超越5G网络从QoS到QoE + QoT

Maradona C. Gatara, M. Mzyece
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摘要

在超越5G (B5G)时代,预计将发生从面向技术的服务质量(QoS)网络向以用户为中心的体验质量(QoE)网络架构的范式转变。随着这一发展,将QoE用户需求注入B5G网络将对未来超可靠和超低延迟触觉互联网应用的出现至关重要。一个这样的应用将标志着远程触觉互联网的出现,这将是远程机器人手术任务执行的关键任务用例,加速从基于内容到技能交付网络的过渡,以增强用户体验。在将网络QoS扩展到以用户为中心的QoE及其任务质量(QoT)维度时,全球控制回路中的人类用户(如机器人外科医生)将能够通过实时和跨越大地理距离的对象操作来实现逼真的沉浸式远程任务性能。在本文中,我们讨论了以网络和用户为中心的QoS和QoE(与QoT)观点之间的联系。此外,我们解释了未来B5G网络和触觉技能互联网(IoS)的出现,并借鉴了应用于远程触觉手术任务敏感任务关键用例的架构示例。在此过程中,我们概念化并提出了任务技术匹配(TTF)理论和预测模型,这些模型可以经验地应用于未来B5G通信网络的新颖QoE/QoT视角的未来用例。
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From QoS to QoE plus QoT in Beyond 5G Networks
In the Beyond 5G (B5G) era, a paradigm shift from technical Quality of Service (QoS) oriented networks to user-centric Quality of Experience (QoE) centred network architectures is expected to occur. With this development, the infusion of QoE user requirements into B5G networks will be critical to the emergence of ultra-reliable and ultra-low latency haptic-enabled Internet applications of the future. One such application which will signify the emergence of a tele-haptic Internet will be the mission-critical use case of remote robotic surgical task performance, precipitating a transition from content-based to skillset delivery networks for an augmented user experience. In extending network QoS to user focused QoE and with it, Quality of Task (QoT) dimensions, human users in a global control loop (such as robotic surgeons) will be capable of true-to-life immersive remote task performance through the manipulation of objects in real-time and across large geographical distances. In this paper, we discuss the linkages between network and user-centric QoS and QoE (with QoT) perspectives. Further, we explain the emergence of a future B5G network and haptic-enabled Internet of Skills (IoS), and draw on the example of an architecture applied to the task-sensitive mission-critical use case of tele-haptic surgery. In doing so, we conceptualise and present Task-Technology Fit (TTF) theoretical and predictive modelling that can be empirically applied to this futuristic use case for a novel QoE/QoT perspective of future B5G communication networks.
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