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Cross-Layer Routing and Scheduling for Onboard Processing Satellites with Phased Array Antenna

机译:具有相控阵天线的机载处理卫星的跨层路由和调度

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摘要

The advanced multibeam satellite equipped with phased array antenna and solid state power amplifiers can generate flexible beams, by managing interbeam interference to serve a very large number of users effectively over its coverage area. Onboard processing (OBP) functionality can enhance the flexibility of a large-scale antenna by speeding up computational processes and saving precious radio link spectrum. In this paper, we derive a cross-layer OBP design of switching/routing, beamforming, and user scheduling as taking advantage of fine spatial resolution capability of phased array antenna satellites. We evaluate tradeoff between OBP computational complexity and throughput performance, showing that the additional complexity of an increased number of switch ports and phased array antenna gain patterning is compensated by high throughput gain achieved by mitigating interference. Our analysis shows that throughput gain for the next generation satellite system can be as high as 40, compared with the conventional multiple beam antenna with travelling wave tube amplifiers, and that beamforming is critical for achieving high spectral efficiency in the crowded service area. We then investigate the impacts of onboard switching and phased array antenna beamforming to practical routing protocols, such as open short path first and routing information protocol.
机译:配备相控阵天线和固态功率放大器的先进多波束卫星可以通过管理波束间干扰,在其覆盖范围内有效地为大量用户提供服务,从而产生灵活的波束。机载处理(OBP)功能可以通过加快计算过程并节省宝贵的无线电链路频谱来增强大型天线的灵活性。在本文中,我们利用相控阵天线卫星的精细空间分辨能力,推导了切换/路由,波束成形和用户调度的跨层OBP设计。我们评估了OBP计算复杂度和吞吐量性能之间的折衷,表明通过减少干扰实现的高吞吐量增益可以补偿增加的开关端口数量和相控阵天线增益模式带来的额外复杂性。我们的分析表明,与带有行波管放大器的传统多波束天线相比,下一代卫星系统的吞吐量增益可以高达40,并且波束形成对于在拥挤的服务区域中实现高频谱效率至关重要。然后,我们研究了板载交换和相控阵天线波束成形对实际路由协议的影响,例如开放式短路径优先和路由信息协议。

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