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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Linear and nonlinear techniques for multibeam joint processing in satellite communications
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Linear and nonlinear techniques for multibeam joint processing in satellite communications

机译:卫星通信中多波束联合处理的线性和非线性技术

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Existing satellite communication standards such as DVB-S2, operate under highly-efficient adaptive coding and modulation schemes thus making significant progress in improving the spectral efficiencies of digital satellite broadcast systems. However, the constantly increasing demand for broadband and interactive satellite links emanates the need to apply novel interference mitigation techniques, striving towards Terabit throughput. In this direction, the objective of the present contribution is to investigate joint multiuser processing techniques for multibeam satellite systems. In the forward link, the performance of linear precoding is investigated with optimal nonlinear precoding (i.e., dirty article coding) acting as the upper performance limit. To this end, the resulting power and precoder design problems are approached through optimization methods. Similarly, in the return link the concept of linear filtering (i.e., linear minimum mean square error) is studied with the optimal successive interference cancelation acting as the performance limit. The derived capacity curves for both scenarios are compared to conventional satellite systems where beams are processed independently and interbeam interference is mitigated through a four color frequency reuse scheme, in order to quantify the potential gain of the proposed techniques.
机译:现有的卫星通信标准(例如DVB-S2)在高效的自适应编码和调制方案下运行,因此在改善数字卫星广播系统的频谱效率方面取得了重大进展。但是,对宽带和交互式卫星链路的需求不断增长,这就要求应用新颖的干扰缓解技术,以达到太比特吞吐量。在这个方向上,本贡献的目的是研究用于多波束卫星系统的联合多用户处理技术。在前向链路中,以最佳非线性预编码(即脏物品编码)作为性能上限来研究线性预编码的性能。为此,通过优化方法来解决由此产生的功率和预编码器设计问题。类似地,在返回链路中,以最佳连续干扰消除为性能极限,研究了线性滤波的概念(即线性最小均方误差)。将这两种情况下得出的容量曲线与常规卫星系统进行比较,在常规卫星系统中,对波束进行独立处理,并通过四色频率复用方案减轻波束间干扰,以量化所提出技术的潜在增益。

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