考虑5G网络切片中信道退化的基于上下文的延迟保证

Andrea Nota, Selma Saidi, Dennis Overbeck, Fabian Kurtz, C. Wietfeld
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引用次数: 0

摘要

工业4.0、自动驾驶汽车或智能电网等领域的关键任务应用越来越依赖于灵活且高度可靠的通信系统。第五代移动通信网络(5G)承诺通过一种称为网络切片的新方法,在单一统一的物理通信网络上支持关键通信。在这项工作中,我们通过形式化关键系统中边界响应时间的分析方法,专注于基于上下文的硬性能保证。该方法允许考虑基于信道质量退化模型的不同上下文,并避免了为最坏可能的信道条件计算的全局高度悲观的最坏情况边界。我们证明,使用基于机器学习的5G模拟框架,所提出的计算基于上下文的响应时间的方法保证了在现实移动场景中获得的成功边界结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Context-based Latency Guarantees Considering Channel Degradation in 5G Network Slicing
Mission critical applications in domains such as Industry 4.0, autonomous vehicles or smart grids are increasingly dependent on flexible, yet highly reliable communication systems. The Fifth Generation of mobile Communication Networks (5G) promises to support critical communications on a single unified physical communication network through a novel approach known as network slicing. We focus in this work on context-based hard performance guarantees by formalizing an analytical method for bounding response times in critical systems. This approach allows to consider different contexts based on models of degradation of channel quality, and avoids a global highly pessimistic worst-case bound computed for worst possible channel conditions. We demonstrate that the proposed method for computing context-based response times guarantees successfully bounds results obtained in realistic mobility scenarios using a machine-learning based 5G simulation framework.
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