Frame based precoding in satellite communications: A multicast approach

Dimitrios Christopoulos, S. Chatzinotas, B. Ottersten
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引用次数: 16

Abstract

In the present work, a multibeam satellite that employs aggressive frequency reuse towards increasing the offered throughput is considered. Focusing on the forward link, the goal is to employ multi-antenna signal processing techniques, namely linear precoding, to manage the inter-beam interferences. In this context, fundamental practical limitations, namely the rigid framing structure of satellite communication standards and the on-board per-antenna power constraints, are herein considered. Therefore, the concept of optimal frame based precoding under per-antenna constraints, is discussed. This consists in precoding the transmit signals without changing the underlying framing structure of the communication standard. In the present work, the connection of the frame based precoding problem with the generic signal processing problem of conveying independent sets of common data to distinct groups of users is established. This model is known as physical layer multicasting to multiple co-channel groups. Building on recent results, the weighted fair per-antenna power constrained multigroup multicast precoders are employed for frame based precoding. The throughput performance of these solutions is compared to multicast aware heuristic precoding methods over a realistic multibeam satellite scenario. Consequently, the gains of the proposed approach are quantified via extensive numerical results.
卫星通信中基于帧的预编码:一种多播方法
在本工作中,考虑了一种采用主动频率复用以提高提供吞吐量的多波束卫星。重点是前向链路,目标是采用多天线信号处理技术,即线性预编码,以管理波束间干扰。在这种情况下,本文考虑了基本的实际限制,即卫星通信标准的刚性分帧结构和机载每天线功率约束。因此,讨论了在天线约束下基于最优帧的预编码的概念。这包括在不改变通信标准的底层帧结构的情况下对发送信号进行预编码。在本工作中,建立了基于帧的预编码问题与将独立的公共数据集传输给不同用户组的通用信号处理问题的联系。这个模型被称为物理层多播到多个同信道组。在现有研究成果的基础上,采用加权公平单天线功率约束多组播预编码器进行基于帧的预编码。在实际的多波束卫星场景下,将这些方案的吞吐量性能与组播感知启发式预编码方法进行了比较。因此,所提出的方法的增益是量化通过广泛的数值结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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