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In diesem Kurs gibt es 5 Module
The second part of this specialization in 6G wireless technologies will allow learners to understand blockchain-empowered wireless systems, analyze multimodal smart networks with vision-aided capabilities, master semantic communication principles and mathematical frameworks, and explore radar-enabled monitoring for 6G applications. Learners will gain expert insights into how these advanced technologies will enable intelligent, secure, and efficient wireless networks.
Part 2 advances beyond foundational concepts to examine cutting-edge innovations that will transform network intelligence and functionality. The integrated approach covers blockchain resource management, semantic communication transceiver design, radar principles for assisted living, and multimodal network architectures. Expert discussions from telecom visionaries provide real-world perspectives on wireless network evolution and deployment strategies.
By completing Part 2, learners will be equipped with specialized knowledge in next-generation network intelligence and security mechanisms, positioning them to contribute to 6G's most innovative applications. This intermediate foundation gives learners a fundamental understanding how 6G will revolutionize connectivity through intelligent, semantic-aware, and blockchain-secured communications.
This module explores the integration of blockchain technology with wireless communication systems to enhance security, trust, and reliability in distributed networks. Students examine the fundamental concepts of the Byzantine Generals Problem and Practical Byzantine Fault Tolerance (PBFT) as foundational principles for understanding blockchain consensus mechanisms. The module covers operational challenges in wireless environments, resource requirements for blockchain deployment, and practical applications of blockchain-enabled wireless systems.
This module explores the integration of multiple sensing modalities with wireless communication systems to create environmentally-aware networks for next-generation mmWave/THz communications. Students examine vision-aided wireless network architectures, blockage prediction mechanisms, and proactive network management strategies. The module covers performance evaluation metrics, federated learning approaches for privacy-preserving distributed intelligence, and the practical implementation challenges of multimodal systems.
Das ist alles enthalten
5 Videos6 Lektüren3 Aufgaben
Infos zu Modulinhalt anzeigen
5 Videos•Insgesamt 53 Minuten
Module Content•2 Minuten
Introduction to Multi-Modal Smart Wireless Networks •15 Minuten
Vision aided Wireless Networks Part 1•13 Minuten
Vision aided Wireless Networks Part 2•12 Minuten
Challenges and Opportunities in Multimodal Networks•10 Minuten
6 Lektüren•Insgesamt 80 Minuten
Meet the Instructor•5 Minuten
Section 1 Lecture Slides•5 Minuten
Introduction Reading Material •30 Minuten
Section 2 Lecture Slides•5 Minuten
VA-WN Reading Material •30 Minuten
Section 3 Lecture Slides•5 Minuten
3 Aufgaben•Insgesamt 70 Minuten
Introduction to Fundamentals •20 Minuten
VA-WN•20 Minuten
Module 2 Final Assessment•30 Minuten
Module 3: Semantic Empowered Wireless Communication Systems
Modul 3•4 Stunden abzuschließen
Moduldetails
This module introduces semantic communication as a paradigm shift from traditional bit-oriented to semantics-oriented wireless communication systems. Students explore the fundamental principles, network architectures, and mathematical frameworks underlying semantic communication systems designed to address growing data traffic demands and stringent service requirements. The module covers transceiver design challenges, knowledge graph fusion techniques, and resource management strategies for semantic-aware radio access networks (S-RAN). Students examine practical applications including virtual reality delivery, privacy-preserving communication, and the integration of generative AI for enhanced semantic processing and transmission efficiency
Das ist alles enthalten
9 Videos11 Lektüren3 Aufgaben
Infos zu Modulinhalt anzeigen
9 Videos•Insgesamt 90 Minuten
Background and Motivations•7 Minuten
Network Architecture for Semantic Communication•12 Minuten
Transceiver Design in Semantic Communication •11 Minuten
Mathematical Framework of Semantic Communication Part 1•11 Minuten
Mathematical Framework of Semantic Communication Part 2•8 Minuten
Mathematical Framework of Semantic Communication Part 3•10 Minuten
Resource Management for Semantic Communication Part 1•12 Minuten
Resource Management for Semantic Communication Part 2•10 Minuten
Resource Management for Semantic Communication Part 3•9 Minuten
11 Lektüren•Insgesamt 115 Minuten
Meet the Instructor•5 Minuten
Section 1 Lecture Slides•5 Minuten
Section 2 Lecture Slides•5 Minuten
Journal Article: Semantic-Aware Radio Access Networks•20 Minuten
Journal Article: A Mathematical Framework of Semantic Communication based on Category Theory•20 Minuten
Section 5 Lecture Slides•5 Minuten
Journal Article: Generative AI-Driven Semantic Communication Networks•20 Minuten
Optional Further Reading•5 Minuten
3 Aufgaben•Insgesamt 60 Minuten
Practice Quiz 1•10 Minuten
Practice Quiz 2•20 Minuten
Module 3 Final Assessment•30 Minuten
Module 4: Radar-Enabled Monitoring for 6G Applications
Modul 4•5 Stunden abzuschließen
Moduldetails
This module introduces radar principles and their applications in 6G wireless systems and assisted living technologies. Students explore fundamental radar concepts, advanced signal processing techniques including ultra-wideband and FMCW systems, and practical applications in healthcare monitoring. The module covers radar system design, Doppler analysis, range compression, and the integration challenges of joint communication and sensing systems for next-generation wireless networks.
