Link Adaptation and Carriers Detection Errors in Multibeam Satellite Systems with Linear Precoding

Anxo Tato, S. Andrenacci, S. Chatzinotas, C. Mosquera
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引用次数: 2

Abstract

The application of linear precoding at the gateway side enables broadband multibeam satellite systems to use more aggressive frequency reuse patterns increasing the overall capacity of future High Throughput Satellites (HTS). However, although some previous works about precoding consider imperfect CSIT (Chanel State Information at the Transmitter) adding some CSI estimation errors, that is not the main cause of CSI degradation. In practice, receivers can only detect and estimate a few coefficients of the CSI vector being the other nullified, replaced by zeros. This introduces errors in the SINR calculation by the gateway that lead to the assignment of Modulation and Coding Schemes (MCS) over the decoding possibilities of the users, increasing the rate of erroneous frames. In this work, the errors in the SINR calculation caused by the nullification of the CSI are analyzing statistically and geographically using a radiation diagram of 245 beams over Europe. Furthermore, a solution based on a link adaptation algorithm with a per user adaptive margin is proposed, helping to achieve the QEF (Quasi-error Free) target of DVB-S2X systems.
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线性预编码多波束卫星系统的链路自适应与载波检测误差
网关侧线性预编码的应用使宽带多波束卫星系统能够使用更积极的频率重用模式,从而增加未来高通量卫星(HTS)的总体容量。然而,尽管先前的一些关于预编码的工作考虑了不完美的CSIT(发射器的香奈儿状态信息),增加了一些CSI估计误差,但这并不是CSI退化的主要原因。在实际应用中,接收机只能检测和估计CSI矢量的几个系数,这些系数被另一个消去,替换为零。这在网关的SINR计算中引入了错误,导致调制和编码方案(MCS)的分配超过了用户的解码可能性,增加了错误帧的率。在这项工作中,利用欧洲245束的辐射图,统计和地理上分析了由于CSI无效而导致的SINR计算误差。在此基础上,提出了一种基于每用户自适应余量的链路自适应算法,有助于实现DVB-S2X系统的准无误差目标。
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ASMS/SPSC 2018 Index Controlled Delay Scheduler for VoIP over LEO constellations on LMS channels A Design Method of Cognitive Overlay Links for Satellite Communications Cross-Layer Forward Packet Scheduling for Emerging Precoded Broadband Multibeam Satellite System ASMS/SPSC 2018 Advanced Satellite Multimedia Systems Conference and the 15th Signal Processing for Space Communications Workshop
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