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Hybrid single frequency network propagation channel sounding and antenna diversity measurements

机译:混合单频网络传播信道探测和天线分集测量

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During the last decade, several land mobile communication networks have been developed based on full satellite solutions such as Globalstar or Iridium systems or on huge terrestrial networks such as GSM for example. Deploying new terrestrial networks or new satellite constellations for new telecommunication or broadcast mobile systems on very large areas would be so expensive that another solution is now often considered: hybrid systems with a terrestrial segment to cover high-density built-up areas and a satellite segment to bring services to the largest part of coverage area. In the framework of Satellite Digital Multimedia Broadcasting CNES project, such a hybrid mobile broadcast system was studied, in particular air interface performances. This performance assessment required a good knowledge of the hybrid single frequency network (SFN) propagation channel including a geostationary satellite and terrestrial gap fillers. The requirement for an exhaustive characterization of the hybrid SFN propagation channel involved the development of a specific channel sounding solution. Moreover, mobile telecommunication systems recently developed use spatial diversity techniques to take benefit from multipath spatial decorrelation in particular. The measurement of diversity gains in actual conditions can provide information very helpful for network deployment and air interface design. The CNES channel sounder enables to carry out such diversity measurements using only propagation data. This paper presents this channel sounder developed and used to measure the SFN radio propagation channel with four transmitters in spatial diversity configuration.
机译:在过去的十年中,已经基于全卫星解决方案(例如Globalstar或Iridium系统)或巨大的地面网络(例如GSM)开发了几种陆地移动通信网络。在非常大的区域上为新的电信或广播移动系统部署新的地面网络或新的卫星星座将非常昂贵,以至于现在经常考虑使用另一种解决方案:具有地面部分以覆盖高密度建成区和卫星部分的混合系统将服务带到覆盖区域的最大部分。在卫星数字多媒体广播CNES项目的框架内,研究了这种混合移动广播系统,特别是空中接口性能。这项性能评估需要对混合单频网络(SFN)传播信道有充分的了解,其中包括对地静止卫星和地面间隙填充物。对混合SFN传播信道进行详尽表征的要求涉及开发特定的信道探测解决方案。此外,近来开发的移动电信系统使用空间分集技术来特别地受益于多径空间去相关。在实际条件下对分集增益的测量可以提供非常有助于网络部署和空中接口设计的信息。 CNES频道探测器可以仅使用传播数据来执行这种分集测量。本文介绍了此信道探测仪,该探测器已开发并用于测量具有空间分集配置的四个发射机的SFN无线电传播信道。

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