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.


6G Evolution: Blockchain, Semantic Communications & Radar
本课程是 6G for a Connected Future 专项课程 的一部分


位教师:Lina Mohjazi
包含在 中
您将学到什么
Understand blockchain wireless systems, semantic communications, multimodal networks, and radar-enabled monitoring applications.
您将获得的技能
- Software-Defined Networking
- Generative AI
- Artificial Intelligence
- Electrical Engineering
- Artificial Intelligence and Machine Learning (AI/ML)
- Deep Learning
- Electronics Engineering
- Zero Trust Network Access
- Information Technology
- Communication Systems
- Health Technology
- Distributed Computing
- Network Architecture
- Machine Learning
- Emerging Technologies
- Digital Communications
- Trustworthiness
- Internet Of Things
要了解的详细信息

添加到您的领英档案
September 2025
15 项作业
了解顶级公司的员工如何掌握热门技能

积累特定领域的专业知识
- 向行业专家学习新概念
- 获得对主题或工具的基础理解
- 通过实践项目培养工作相关技能
- 获得可共享的职业证书

该课程共有5个模块
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.
涵盖的内容
10个视频10篇阅读材料2个作业
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.
涵盖的内容
5个视频6篇阅读材料3个作业
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
涵盖的内容
9个视频11篇阅读材料3个作业
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.
涵盖的内容
9个视频14篇阅读材料4个作业
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.
涵盖的内容
10个视频3篇阅读材料3个作业
获得职业证书
将此证书添加到您的 LinkedIn 个人资料、简历或履历中。在社交媒体和绩效考核中分享。
位教师


从 Electrical Engineering 浏览更多内容
- 状态:免费试用
LearnQuest
- 状态:预览
Institut Mines-Télécom
- 状态:免费试用
Association of International Certified Professional Accountants
- 状态:免费试用
人们为什么选择 Coursera 来帮助自己实现职业发展




常见问题
To access the course materials, assignments and to earn a Certificate, you will need to purchase the Certificate experience when you enroll in a course. You can try a Free Trial instead, or apply for Financial Aid. The course may offer 'Full Course, No Certificate' instead. This option lets you see all course materials, submit required assessments, and get a final grade. This also means that you will not be able to purchase a Certificate experience.
When you enroll in the course, you get access to all of the courses in the Specialization, and you earn a certificate when you complete the work. Your electronic Certificate will be added to your Accomplishments page - from there, you can print your Certificate or add it to your LinkedIn profile.
Yes. In select learning programs, you can apply for financial aid or a scholarship if you can’t afford the enrollment fee. If fin aid or scholarship is available for your learning program selection, you’ll find a link to apply on the description page.
更多问题
提供助学金,