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Il y a 4 modules dans ce cours
The first part of this specialization in 6G wireless technologies will equip learners to master foundational 6G concepts and vision, analyze AI-driven network operations, understand Reconfigurable Intelligent Surfaces (RIS) technology, and explore optical wireless communications including LiFi. Learners will gain critical insights from leading experts on how smart radio and optical systems will reshape wireless connectivity.
Part 1 combines theoretical foundations with practical insights from industry pioneers, focusing on AI-native networks and intelligent surfaces that will define next-generation connectivity. The integrated approach linking RIS technology with machine learning and optical wireless systems provides a strong understanding of 6G's enablers and related technologies.
By completing Part 1, learners will be equipped with specialized knowledge in the fast-evolving areas of 6G development, positioning them at the forefront of wireless innovation. This foundation prepares learners for advanced topics in Parts 2 and 3, creating a pathway to 6G expertise that bridges academic research with real-world applications.
This module introduces the foundational concepts of 6G wireless technologies, highlighting their potential to reshape global communication. Students will explore the vision for ubiquitous coverage in the 6G era, addressing how this technology can help bridge the digital divide. The module will also dive into the symbiotic relationship between AI and 6G, exploring how artificial intelligence can enhance wireless networks and vice versa. Students will gain an understanding of 6G's transformative potential across various sectors and its role in building the future of connectivity.
Inclus
8 vidéos15 lectures3 devoirs
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8 vidéos•Total 59 minutes
Welcome to the Course•3 minutes
Introduction to 6G and its Vision Part 1•11 minutes
Introduction to 6G and its Vision Part 2•6 minutes
Ubiquitous coverage – A Hidden Agenda for 6G•6 minutes
Enabling Principles•11 minutes
AI-Driven Efficient Operation•8 minutes
AI for 6G and 6G for AI•11 minutes
Pointers for Relevant Work•2 minutes
15 lectures•Total 146 minutes
Meet the Course Team•3 minutes
Course Structure•3 minutes
Meet the Instructors•5 minutes
Section 1 Lecture Slides•5 minutes
Journal Article: The Journey Toward 6G•20 minutes
Section 2 Lecture Slides•5 minutes
Journal Article: A Speculative Study on 6G•20 minutes
Section 3 Lecture Slides•5 minutes
Beyond 5G/6G Vision White Paper•20 minutes
Section 4 Lecture Slides•5 minutes
5G Backhaul Challenges and Emerging Research Directions•20 minutes
Section 5 Lecture Slides•5 minutes
Journal Article: A Review of 6G and AI Convergence•20 minutes
Section 6 Lecture Slides•5 minutes
Further Reading•5 minutes
3 devoirs•Total 60 minutes
Practice Quiz 1•10 minutes
Practice Quiz 2•20 minutes
Module 1 Final Assessment•30 minutes
Module 2: Reconfigurable Intelligent Surfaces (RIS)-Assisted Wireless Communication Systems
Module 2•5 heures à terminer
Détails du module
This module provides an in-depth exploration of Reconfigurable Intelligent Surfaces (RIS) in wireless communication systems. Students will learn the theoretical foundations, technical details, and application scenarios of RIS, focusing on its potential to improve wireless network spectral efficiency and energy consumption. The module will also address future challenges and provide case studies discussions and interactive activities.
