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.
Testimonials (1)
The ability of the trainer to align the course with the requirements of the organization other than just providing the course for the sake of delivering it.