Admission Control with Reconfigurable Intelligent Surfaces for 6G Mobile Edge Computing

Fuente: arXiv
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Autori principali: Zhang, Ye, Xiao, Baiyun, Sahni, Jyoti, Valera, Alvin, Li, Wuyungerile, Seah, Winston K. G.
Natura: Preprint
Pubblicazione: 2025
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author Zhang, Ye
Xiao, Baiyun
Sahni, Jyoti
Valera, Alvin
Li, Wuyungerile
Seah, Winston K. G.
author_facet Zhang, Ye
Xiao, Baiyun
Sahni, Jyoti
Valera, Alvin
Li, Wuyungerile
Seah, Winston K. G.
contents As 6G networks must support diverse applications with heterogeneous quality-of-service requirements, efficient allocation of limited network resources becomes important. This paper addresses the critical challenge of user admission control in 6G networks enhanced by Reconfigurable Intelligent Surfaces (RIS) and Mobile Edge Computing (MEC). We propose an optimization framework that leverages RIS technology to enhance user admission based on spatial characteristics, priority levels, and resource constraints. Our approach first filters users based on angular alignment with RIS reflection directions, then constructs priority queues considering service requirements and arrival times, and finally performs user grouping to maximize RIS resource utilization. The proposed algorithm incorporates a utility function that balances Quality of Service (QoS) performance, RIS utilization, and MEC efficiency in admission decisions. Simulation results demonstrate that our approach significantly improves system performance with RIS-enhanced configurations. For high-priority eURLLC services, our method maintains over 90% admission rates even at maximum load, ensuring mission-critical applications receive guaranteed service quality.
format Preprint
id arxiv_https___arxiv_org_abs_2504_14430
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Admission Control with Reconfigurable Intelligent Surfaces for 6G Mobile Edge Computing
Zhang, Ye
Xiao, Baiyun
Sahni, Jyoti
Valera, Alvin
Li, Wuyungerile
Seah, Winston K. G.
Networking and Internet Architecture
As 6G networks must support diverse applications with heterogeneous quality-of-service requirements, efficient allocation of limited network resources becomes important. This paper addresses the critical challenge of user admission control in 6G networks enhanced by Reconfigurable Intelligent Surfaces (RIS) and Mobile Edge Computing (MEC). We propose an optimization framework that leverages RIS technology to enhance user admission based on spatial characteristics, priority levels, and resource constraints. Our approach first filters users based on angular alignment with RIS reflection directions, then constructs priority queues considering service requirements and arrival times, and finally performs user grouping to maximize RIS resource utilization. The proposed algorithm incorporates a utility function that balances Quality of Service (QoS) performance, RIS utilization, and MEC efficiency in admission decisions. Simulation results demonstrate that our approach significantly improves system performance with RIS-enhanced configurations. For high-priority eURLLC services, our method maintains over 90% admission rates even at maximum load, ensuring mission-critical applications receive guaranteed service quality.
title Admission Control with Reconfigurable Intelligent Surfaces for 6G Mobile Edge Computing
topic Networking and Internet Architecture
url https://arxiv.org/abs/2504.14430