Exploratory Analysis of Superposition Coding and Rate Splitting for Multibeam Satellite Systems

Màrius Caus, A. Pastore, M. Navarro, T. Ramírez, C. Mosquera, N. Noels, N. Alagha, A. Pérez-Neira
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引用次数: 18

Abstract

The adoption of aggressive frequency reuse schemes along with interference management techniques has become the leading paradigm in satellite communications to increase the spectral efficiency. In general terms, one cannot rely on precoding techniques in the absence of channel phase information. Nevertheless, the availability of channel magnitude information, makes it possible to explore power-based separation of superimposed signals. In this paper, rate splitting (RS) ideas are exploited, whereby the separation of messages into private and public parts serves to improve the performance of successive cancellation decoding (SCD). Numerical results reveal that in some pertinent system scenarios, the proposed schemes achieve a larger rate region than that of orthogonal schemes that do not exploit the interference and other strategies that either do not allow beam cooperation or do not apply RS.
多波束卫星系统的叠加编码和速率分割探索性分析
采用积极的频率复用方案和干扰管理技术已成为卫星通信中提高频谱效率的主要范例。一般来说,在没有信道相位信息的情况下,不能依赖预编码技术。然而,信道幅度信息的可用性使得探索基于功率的叠加信号分离成为可能。在本文中,利用速率分割(RS)思想,将消息分离为私有和公共部分,以提高连续取消解码(SCD)的性能。数值结果表明,在一些相关的系统场景下,所提出的方案比不利用干扰和其他不允许波束合作或不应用RS的策略的正交方案实现了更大的速率区域。
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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