人工智慧無線通訊
Artificial Intelligence Wireless
| 節 | 週五 |
|---|---|
5 13:20–14:10 | 人工智慧無線通訊 ED303 3 節連堂 |
6 14:20–15:10 | |
7 15:30–16:20 |
* 根據陽明交大上課時間表所列
近年來多樣化的行動通訊應用,特別是由AI驅動的行動通訊應用風潮,激起了有關無線通訊未來發展的興趣。在5G全球化部署的同時,工業界與學術界已經開始針對超5G時代與未來6G進行熱烈地討論。我們預計未來6G將經歷前所未有的創新與突破,這將與先前行動通訊蜂窩網路系統有明顯的差異。特別是6G將超越現有移動物聯網概念,將支持核心網路到使用者終端設備皆具備無處不在的AI運算功能與個人化服務。同時,人工智慧將在6G通訊架構、協議、運行上的設計與優化扮演關鍵角色。 在本課程中,我們將討論未來6G的潛在技術與挑戰,以實現多樣化終端行動通訊應用,以及用於6G網路架構設計與優化的關鍵AI技術之理論與算法,並追蹤未來6G演進的關鍵趨勢。 課程內容將涵蓋六大部分: 1. Evolution for Wireless Communication 2. AI Wireless or Wireless AI Applications 3. Mathematical Fundamentals in AI Wireless 4. Physical Layer Communication in AI Wireless 5. Network Management in AI Wireless 6. Network Operation in AI Wireless 7. 大語言模型與生成式AI 在無線通訊的應用 Course Descriptions and Objectives: In recent years, diversified mobile communication applications, especially the trend of mobile communication applications driven by AI, have aroused interest in the future development of wireless communication. At the same time as the global deployment of 5G, industry and academia have begun a lively discussion on the ultra 5G era and the future 6G. We expect that 6G will experience unprecedented innovations and breakthroughs in the future, which will be significantly different from previous mobile communication cellular network systems. In particular, 6G will go beyond the existing mobile Internet of Things concept and will support the ubiquitous AI computing functions and personalized services from the core network to user terminal equipment. At the same time, artificial intelligence will play a key role in the design and optimization of 6G communication architecture, protocols, and operations. In this course, we will discuss the potential technologies and challenges of 6G in the future in order to achieve a variety of terminal mobile communication applications, as well as theories and algorithms of key AI technologies for the design and optimization of 6G network architectures, and track the future evolution of 6G Key trends. The course content will cover six parts: 1. Evolution for Wireless Communication 2. AI Wireless or Wireless AI Applications 3. Mathematical Fundamentals in AI Wireless 4. Physical Layer Communication in AI Wireless 5. Network Management in AI Wireless 6. Network Operation in AI Wireless 7. Large Language Model for GenAI Wireless Appliactions In this year, we will use a textbook, "SDR with Zynq Ultrascale+ RFSoC", for lab exercise to teach students for using programming a FPGA board for communications system design. Zynq Ultrascale+ RFSoC, a technology that brings real, single-chip Software Defined Radio (SDR) to the marketplace. RFSoC devices are the first adaptive SoCs (Systems-on-Chip) to monolithically integrate multiple RF signal chains along with Arm application and real-time, multicore processors and programmable logic. RFSoC is not so much a radio on a chip, but almost an entire base station on a chip! We anticipate that the book will be of interest and use across a number of technical areas. It serves as an introduction to the family of RFSoC devices and its key features and programmability. The book explores SDR concepts and architecture and key DSP algorithms.
數位通訊、人本計算 、機器學習
學期作業:每周一次 考試:期中專題、期末專題 • Assignments: 25% • Mid-Project: 35% • Final Project 35% • Class Participation 5%
| 週次 | 主題 |
|---|---|
| 第 1 週 | Chapter1 Introduction Chapter2 Software Defined Radio |
| 第 2 週 | Chapter3 Introduction to Zynq UltraScale+ RFSoC Chapter4 DSP Fundamentals |
| 第 3 週 | |
| 第 4 週 | 開放架構與無線通訊技術標準 |
| 第 5 週 | 無線通訊技術與人工智慧的整合發展 |
| 第 6 週 | 邁向永續智慧城市的6G AI 通訊 |
| 第 7 週 | |
| 第 8 週 | Chapter5 Spectral Analysis Chapter6 Wireless Communications Fundamentals |
| 第 9 週 | 期中報告 Chapter7 Quadrature Modulation & Complex Exponentials Chapter8 SDR Architectures |
| 第 10 週 | Chapter9 RF Data Converters: Analogue to Digital Chapter10 RF Data Converters: Example Receiver Architectures |
| 第 11 週 | Chapter11 RF Data Converters: Digital to Analogue Chapter12 RF Data Converters: Figures of Merit and Frequency Planning |
| 第 12 週 | Chapter13 Design Tools and Workflows for RFSoC SDR Chapter14 Forward Error Correction |
| 第 13 週 | Chapter15 Practical SD-FEC Design Chapter16 OFDM: Orthogonal Frequency Division Multiplexing |
| 第 14 週 | Chapter17 RFSoC Applications in Cellular Networks Chapter18 MIMO and Beamforming |
| 第 15 週 | Chapter19 Dynamic Spectrum Access and Cognitive Radio |
| 第 16 週 | 期末報告 |
1.SDR with Zynq Ultrascale+ RFSoC, https://www.rfsocbook.com/ 2. Key Technologies for 5G Wireless Systems, Vincent W. S. Wong, Robert Schober, Derrick W. K. Ng, Li-Chun Wang, Cambridge 2017. (ISBN 978-1-107-17241-8) 3. Wireless AI, K. J. Ray LIU and Beibei Wang, Cambridge 2019. (ISBN 978-1-108-49786-2)
- 地點
- ED804;ED303
- 時間
- 每周五 下午 4:30 ~ 5:30
- 聯絡方式
- wang@nycu.edu.tw