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Heterogeneous statistical QoS provisioning over 5G mobile wireless networks

机译:5G移动无线网络上的异构统计QoS设置

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摘要

As a critical step towards the next new era of mobile wireless networks, recently 5G mobile wireless networks have received significant research attention and efforts from both academia and industry. The 5G mobile wireless networks are expected to provide different delay-bounded QoS guarantees for a wide spectrum of services, applications, and users with extremely diverse requirements. Since the time-sensitive services in 5G multimedia wireless networks may vary dramatically in both a large range from milliseconds to a few seconds and diversity from uniform/ constant delay-bound to different/variable delay-bound guarantees among different wireless links, the delay-bound QoS requirements for different types of services promote the newly emerging heterogeneous statistical delay-bounded QoS provisioning over 5G mobile wireless networks, which, however, imposes many new challenging issues not encountered before in 4G wireless networks. To overcome these new challenges, in this article we propose a novel heterogeneous statistical QoS provisioning architecture for 5G mobile wireless networks. First, we develop and analyze the new heterogeneous statistical QoS system model by applying and extending the effective capacity theory. Then, through the wireless coupling channels, we apply our proposed heterogeneous statistical QoS architecture to efficiently implement the following powerful 5G-candidate wireless techniques: 1) device-to-device networks; 2) full-duplex networks; and 3) cognitive radio networks, respectively, for providing heterogeneous statistical delay-bounded QoS guarantees. Finally, using the simulation experiments we show that our proposed architecture and schemes significantly outperform the existing traditional statistical delay-bounded QoS provisioning schemes in terms of satisfying the heterogeneous delay-bounded QoS requirements while maximizing the aggregate system throughput over 5G mobile wireless networks.
机译:作为迈向移动无线网络下一个新时代的关键一步,最近5G移动无线网络受到了学术界和行业的广泛研究关注和努力。预计5G移动无线网络将为要求极为多样化的各种服务,应用程序和用户提供不同的延迟限制QoS保证。由于5G多媒体无线网络中对时间敏感的服务可能会在几毫秒到几秒的较大范围内变化,并且在不同无线链路之间的保证范围从统一/恒定时延保证到不同/可变时差保证都有很大差异,因此,不同类型服务的受限QoS要求促进了5G移动无线网络上新出现的异构统计延迟边界QoS设置,但是,这带来了4G无线网络中从未遇到的许多新的挑战性问题。为了克服这些新挑战,在本文中,我们提出了一种适用于5G移动无线网络的新颖的异构统计QoS配置体系结构。首先,我们通过应用和扩展有效容量理论来开发和分析新的异构统计QoS系统模型。然后,通过无线耦合通道,我们将提出的异构统计QoS体系结构有效地实现以下强大的5G候选无线技术:1)设备到设备网络; 2)全双工网络; 3)认知无线电网络,分别用于提供异构统计延迟限制的QoS保证。最后,使用仿真实验表明,在满足异构延迟限制QoS要求的同时,最大程度地提高了5G移动无线网络上的总系统吞吐量,我们提出的架构和方案明显优于现有的传统统计延迟限制QoS配置方案。

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