首页> 外文会议>Electronics, Circuits and Systems, 2003. ICECS 2003. Proceedings of the 2003 10th IEEE International Conference on >Global mapping of attenuation at RF frequencies; application to spaceborne communication and RF systems
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Global mapping of attenuation at RF frequencies; application to spaceborne communication and RF systems

机译:射频频率衰减的全局映射;在星载通信和射频系统中的应用

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The propagation of radio waves for Earth-space slant path at C-band and higher frequencies are dominated by precipitation in the atmosphere. At a given frequency, attenuation depends on the length of the radio path, the size distribution and the phase state of the hydrometeor profile. Using the observations from the Tropical Rainfall Measuring Mission (TRMM) space-borne Ku-band (13.8GHz) radar at Low Earth Orbit of 350km above earth, global attenuation maps are produced at the Ku-band frequency. A simple microphysical model for precipitation developed using hydrometeor size distributions and thermodynamic phase state is used to estimate attenuation and reflectivity observations at Ka-band (35GHz) where numerous high bandwidth satellite applications are being planned including the next generation space-based radar for the Global Precipitation Mission (GPM). Differences in the microphysical structure in convective and stratiform precipitation are also incorporated in the model. The results show substantial attenuation variation in a 12-month period at both Ku- and Ka-bands over the various regions of the globe, including the contrast between land and ocean. The estimates of attenuation made at Ku- and Ka-band will be useful in the design and development of space-borne communications and RF systems.
机译:在C波段和较高频率下对地球空间倾斜路径的无线电波的传播是大气中的降水的主导。在给定的频率下,衰减取决于无线电路径的长度,尺寸分布和水流仪谱的相位状态。在地球上方350km的低地轨道上使用热带降雨测量使命(TRMM)空间朗陀(13.8GHz)雷达的观察,全局衰减图是在KU波段频率产生的。使用水流仪尺寸分布和热力相位状态开发的沉淀的简单微型微型模型用于估算KA波段(35GHz)的衰减和反射率观察,其中正在计划包括下一代基于空间的基于空间的雷达的许多高带宽卫星应用降水使命(GPM)。在模型中也掺入了对流和层状沉淀中微微物理结构的差异。结果表明,在全球各个地区的KU和KA波段的12个月内显示了大量衰减变化,包括陆地和海洋之间的对比。 Ku-and Ka-Band的衰减估计对于空间通信和RF系统的设计和开发有用。

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