Skip to content
Preprint

Orchra: Stateful-aware Cross-slice Workload Migrations in the 6G Control Plane

Aug 2026 · 0 citations · 20 references
Computer Science

TL;DR

Orchra, an intelligent orchestrator for stateful, low-latency context transfer, is presented, which demonstrates a practical and reproducible approach for enabling seamless, state-preserving slice transitions in cloud-native 5G-Advanced networks.

Abstract

Network slicing is a foundational capability of Fifth Generation (5G)-Advanced and emerging Sixth Generation (6G) networks, yet practical support for seamless runtime slice transitions remains limited. Standard cloud-native 5G architectures lack native support for stateful inter/intra-slice session migration, relying instead on high-overhead Non-Access Stratum (NAS) re-registrations, container redeployment etc., which disrupt userplane traffic for up to 245.50 ms. To address this limitation, we present Orchra, an intelligent orchestrator for stateful, low-latency context transfer. By externalizing critical user equipment state-including NAS context, security keys, and Protocol Data Unit (PDU) session information-into a transient staging layer, Orchra preserves session continuity across slice boundaries without requiring full re-registration. Experimental evaluation shows that Orchra reduces this userplane interruption by more than twice in comparison to conventional Third Generation Partnership Project (3GPP)-based approaches while incurring negligible security overhead. These results demonstrate a practical and reproducible approach for enabling seamless, state-preserving slice transitions in cloud-native 5G-Advanced networks.

View source

Similar papers

Open access Aug 2026

Isolation Deployment Protocols for Re-ducing Production Risk in Multi-Datacenter Systems: An Extension of Zhao et al

These findings demonstrate that deployment decisions based on structural failure domains can substantially limit the propagation of failures beyond the intended canary population, and indicate that topology-aware rollout control and per-datacenter monitoring can substantially reduce failure propagation and containment...

Sai Joshitha Kathari · 0 citations
Jul 2026

METIS: A Declarative Slice Orchestrator for Application-Centric 5G/6G Networks

METIS is a declarative slice orchestrator that manages the Day-0/1/2 lifecycle of network slice instances through cascaded reconciliation loops, and derives 3GPP-aligned slice profiles via hierarchical aggregation following the 5G quality-of-service model.

Arman Divband, A. Yaghoubian, Navid Nikaein · 0 citations
Conference Aug 2026

QoS Guarantees and Performance Isolation for Multi-tenant SSDs in Cloud Environments

With the widespread adoption of cloud computing and virtualization, multi-tenant architecture has become the mainstream deployment model for data center storage. Solid-state drives (SSDs), leveraging high IOPS, low latency, and high parallelism, serve as the core storage medium. Nevertheless, internal resource contenti...

Dan-Dan Su, Qi-Hao Liu, Xin-Ming Li et al. · 0 citations

CERLA-SFC: hierarchical orchestration of cost-efficient, reliable and low-latency SFCs in multi-access edge computing

CERLA-SFC is introduced, a hierarchical, multi-objective orchestrator that unifies learning-based placement, topology-aware routing and event-driven resource allocation in a single control loop that maintains near-zero latency violations across all urgency classes while keeping end-to-end delay in the millisecond range...

Yuanfei Xiao, Zhenli He, Xiaolong Zhai et al. · 0 citations
Conference Jul 2026

UDP-Based Virtual Network Slicing Simulator with Resource Borrowing and Jain Fairness Evaluation

Network slicing is a key enabling technology for fifth-generation (5G) and beyond mobile networks, which enables operators to run multiple logical networks on top of common physical infrastructure while meeting heterogeneous quality-ofservice (QoS) requirements. In this paper, we summarize the design, implementation, a...

Sroor Habeeb Mahmood, Ali Al-Allawee · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.