IEEE Transactions on Mobile Computing · 2020 · 36 citations · 29 references
5G NetworksCross-layer OptimizationCongestion Avoidance AlgorithmEngineering5G SystemUltra-reliable Low-latency CommunicationEdge ComputingUltra-reliable Low-latency CommunicationsLatency RequirementsComputer EngineeringLow LatencyMobile ComputingInternet Of ThingsHigh-speed NetworkingCross-layer DesignUltra-low LatencyCongestion Control
Providing Ultra-Reliable Low-Latency Communications (URLLC) is one of the key challenges for 5G systems, which requires the redesign of both radio access technologies and the architectures. While 3GPP and the research community focus mainly on radio low layer functionality and architectural changes that enable URLLC, this article proposes a novel cross-layer framework that extends the already standardized 5G solutions to support a very massive number of users/flows in the system. The framework consists of a scheduler, a congestion avoidance algorithm, and a new traffic management algorithm, which together achieve the maximum capacity of 5G systems for URLLC, i.e., they maximize the load at which the reliability and latency requirements are satisfied for at least 99 percent of the users. Extensive performance evaluation results demonstrate that the proposed framework achieves the network capacity very close to the upper bound.
29
Ultra-Reliable Communication in 5G Wireless Systems
Petar Popovski · 2014 · 316 citations · Full text
5G URLLC: Design Challenges and System Concepts
Zexian Li, Mikko A. Uusitalo, Hamidreza Shariatmadari et al. · 2018 · 206 citations · Full text