Serial Number
73696
Course Number
CommE5068
Course Identifier
942 U0820
No Class
- 3 Credits
Elective
GRADUATE INSTITUTE OF ELECTRICAL ENGINEERING / GRADUATE INSTITUTE OF COMMUNICATION ENGINEERING
GRADUATE INSTITUTE OF ELECTRICAL ENGINEERING
GRADUATE INSTITUTE OF COMMUNICATION ENGINEERING
Elective- YEN-MING HUANG
- View Courses Offered by Instructor
COLLEGE OF ELECTRICAL ENGINEERING AND COMPUTER SCIENCE GRADUATE INSTITUTE OF COMMUNICATION ENGINEERING
yenminghuang@ntu.edu.tw
Website
https://sites.google.com/view/yenming/
- Sat 7, 8, 9
博理114
Type 1
40 Student Quota
NTU 30 + non-NTU 10
No Specialization Program
- Chinese
- Core Capabilities and Curriculum Planning
- Notes
NTU Enrollment Status
Enrolled0/30Other Depts0/0Remaining0Registered0- Course Description1. 本學期所有課程將會「實體聚集並支援線上會議室同步參與」,連結為 https://ntucc.webex.com/meet/yenminghuang 2. 歡迎所有對相控陣列雷達系統之實務設計和開發有興趣的同學,自在地加入我們的課程社團一起討論和分享,連結為 https://www.facebook.com/groups/ntuphasedarrayradar/ 3. 課程投影片將公告並隨時更新於 https://sites.google.com/view/yenming/teaching 4. 歡迎訂閱課程影片YouTube頻道: https://www.youtube.com/@ntuphasedarrayradar 5. 由於本課程的時段和形式較為特殊,若有任何問題,請隨時與授課教師聯絡 yenminghuang@ntu.edu.tw ------------------------------------------------------------------------- Algorithm Design for Phased Array Radar is a graduate-level course designed for students interested in modern radar systems widely used in vehicle networks, surveillance systems, military applications, satellites, etc. This course is the extension of the course entitled Signal Processing for Phased Array Radar to provide more insights into high-tech radar systems and applications in recent years. From the aspects of digital signal and data processing algorithms with the aid of Artificial Intelligence (AI), we explore advanced radar technologies.
- Course ObjectiveThe goal of this course is to introduce essential digital signal and data processing techniques for phased array radar systems. By taking this course, the students can - understand the basic principles of radar, - comprehend the commonly used signal and data processing algorithms at radar receivers, and - explore advanced research topics in future radar transceivers. In addition, by studying some selected topics and executing a term project in one semester, like a workshop, the students can - be familiar with radar technology and its AI-based data usage, - share their own opinions through oral presentations in classes, and - actualize the interested algorithms by teamwork.
- Course RequirementPrerequisite: - Linear Algebra - Signal and System - Principle of Communications Preferable: - Signal Processing for Phased Array Radar - Digital Signal Processing - Detection and Estimation - Adaptive Signal Processing Skill: - MATLAB (other programming languages are also okay) - Markdown and LaTeX Study on Selected Topics, Papers, or Book Chapters: - Figuring out the system model and revealing the key proposed concepts - Algorithm implementation and reconstruction of the simulation results
- Expected weekly study hours before and/or after class1
- Office Hour
Appointment by email. - Designated ReadingDesignated Reading: - Lecture slides, - supplementary notes, and - assigned technical documents, papers, theses, and book chapters.
- ReferencesPrimary Textbooks: - M. A. Richards, Fundamentals of Radar Signal Processing, 2nd edition, McGraw-Hill Education, 2014. - M. A. Richards, J. A. Scheer, and W. A. Holm, Principles of Modern Radar: Basic Principles, SciTech Publishing, 2010. - W. L. Melvin and J. A. Scheer, Principles of Modern Radar: Advanced Techniques, SciTech Publishing, 2012. - W. L. Melvin and J. A. Scheer, Principles of Modern Radar: Radar Applications, SciTech Publishing, 2013. - T. W. Jeffrey, Phased-Array Radar Design: Application of Radar Fundamentals, SciTech Publishing, 2009. - H. L. Van Trees, Optimum Array Processing: Part IV of Detection, Estimation, and Modulation Theory, John Wiley & Sons, Inc., 2002. Auxiliary Textbooks: - R. J. Mailloux, Phased Array Antenna Handbook, 3rd ed., Artech, 2017. - J. Guerci, Space-Time Adaptive Processing for Radar, 2nd ed., Artech, 2014. - V. C. Chen, The Micro-Doppler Effect in Radar, 2nd ed., Artech, 2019. - F. Fioranelli, H. Griffiths, M. Ritchie, and A. Balleri Micro-Doppler Radar and its Applications, SciTech Publishing, 2020. - J. Li and P. Stoica, MIMO Radar Signal Processing, Wiley-IEEE Press, 2009. - W. Liu and S. Weiss, Wideband Beamforming: Concepts and Techniques, John Wiley & Sons, Inc., 2010. - K. F. Warnick, R. Maaskant, M. V. Ivashina, D. B. Davidson, and B. D. Jeffs, Phased Array for Radio Astronomy, Remote Sensing, and Satellite Communications, Cambridge University Press, 2018. - S. M. Kay, Fundamentals of Statistical Signal Processing: Estimation Theory, Prentice-Hall PTR, 1993. - S. M. Kay, Fundamentals of Statistical Signal Processing: Detection Theory, Prentice-Hall PTR, 1998. - S. M. Kay, Fundamentals of Statistical Signal Processing: Practical Algorithm Development, Prentice-Hall PTR, 2013.
- Grading
30% Participation
Please see Lecture 0: Course Information and Overview for details in the website https://sites.google.com/view/yenming/teaching
30% Presentation of Selected Topics
Please see Lecture 0: Course Information and Overview for details in the website https://sites.google.com/view/yenming/teaching
40% Term Project
Please see Lecture 0: Course Information and Overview for details in the website https://sites.google.com/view/yenming/teaching
- Adjustment methods for students
Adjustment Method Description A2 以錄影輔助
Assisted by video
A3 提供學生彈性出席課程方式
Provide students with flexible ways of attending courses
B6 學生與授課老師協議改以其他形式呈現
Mutual agreement to present in other ways between students and instructors
D1 由師生雙方議定
Negotiated by both teachers and students
- Make-up Class Information
- Course Schedule
20230225Week 1 20230225 Lecture 0: Course Information and Overview 20230304Week 2 20230304 Lecture 1: Constant False Alarm Rate Detection 20230311Week 3 20230311 Lecture 1: Constant False Alarm Rate Detection 20230318Week 4 20230318 Lecture 2: Matched Filtering and Pulse Waveform 20230325Week 5 20230325 Lecture 2: Matched Filtering and Pulse Waveform 20230401Week 6 20230401 Self-Study (No Class) 20230408Week 7 20230408 Lecture 3: Doppler Phenomenology and Processing 20230415Week 8 20230415 Lecture 3: Doppler Phenomenology and Processing 20230422Week 9 20230422 Lecture 3: Doppler Phenomenology and Processing 20230429Week 10 20230429 Lecture 4: Array Characterization and Processing (Term Project Decision) 20230506Week 11 20230506 Lecture 4: Array Characterization and Processing 20230513Week 12 20230513 Lecture 4: Array Characterization and Processing 20230520Week 13 20230520 Lecture 5: Target Tracking With Data Association 20230527Week 14 20230527 Lecture 5: Target Tracking With Data Association (Graphical Abstract Submission) 20230603Week 15 20230603 Term Project Presentation 20230610Week 16 20230610 Term Project Presentation