衍射效应,研究大气不规则性以及估计弯曲角度误差方面很有前途。通过多信号分类(MUSIC)方法计算出的角光谱的初步分析表明,对于4个GPS / MET掩星事件,在近景高度低于20 km且高约80-120 km时,发生了相当多的多光束传播。通过我们的分析(放射线照相法,Abel反演)获得的温度曲线与UCAR GPS / MET团队进行的传统检索得到的温度曲线(相前斜面的弯曲角度,Abel反演)进行了比较。在4个案例中的3个案例中,我们发现了很好的一致性(两次取回在0-30 km高度之间的标准偏差#sigma#_T约为1.5度)。

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