Performance analysis of C/U split hybrid satellite terrestrial network for 5G systems

Jiaxin Zhang, B. Evans, M. Imran, Xing Zhang, Wenbo Wang
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引用次数: 15

Abstract

Over the last decade, the explosive increase in demand of high-data-rate video services and massive access machine type communication (MTC) requests have become the main challenges for the future 5G wireless network. The hybrid satellite terrestrial network based on the control and user plane (C/U) separation concept is expected to support flexible and customized resource scheduling and management toward global ubiquitous networking and unified service architecture. In this paper, centralized and distributed resource management strategies (CRMS and DRMS) are proposed and compared com- prehensively in terms of throughput, power consumption, spectral and energy efficiency (SE and EE) and coverage probability, utilizing the mature stochastic geometry. Numerical results show that, compared with DRMS strategy, the U-plane cooperation between satellite and terrestrial network under CRMS strategy could improve the throughput and EE by nearly 136% and 60% respectively in ultra-sparse networks and greatly enhance the U-plane coverage probability (approximately 77%). Efficient resource management mechanism is suggested for the hybrid network according to the network deployment for the future 5G wireless network.
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5G系统C/U分离混合卫星地面网络性能分析
近十年来,高数据速率视频业务需求的爆炸式增长和海量接入机类通信(MTC)请求成为未来5G无线网络面临的主要挑战。基于控制与用户平面(C/U)分离概念的星地混合网络,有望支持灵活定制化的资源调度和管理,实现全球泛在组网和统一的业务架构。本文利用成熟的随机几何理论,从吞吐量、功耗、频谱和能量效率(SE和EE)以及覆盖概率等方面,对集中式和分布式资源管理策略(CRMS和DRMS)进行了综合比较。数值结果表明,与DRMS策略相比,CRMS策略下卫星与地面网络之间的u -平面协作在超稀疏网络中的吞吐量和EE分别提高了近136%和60%,u -平面覆盖概率大幅提高(约77%)。根据未来5G无线网络的网络部署,提出了高效的混合网络资源管理机制。
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