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In-line interference mitigation techniques for spectral coexistence of GEO and NGEO satellites

机译:用于GEO和NGEO卫星频谱共存的在线干扰缓解技术

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摘要

The interest towards the deployment of Low Earth Orbit (LEO)/Medium Earth Orbit (MEO) satellite systems in several frequency bands is increasing due to the requirement of low latency for real-time systems and high demand of broadband data. When the number of usable Non-Geostationary (NGEO) satellites, that is, LEO/MEO in space, increases, the frequency coexistence between the NGEO satellite systems with the already existing geostationary (GEO) satellite networks becomes a requisite. In this context, it is crucial to explore interference mitigation techniques between GEO and NGEO systems in order to allow their spectral coexistence. More specifically, in the coexistence scenario of GEO and NGEO satellite networks, in-line interference may be a serious problem, especially in the equatorial region. In this paper, we provide several frequency sharing studies in the context of the coexistence of an NGEO satellite link with another NGEO/GEO satellite link. Furthermore, we carry out interference analysis between GEO and MEO satellite systems considering the case of the O3b satellite system and propose an adaptive power control technique for both the uplink and downlink scenarios in order to mitigate the in-line interference. Moreover, we suggest several cognitive solutions for mitigating the in-line interference and provide future research issues.
机译:由于对实时系统的低等待时间的需求和对宽带数据的高需求,对在几个频带中部署低地球轨道(LEO)/中地球轨道(MEO)卫星系统的兴趣日益增加。当可用的非对地静止(NGEO)卫星的数量(即空间中的LEO / MEO)增加时,NGEO卫星系统与已经存在的对地静止(GEO)卫星网络之间的频率共存就成为必要条件。在这种情况下,至关重要的是探索GEO和NGEO系统之间的干扰减轻技术,以使其频谱共存。更具体地说,在GEO和NGEO卫星网络共存的情况下,在线干扰可能是一个严重的问题,尤其是在赤道地区。在本文中,我们在NGEO卫星链路与另一个NGEO / GEO卫星链路共存的情况下提供了一些频率共享研究。此外,考虑到O3b卫星系统的情况,我们在GEO和MEO卫星系统之间进行了干扰分析,并针对上行链路和下行链路场景提出了一种自适应功率控制技术,以减轻在线干扰。此外,我们建议了几种认知解决方案来减轻在线干扰,并提供未来的研究问题。

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