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Course Outline
Foundations: The Convergence of Digital Twins and 6G
- Application of digital twin concepts within telecom networks.
- 6G service classes and requirements that necessitate the use of twins.
- Data sources, fidelity levels, and managing the twin lifecycle.
Modeling 6G Components and Environments
- Representing RAN elements, fronthaul/midhaul/backhaul, and edge compute within twin models.
- Considerations for channel, propagation, and THz/mmWave modeling.
- Temporal granularity and synchronization between digital and physical layers.
Simulation & Co-simulation Architectures
- Comparing standalone simulation with co-simulation integrated with real network telemetry.
- Utilizing Ns-3, Unity, and emulation toolchains for integrated testing.
- Strategies for scaling large-scale twin scenarios.
AI-Native Optimization Techniques
- Employing supervised and reinforcement learning for radio resource management.
- Applying online learning, transfer learning, and domain adaptation for twin-to-field transfer.
- Structuring closed-loop control workflows and policy deployment patterns.
Real-Time Telemetry, Inference, and Feedback Loops
- Architecting streaming telemetry and positioning low-latency inference.
- Balancing edge vs. cloud inference trade-offs and model partitioning.
- Designing secure feedback loops and human-in-the-loop controls.
Digital Twin Fidelity, Validation & Uncertainty Quantification
- Establishing metrics for twin accuracy and validation methodologies.
- Techniques for quantifying and mitigating model uncertainty.
- Leveraging digital twins for SLA verification and performance assurance.
Orchestration, Automation & Intent-Driven Operations
- Integrating twins with orchestration planes and intent-based APIs.
- Implementing CI/CD and testing pipelines for twin models and ML artifacts.
- Deploying policy engines and automated remediation strategies.
Security, Privacy & Trust in Twin-Enabled Networks
- Implementing data governance, privacy-preserving modeling, and federated twin approaches.
- Developing threat models for twin synchronization and model integrity.
- Ensuring auditing, provenance, and explainability for AI-driven decisions.
Case Studies and Domain Applications
- Industrial automation and networked digital twins for manufacturing contexts.
- Validating mobility, autonomous systems, and XR services.
- Operational examples of predictive maintenance and capacity planning.
Hands-On Labs and Mini-Project
- Constructing a small-scale digital twin of a RAN segment using ns-3 and a visualization engine.
- Training a lightweight ML model for anomaly detection using twin-generated data.
- Executing a closed-loop test: telemetry → model inference → policy change in simulation.
Summary and Next Steps
Requirements
- Professional experience in telecom networking, RAN, or core network engineering.
- Working familiarity with simulation tools or network emulation environments.
- Practical knowledge of Python and foundational machine learning concepts.
Target Audience
- Telecom engineers and network architects specializing in next-generation networks.
- AI/ML engineers focused on network optimization and digital twin applications.
- Research engineers and simulation specialists investigating 6G use cases.
21 Hours