DTMC-Based Analysis and Scheduling for Periodic Flows with Proactive HARQ
Haozhe Yi, Junyi Liu, Maolin Yang, Haochun Liang, Bo Liu, Feng Hong, Chaowei Liu, Hongbiao Liu
Abstract
Ultra-Reliable Low-Latency Communication (URLLC) requires strict reliability and latency guarantees for heterogeneous periodic traffic. Proactive HARQ improves resource efficiency through early termination, but slot-level timing effects, particularly delayed feedback, complicate schedulability analysis. This paper presents a discrete-time Markov chain (DTMC)-based framework for periodic flows with proactive HARQ. By expanding the state space, the model captures HARQ round-trip time and other cross-slot timing effects. The framework determines the transmission opportunities required to satisfy heterogeneous reliability and latency constraints and supports offset-based scheduling through a two-stage genetic algorithm. Simulations with industrial URLLC traffic show that the proposed method achieves higher schedulability than reactive HARQ, K-Repetition, and non-guaranteed proactive HARQ, with acceptable computational overhead.
Create a lesson
Related papers
Taming the Agentic RAN: Stability-Guaranteed Arbitration of Autonomous AI Agents in O-RAN
Seyed Bagher Hashemi Natanzi, Bo Tang
Reliability-Guided Trusted Repeater Node Selection in QKD-Enabled Metro Optical Networks
Arup Kumar Marik, Basabdatta Palit, Sadananda Behera
Toward Composable Network Digital Twins: A Subgraph-Based Latency Prediction Study
Shenjia Ding, David Flynn, Paul Harvey
Jamming Detection in 5G/6G Networks: From O-RAN Concept to OCUDU Deployment
Marcin Hoffmann, Lukasz Kulacz, Osama Baldo et al.
The Operable Pareto Front: Distilling Offline Search into Run-Time Control for Multi-Objective UAV Edge-Computing Scheduling
Qiao Liao, Zhiyong Feng, Bin Wu et al.
Human Exposure to Non-Ionizing Radiation from Indoor Distributed Antenna System: Shopping Mall Measurement Analysis
Júlia da L. A. Silva, Vicente A. de Sousa,, Marcio E. C. Rodrigues et al.