ZERO-TOUCH NETWORK AND SERVICE MANAGEMENT​

USE CASES​

PoC-1 Zero-Touch Network and service management with end-to-end SLAs​

This use case leverages the highly distributed MonB5G mechanisms (i.e., the MS, DE and AE) to provide automated, zero-touch service management across domains, enabling Network Operators and MVNOs to avoid domain silos and ensure end-to-end cross-domain SLAs.

Experimental Scenario 1:
Zero-Touch multi-domain service management with end-to-end SLAs

This scenario will aim to assess the data-driven management systems in a multi-domain scenario w.r.t. their ability to guarantee the stringent end-to-end SLA of the Tactile Internet application.

Experimental Scenario 2:
Elastic end-to-end slice management

This scenario will aim to demonstrate how MonB5G mechanisms react to address local performance issues in multiple technological domains as well as at changes to traffic patterns in various timescales.

PoC-2 AI-assisted policy-driven security monitoring & enforcement​

The main purpose behind this use-case is to show both the efficiency of MonB5G when relying on AI to ensure legacy/new security threats detection in addition to their respective mitigations actions, and the proper enforcement of the AI-based techniques through novel trust-based evaluation mechanisms.

Experimental Scenario 1:
Attack identification and mitigation

This scenario will aim to demonstrate the robustness of MonB5G for identifying, detecting and then mitigating the in-slice and cross-slice attacks.

Experimental Scenario 2:
Robustness of learning algorithms
in the face of attacks

This scenario will aim to demonstrate that even under significant numbers/ratios of misbehaving entities, distributed learning can be carried out in a robust way.

This project has received funding from the European Union’s Horizon 2020 research and innovation programme under Grant Agreement No. 871780​

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