通訊原理
Principles of Communication Systems
| 節 | 週三 | 週五 |
|---|---|---|
3 10:10–11:00 | 通訊原理 ED525 2 節連堂 | |
4 11:10–12:00 | ||
6 14:20–15:10 | 通訊原理 ED525 |
* 根據陽明交大上課時間表所列
本課程介紹通訊信號傳輸之基礎理論與基本技術,是欲了解通訊工程者必備的基礎知識。課程內容以介紹類比訊號傳輸方法及其效能分析為主,也以部分時間介紹數位通訊技術。雖然近年來,通訊系統逐漸愈趨數位化,但本課程所介紹有關類比通訊的各種觀念及數學工具,其實仍是了解數位通訊的重要基礎。本課程與後續的「數位通訊原理」形成內容連續之二學期課程;透過修習這兩門課,可對通訊工程的基要有較完整的認識。但本課程在規劃上,並不假設學生會修習上述第二學期課程。本課程除了基礎理論的練習,也強調以電腦模擬來瞭解通訊系統的運作過程。因此對Matlab或C語言的熟練很重要。 This course introduces the basic theory and basic techniques for communication signal transmission. It provides the fundamental knowledge that a communication system design engineer should possess. This course concentrates on the introduction to analog signal transmission methods and their performance evaluation, but it also covers briefly the very basic concepts in the digital communication technology. Although in recent years, more and more communication systems are in the digital format, the various concepts and mathemat-ical tools discussed in this course concerning analog communication nevertheless lay the essential foundation for understanding the advanced digital communication systems. This course, together with its sequel, “Principles of Digital Communication,” form a two-semester curriculum with connected contents. A more complete understanding of the fundamentals of communication engineering can be acquired by taking both these courses. But the organization of the present course does not assume that students will also take the second-semester course. Computer simulations help learners in understanding the operations of communication systems. It is important for the students to master a few programming tools (Matlab or C language) in this course.
1. 工程數學(含線性代數、機率、常微分方程、複變函數)之基本觀念 Basic concepts in Engineering Mathematics (including Linear Algebra, Probability, Ordinary Differential Equations, and Complex Variables) 2. 訊號與系統 Signals and Systems
對Matlab或C語言的熟練很重要。 References: 1. S. Haykin and M. Moher, Communication Systems, 5th ed., Wiley, 2009. 2. J. G. Proakis and M. Salehi, Fundamentals of Communication Systems, 2nd ed., Pren-tice-Hall, 2013. 3. A. B. Carlson and P. B. Crilly, Communication Systems, 5th ed, McGraw Hill, 2009
3次小考(30%); 期中考(35%); 期末考(35%) [不交作業] 3 Quizzes (30%), Midterm (35%), Final examine (35%) [No Homework]
- Introduction
- Review of Signals and Systems
- Linear Modulation
- Angle Modulation
- Review of Probability
- Random Processes
- Performance of Analog Modulation Methods in Noise
- Introduction to Digital Communication
| 週次 | 主題 |
|---|---|
| 第 1 週 | Ch. 1 Introduction Ch. 2 Signals & Systems |
| 第 2 週 | Ch. 2 Signals & Systems |
| 第 3 週 | Ch. 2 Signals & Systems |
| 第 4 週 | Ch. 2 Signals & Systems |
| 第 5 週 | Ch. 2 Signals & Systems |
| 第 6 週 | Ch.2 Signals & Systems Ch.3 Linear Modulation |
| 第 7 週 | Ch.3 Linear Modulation |
| 第 8 週 | Ch.3 Linear Modulation 11/02 1st Midterm Exam |
| 第 9 週 | Ch. 4 Angle Modulation & Multiplexing |
| 第 10 週 | Ch. 4 Angle Modulation & Multiplexing |
| 第 11 週 | Ch. 4 Angle Modulation & Multiplexing Ch. 6 Probability & Random Variables |
| 第 12 週 | Ch. 6 Probability & Random Variables |
| 第 13 週 | Ch. 6 Probability & Random Variables Ch. 7 Random Signals and Noise |
| 第 14 週 | Ch. 7 Random Signals and Noise 12/14 2nd Midterm Exam |
| 第 15 週 | Ch. 7 Random Signals and Noise |
| 第 16 週 | Ch. 7 Random Signals and Noise Ch. 8 Noise in Modulation Systems |
| 第 17 週 | Ch. 8 Noise in Modulation Systems |
| 第 18 週 | 1/9 Final Exam |
R. E. Ziemer and W. H. Tranter, Principles of Communications, 7th ed., Wiley, 2014