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Improving the system capacity of broadband services using multiple high-altitude platforms

机译:使用多个高空平台提高宽带服务的系统容量

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摘要

A method of significantly improving the capacity of high-altitude platform (HAP) communications networks operating in the millimeter-wave bands is presented. It is shown how constellations of HAPs can share a common frequency allocation by exploiting the directionality of the user antenna. The system capacity of such constellations is critically affected by the minimum angular separation of the HAPs and the sidelobe level of the user antenna. For typical antenna beamwidths of approximately 5/spl deg/ an inter-HAP spacing of 4 km is sufficient to deliver optimum performance. The aggregate bandwidth efficiency is evaluated, both theoretically using the Shannon equation, and using practical modulation and coding schemes, for multiple HAP configurations delivering either single or multiple cells. For the user antenna beamwidths used, it is shown that capacity increases are commensurate with the increase in the number of platforms, up to 10 HAPs. For increases beyond this the choice of constellation strategy becomes increasingly important.
机译:提出了一种显着提高在毫米波波段中运行的高空平台(HAP)通信网络容量的方法。它显示了HAP的星座如何通过利用用户天线的方向性来共享公共的频率分配。 HAP的最小角度间隔和用户天线的旁瓣电平会严重影响此类星座的系统容量。对于大约5 / spl deg /的典型天线波束宽度,HAP间隔4 km足以提供最佳性能。从理论上使用Shannon方程,以及使用实际的调制和编码方案,针对传递单个或多个小区的多个HAP配置,评估总带宽效率。对于所使用的用户天线波束宽度,表明容量的增加与平台数量的增加(最多10个HAP)相对应。对于超出此范围的增长,星座策略的选择变得越来越重要。

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