Resilience under Uncertainty: Securing 6G through Stochastic Reinstantiation of RAN Functions

Fuente: arXiv
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Autores principales: Almeida, Gabriel, Kibiłda, Jacek, Santos, Joao F., Cardoso, Kleber Vieira
Formato: Preprint
Publicado: 2026
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author Almeida, Gabriel
Kibiłda, Jacek
Santos, Joao F.
Cardoso, Kleber Vieira
author_facet Almeida, Gabriel
Kibiłda, Jacek
Santos, Joao F.
Cardoso, Kleber Vieira
contents The disaggregation of base stations into discrete RAN functions introduces new threats to mobile networks, as failures in one RAN function can trigger cascading failures and interrupt entire function chains, with potential to degrade network performance and disrupt service. In this paper, we propose the first resilience mechanism for disaggregated mobile networks that leverages the adaptive reinstantiation of RAN functions under uncertainty to mitigate disruptions and maintain service continuity in the presence of compromised infrastructure. Our mechanism reacts to cascading failures that disrupt Radio Units (RUs) by reinstantiating Central Units (CUs) and Distributed Units (DUs) in alternative cloud locations, restoring their function chains while accounting for uncertainty in users' locations and wireless channel conditions during the in-failure state. We formulate this recovery process as a two-stage stochastic optimization problem, where reinstantiation and routing decisions are made under uncertainty, and bandwidth allocation decisions are performed after uncertainty is resolved. We solve the problem using a Sample Average Approximation (SAA)-based solution as a tractable, deterministic equivalent problem. We numerically evaluate our approach on a real-world disaggregated mobile network topology across multiple failure scenarios and traffic demand conditions, and our results demonstrate that our solution can achieve up to 80% higher recovery performance compared to conventional resilience mechanisms.
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id arxiv_https___arxiv_org_abs_2605_15446
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Resilience under Uncertainty: Securing 6G through Stochastic Reinstantiation of RAN Functions
Almeida, Gabriel
Kibiłda, Jacek
Santos, Joao F.
Cardoso, Kleber Vieira
Networking and Internet Architecture
The disaggregation of base stations into discrete RAN functions introduces new threats to mobile networks, as failures in one RAN function can trigger cascading failures and interrupt entire function chains, with potential to degrade network performance and disrupt service. In this paper, we propose the first resilience mechanism for disaggregated mobile networks that leverages the adaptive reinstantiation of RAN functions under uncertainty to mitigate disruptions and maintain service continuity in the presence of compromised infrastructure. Our mechanism reacts to cascading failures that disrupt Radio Units (RUs) by reinstantiating Central Units (CUs) and Distributed Units (DUs) in alternative cloud locations, restoring their function chains while accounting for uncertainty in users' locations and wireless channel conditions during the in-failure state. We formulate this recovery process as a two-stage stochastic optimization problem, where reinstantiation and routing decisions are made under uncertainty, and bandwidth allocation decisions are performed after uncertainty is resolved. We solve the problem using a Sample Average Approximation (SAA)-based solution as a tractable, deterministic equivalent problem. We numerically evaluate our approach on a real-world disaggregated mobile network topology across multiple failure scenarios and traffic demand conditions, and our results demonstrate that our solution can achieve up to 80% higher recovery performance compared to conventional resilience mechanisms.
title Resilience under Uncertainty: Securing 6G through Stochastic Reinstantiation of RAN Functions
topic Networking and Internet Architecture
url https://arxiv.org/abs/2605.15446