Das ist alles enthalten
9 Videos14 Lektüren4 Aufgaben
Infos zu Modulinhalt anzeigen
9 Videos•Insgesamt 79 Minuten
Introduction to Radar and its History•10 Minuten
Radar Principles Part 1•8 Minuten
Radar Principles Part 2•7 Minuten
Waveform Design Considerations•9 Minuten
Range Compression•6 Minuten
Doppler Processing•8 Minuten
Applications in Assisted Living Part 1•9 Minuten
Applications in Assisted Living Part 2•14 Minuten
Future Challenges•7 Minuten
14 Lektüren•Insgesamt 160 Minuten
Meet the Instructor•5 Minuten
Section 1 Lecture Slides•5 Minuten
Section 2 Lecture Slides•5 Minuten
Radar Basics•20 Minuten
Section 3 Lecture Slides•5 Minuten
Journal Article: Performances of Multitones for Ultra-Wideband Software-Defined Radar•20 Minuten
Section 4 Lecture Slides•5 Minuten
Conference Paper: Comparison of Matched Filter and Dechirp Processing Used in Linear Frequency Modulation•20 Minuten
Section 5 Lecture Slides•5 Minuten
Journal Article and Dataset: Radar Sensing for Healthcare •20 Minuten
Section 6 Lecture Slides•5 Minuten
Journal Article: Radar Signal Processing for Sensing in Assisted Living•20 Minuten
Section 7 Lecture Slides•5 Minuten
Journal Article: Seventy Years of Radar and Communications•20 Minuten
4 Aufgaben•Insgesamt 60 Minuten
Practice Quiz 1•10 Minuten
Practice Quiz 2•10 Minuten
Practice Quiz 3•10 Minuten
Module 4 Final Assessment•30 Minuten
Module 5: Discussion on Rethinking Wireless Networks and the Vision for 6G
Modul 5•4 Stunden abzuschließen
Moduldetails
This podcast-based module features in-depth discussions with telecom visionaries and researchers exploring the future of wireless communications and 6G network architectures. Students engage with expert perspectives on strategic deployment challenges, policy considerations, and emerging paradigm shifts in telecommunications. The module examines AI-enabled edge computing, ultra-reliable low-latency applications, and the integration of wireless networks in healthcare, robotics, and smart systems, while addressing global standardization efforts and business considerations for next-generation wireless technologies.
Das ist alles enthalten
10 Videos3 Lektüren3 Aufgaben
Infos zu Modulinhalt anzeigen
10 Videos•Insgesamt 90 Minuten
Part 1: Shaping the Wireless Future (part 1) •13 Minuten
Part 2: Shaping the Wireless Future (part 2) •12 Minuten
Part 3: Roll-outs & Real-World Deployment •10 Minuten
Part 4: Strategy, Policy, & Diversification in Telecoms/ Legacy, Advice, & the Global Academic Impact •9 Minuten
Part 5: Futuristic Applications & Final Reflections •6 Minuten
Part 1: The Big Picture•7 Minuten
Part 2: AI at the Edge •6 Minuten
Part 3: Smarter, Safer, Networks •11 Minuten
Part 4: Healthcare, Robots & Beyond •7 Minuten
Part 5: Policy, Standards, and Global Strategy in Telecoms•8 Minuten
3 Lektüren•Insgesamt 65 Minuten
Meet the Guests•5 Minuten
Required Reading: A Survey on Spectrum Sensing and Learning Technologies for 6G
•30 Minuten
Required Reading: Business Case and Technology Analysis for 5G Low Latency Applications•30 Minuten
3 Aufgaben•Insgesamt 60 Minuten
Practice Quiz 1•15 Minuten
Practice Quiz 2•15 Minuten
Module 5 Final Assessment•30 Minuten
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