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Course Outline

Foundations of 6G and Edge Computing

  • Overview of 6G technology and its development roadmap
  • Core principles of edge computing and various deployment models
  • The 6G–Edge–Cloud continuum and modern distributed computing paradigms

Architecture of the Intelligent Edge

  • Essential components of edge systems (compute, storage, networking)
  • Seamless integration with IoT sensors, gateways, and 6G connectivity
  • Edge orchestration strategies and service management

6G Capabilities and Enabling Technologies

  • Utilization of Terahertz spectrum for low-latency communications
  • AI-native network management and intent-driven orchestration
  • Network slicing and dynamic resource allocation for edge workloads

Data and AI at the Edge

  • Federated learning and distributed AI processing techniques
  • Real-time analytics and event-driven architecture patterns
  • Data governance and privacy considerations in multi-domain edge systems

Edge–Cloud Collaboration Models

  • Strategies for hybrid and multi-cloud integration
  • Techniques for offloading, caching, and latency optimization
  • Implementation of APIs, microservices, and container-based deployment

Security and Trust in Distributed Edge Networks

  • Identity management, authentication, and zero-trust frameworks
  • Ensuring data integrity, encryption, and trusted execution environments (TEEs)
  • Resilience measures and disaster recovery across distributed nodes

Use Cases and Industry Applications

  • Industrial automation and smart factory implementations
  • Autonomous vehicles and advanced mobility infrastructure
  • Applications in healthcare, logistics, and environmental monitoring
  • AR/VR and immersive media experiences powered by the edge

Operational and Business Implications

  • Edge-as-a-Service models and emerging ecosystem dynamics
  • Cost optimization and lifecycle management strategies
  • Workforce transformation and skill requirements for 6G-edge convergence

Workshop: Designing a 6G-Ready Edge Architecture

  • Mapping workloads and identifying latency-sensitive services
  • Defining network topologies and resource allocation strategies
  • Drafting a proof-of-concept deployment and evaluation plan

Summary and Next Steps

Requirements

  • A solid understanding of cloud and networking fundamentals.
  • Familiarity with IoT and distributed systems concepts.
  • Foundational knowledge of edge or hybrid infrastructure design.

Target Audience

  • IT architects exploring the convergence of edge computing and next-generation networks.
  • Enterprise infrastructure planners and solution designers.
  • Cloud and IoT professionals preparing for the 6G evolution.
 21 Hours

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