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Course Outline

Defining the new era of smart technology:

  • Categories of smart technology;
  • The technological layers of the Internet of Things;
  • Business integration: Adapting new technologies and 5G to smart solutions.

Core concepts underpinning 5G and IoT:

  • Electromagnetic spectrum;
  • Latency;
  • eMBB (enhanced Mobile Broadband);
  • mMTC (massive Machine Type Communications);
  • uRLLC (ultra-Reliable Low Latency Communications);
  • Open RAN;
  • Frequency sub-ranges allocated for 5G and IoT networks;
  • Fresnel zone;
  • Material attenuation;
  • Types of propagation environments;
  • Diffraction;
  • Tropospheric refraction;
  • Hydrometeors.

Essential knowledge regarding 5G antennas:

  • Various antenna types;
  • Beamforming technology;
  • Null steering;
  • Frequency reuse strategies;
  • Interaction between antennas, the physical environment, and transmission attenuation.

5G capabilities and key considerations for IoT applications:

  • Spectrum sharing;
  • Power saving modes;
  • Self-healing network features;
  • Quality of Service (QoS).

Understanding the structure of 5G architecture:

  • Non-standalone 5G configurations;
  • Dual Connectivity concepts;
  • Migration strategies from 4G;
  • Fundamental 5G design principles.

5G virtualization and network slicing for the Internet of Things:

5G and IoT security: Challenges during implementation:

  • Physical attacks;
  • DDoS (Distributed Denial of Service);
  • Edge attacks;
  • IMSI slicing risks;
  • Silent downgrades;
  • Device tracking issues.

The future of 5G: Integration with emerging technologies such as AI, the Metaverse, and Blockchain:

Q&A session.

Requirements

A fundamental understanding of IoT concepts.

 14 Hours

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