下一代卫星系统:基于创新频率重用模式的非正交广播和单播综合服务

IF 3.2 1区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Broadcasting Pub Date : 2024-09-16 DOI:10.1109/TBC.2024.3434731
Shuai Han;Zhiqiang Li;Weixiao Meng;Cheng Li
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引用次数: 0

摘要

多波束卫星系统对于提供无缝和多样化的信息服务至关重要,例如广播和单播消息。然而,在有限的资源范围内满足迅速增长的用户数量带来了巨大的挑战。因此,我们设计了采用分频多址(RSMA)的非正交广播和单播(NOBU)联合传输框架,该框架利用非正交传输和预编码策略。在此基础上,将传统的预编码技术与频率复用技术相结合,提出了分布式频率复用和集中式频率复用两种策略。在考虑到卫星波束增益特性和干扰容忍阈值的基础上,进一步提出了DFR和CFR策略的另外两种扩展,并进行了创新的内外划分。对于基于四种新的频率复用模式的NOBU联合传输,我们最大化了加权和速率(WSR)。随后,我们引入了一种改进的交替优化算法,该算法擅长将复杂的非凸问题转化为可处理的凸问题。仿真结果表明,我们提出的方案在WSR性能上有显著的提高,具有广泛的应用前景。
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Next-Gen Satellite System: Integrative Non-Orthogonal Broadcast and Unicast Services Based on Innovative Frequency Reuse Patterns
The multibeam satellite system is crucial for providing seamless and various information services, such as broadcast and unicast messages. However, catering to the burgeoning number of users within a limited spectrum of resources presents formidable challenges. Therefore, we devise the non-orthogonal broadcast and unicast (NOBU) joint transmission framework using rate-splitting multiple access (RSMA), which leverages non-orthogonal transmission and precoding strategies. Furthermore, amalgamating traditional precoding with frequency reuse techniques, we propose two novel distributed frequency reuse (DFR) and centralized frequency reuse (CFR) strategies. Taking satellite beam gain characteristics and interference tolerance threshold into consideration, we further propose another two expansions of DFR and CFR strategies with innovative inner and outer divisions. For the NOBU joint transmission based on four novel frequency reuse patterns, we maximize the weighted sum rate (WSR). Subsequently, we introduce an improved alternating optimization algorithm, adept at converting intricate non-convex problems into tractable convex counterparts. Simulation outcomes demonstrate that our proposed schemes have significant improvements in WSR performance and are promising for various practical applications.
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来源期刊
IEEE Transactions on Broadcasting
IEEE Transactions on Broadcasting 工程技术-电信学
CiteScore
9.40
自引率
31.10%
发文量
79
审稿时长
6-12 weeks
期刊介绍: The Society’s Field of Interest is “Devices, equipment, techniques and systems related to broadcast technology, including the production, distribution, transmission, and propagation aspects.” In addition to this formal FOI statement, which is used to provide guidance to the Publications Committee in the selection of content, the AdCom has further resolved that “broadcast systems includes all aspects of transmission, propagation, and reception.”
期刊最新文献
Table of Contents 2024 Scott Helt Memorial Award for the Best Paper Published in the IEEE Transactions on Broadcasting IEEE Transactions on Broadcasting Publication Information IEEE Transactions on Broadcasting Information for Authors Enhancing Channel Estimation in Terrestrial Broadcast Communications Using Machine Learning
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