Inclus
9 vidéos11 lectures2 devoirs
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9 vidéos•Total 77 minutes
Introduction to RIS Part 1•8 minutes
Introduction to RIS Part 2•9 minutes
Fundamental Working Principles of RIS•12 minutes
RIS-Assisted Wireless Communications•12 minutes
Interplay of Machine Learning and RIS Part 1•6 minutes
Interplay of Machine Learning and RIS Part 2•9 minutes
Future Directions and Challenges Part 1•8 minutes
Future Directions and Challenges Part 2•11 minutes
Summary and Key Takeaways•2 minutes
11 lectures•Total 140 minutes
Meet the Instructor•5 minutes
Section 1 Lecture Slides•5 minutes
Journal Article: RIS Principles and Opportunities•20 minutes
Section 2 Lecture Slides•5 minutes
Journal Article: A Survey on RIS - Wireless Communication Perspective •20 minutes
Section 3 Lecture Slides•5 minutes
Journal Article: An Overview of Intelligent Meta-Surfaces for 6G and Beyond•20 minutes
Section 4 Lecture Slides•5 minutes
Journal Article: An Outlook on the Interplay of Artificial Intelligence and Software-Defined Metasurfaces•20 minutes
Reading and Code: RIS Channel Estimation with Machine Learning •30 minutes
Section 5 Lecture Slides•5 minutes
2 devoirs•Total 60 minutes
RIS Channel Estimation with Machine Learning •30 minutes
Module 2 Final Assessment•30 minutes
Module 3: Optical Wireless Communications for 6G and Beyond
Module 3•5 heures à terminer
Détails du module
This module explores Optical Wireless Communications (OWC) as a key enabling technology for 6G networks. Students examine fundamental principles, emerging technologies including LiFi and VLC, and design considerations such as channel modeling and interference management. The module covers RIS-enabled systems, physical layer security, and practical applications in ultra-reliable low-latency communications and high data-rate indoor networks, while addressing implementation challenges and future research directions.
Inclus
8 vidéos12 lectures2 devoirs
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8 vidéos•Total 67 minutes
Introduction to OWC •10 minutes
OWC Emerging Technologies Part 1•9 minutes
OWC Emerging Technologies Part 2•8 minutes
OWC Fundamentals Part 1•8 minutes
OWC Fundamentals Part 2•10 minutes
RIS-enabled LiFi Part 1•6 minutes
RIS-enabled LiFi Part 2•8 minutes
Physical Layer Security in LiFi•9 minutes
12 lectures•Total 150 minutes
Meet the Instructor•5 minutes
Section 1 Lecture Slides•5 minutes
Book Chapters: An Introduction to Optical Wireless Mobile Communications•20 minutes
Section 2 Lecture Slides•5 minutes
Journal Article: A Comparative Survey of Optical Wireless Technologies•20 minutes
Section 3 Lecture Slides•5 minutes
Journal Article: Modulations for Visible Light Communications With Dimming Control •20 minutes
Section 4 Lecture Slides•5 minutes
Journal Article: LiFi through Reconfigurable Intelligent Surfaces•20 minutes
Section 5 Lecture Slides•5 minutes
Survey Article: Physical Layer Security for Visible Light Communication Systems•20 minutes
Reading and Code: OWC Channels•20 minutes
2 devoirs•Total 60 minutes
Channel Estimation in OWC •30 minutes
Module 3 Final Assessment•30 minutes
Module 4: Discussion on The Rise of Smart Radio and Optical Systems
Module 4•4 heures à terminer
Détails du module
This module features expert discussions on the evolution of smart radio environments and optical wireless systems for next-generation communications. Through conversations with leading researchers, students explore the development of Reconfigurable Intelligent Surfaces (RIS) from theoretical concepts to real-world applications, the integration of machine learning in signal processing, and the role of optical wireless technologies in defining 6G networks. The module provides insights into current research trends, standardization efforts, industry perspectives, and future challenges in smart wireless systems.
Inclus
8 vidéos5 lectures3 devoirs
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8 vidéos•Total 103 minutes
Part 1: RIS – From Theory to Global Impact •8 minutes
Part 2: Intelligent Surfaces Meet ML Shaping the Future of Signal Processing •13 minutes
Part 3: Research, Standardization & Industry•13 minutes
Part 4: Reflections, Advice & the Next Frontier•17 minutes
Part 1: Defining 6G •10 minutes
Part 2: Light as the New Frontier•16 minutes
Part 3: Expanding Horizons •15 minutes
Part 4: Myths, Breakthroughs, and Advice for the Next Generation •11 minutes
5 lectures•Total 55 minutes
Meet the Guests•5 minutes
Required Reading: A Prototype of Reconfigurable Intelligent Surface with Continuous Control of the Reflection Phase•20 minutes
Further Reading•5 minutes
Required Reading: Introduction to Indoor Networking Concepts and Challenges in LiFi•20 minutes
Further Reading•5 minutes
3 devoirs•Total 60 minutes
Practice Quiz 1•15 minutes
Practice Quiz 2•15 minutes
Module 4 Final Assessment•30 minutes
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