Introduction to Communication Systems - 108 Academic Year

本課程是由 國立陽明交通大學電機工程學系 提供。

To give students a basic understanding of communications.

Textbook:

Simon Haykin, Communication Systems, 4rd edition, John Wiley & Sons, 2001.

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Instructor(s) College of Electrical and Computer Engineering Prof. Po-Ning Chen
Course Credits 3 Credits
Academic Year 108 Academic Year
Level 
Prior Knowledge None
Related Resources Course Video   Course Syllabus   Course Calendar   Course Handout 

WeekCourse ContentCourse VideoCourse Download
Ch.1 Random Process
1.1 Introduction
A1.1 Probability Concept
A1.2 Random Variable
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1.1 Introduction
A1.2 Random Variable
1.2 Mathematical Definition of a Random Process
1.3 Stationary Process
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1.3 Stationary Process
A1.3 Statistical Averages
1.4 Mean, Correlation and Covariance Functions
1.5 Ergodic Process
1.6 Transmission of a Random Process Through a Linear Time-Invariant System
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1.6 Transmission of a Random Process Through a Linear Time-Invariant System
A2.1 Fourier Analysis
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1.6 Transmission of a Random Process Through a Linear Time-Invariant System
A2.1 Fourier Analysis
1.7 Power Spectral Density
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1.7 Power Spectral DensityWatch OnlineMP4 Download
1.7 Power Spectral Density
1.8 Gaussian Process
1.9 Noise
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1.9 Noise
1.10 Narrowband Noise
A2.2 Bandwidth
A2.3 Hilbert Transform
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1.10 Narrowband Noise
A2.4 Complex Representation of Signal and System
1.11 Representation of Narrowband Noise in terms of In-Phase and Quadrature Components
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1.11 Representation of Narrowband Noise in terms of In-Phase and Quadrature Components
1.12 Representation of Narrowband Noise in Terms of Envelope and Phase Components
1.13 Sine Wave Plus Narrowband Noise
1.14 Computer Experiments: Flat-Fading Channel
1.
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2.2 Amplitude Modulation
2.3 Linear Modulation Scheme
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2.3 Linear Modulation Scheme
2.4 Frequency Translation
2.5 Frequency Division on Multiplexing
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2.4 frequency translation
2.5 Frequency Division on Multiplexing
2.6 angle modulation
2.7 frequency modulation
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2.7 frequency modulation
2.8 Nonlinear effects in FM systems
2.9 Superheterodyne Receiver
2.10 Noise in CW Modulation Systems
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2.10 Noise in CW Modulation Systems
2.11 Noise in Linear Receivers Using Coherent Detection
2.12 Noise in AM Receivers Using Envelope Detection
A4 Confluent Hypergeometric Functions
2.13 Noise in FM Receivers
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2.13 Noise in FM ReceiversWatch OnlineMP4 Download
2.14 Computer Experiments: Phase-Locked Loop
2.15 Summary and Discussion
Ch.3 Pulse Modulation
3.1 Introduction
3.2 sampling process
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3.2 sampling process
3.3 Pulse-Amplitude Modulation
3.4 Other Forms of Pulse Modulation
3.5 Bandwidth-Noise Trade-Off
3.6 Quantization Process
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3.6 Quantization Process
3.7 Pulse-Code Modulation
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3.7 Pulse-Code Modulation
3.8 Noise Consideration in PCM Systems
3.9 Time-Division Multiplexing
3.10 Digital Multiplexers
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3.10 Digital Multiplexers
3.11 Virtues, Limitations, and Modifications of PCM
3.12 Delta Modulation
3.13 Linear Prediction
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3.13 Linear Prediction
3.14 Differential Pulse-Code Modulation
3.15 Adaptive Differential Pulse-Code Modulation
3.16 Computer Experiment: Adaptive Delta Modulation
3.17 MPEG Audio Coding Standard
3.18 Summary and Discussion
Ch4 Baseband Pulse Transmission
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4.3 Error Rate due to Noise
4.4 Inter symbol Interference
4.5 Nyquist’s Criterion for Distortionless Baseband Binary Transmission
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4.4 Inter symbol Interference
4.5 Nyquist’s Criterion for Distortionless Baseband Binary Transmission
4.6 Correlative-Level Coding
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4.6 Correlative-Level Coding
4.7 baseband M-ary PAM Transmission
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4.7 baseband M-ary PAM Transmission
4.8 Digital Subscriber Lines
4.9 optimum linear receiver
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4.9 optimum linear receiver
4.10 Adaptive Equalization
4.11 Computer Experiments: Eye Patterns
4.12 Summary and Discussion
Ch.5 Signal space Analysis
5.1 Introduction
5.2 Geometric Representation of Signals
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5.2 Geometric Representation of Signals
5.3 Conversion of the Continuous AWGN Channel to a Vector Channel
5.4 Likelihood Functions
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5.4 Likelihood Functions
5.5 Coherent Detection of Signals in Noise: Maximum Likelihood Decoding
5.6 Correlation Receiver
5.7 Probability of Error
5.8 Summary and Discussion
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課程目標

To give students a basic understanding of communications.

 

課程章節

章節 章節內容
BackgroundBackground
Chapter 1Random Processes
Chapter 2 Continuous-wave Modulations
Chapter 3Pulse Modulation
Chapter 4Baseband Pulse Transmission
Chapter 5 Signal-Space Analysis

 

課程書目

Simon Haykin, Communication Systems, 4rd edition, John Wiley & Sons, 2001.

 

評分標準

項目百分比
期中考暨期末考80%
隨堂考平均20%

本課程行事曆提供課程進度與考試資訊參考。

學期週次
參考課程進度

第一週

  • Background and Preview
第二週
  • Chapter 1 Random Processes: Section 1.1~1.5
第三週
  • Chapter 1 Random Processes: Section 1.6~1.10
第四週
  • Chapter 1 Random Processes: Section 1.11~1.15
    Chapter 2 Continuous-Wave Modulation: Section 2.1~2.3
第五週
  • Chapter 2 Continuous-Wave: Section 2.4~2.7
第六週
  • Chapter 2 Continuous-Wave: Section 2.8
第七週
  • Chapter 2 Continuous-Wave: Section 2.9~2.13
第八週
  • Chapter 2 Continuous-Wave: Section 2.14~2.15
第九週
  • Chapter 3 Pulse Modulation: Section 3.1~3.6
第十週
  • Chapter 3 Pulse Modulation: Section 3.7~3.12
第十一週
  • Chapter 3 Pulse Modulation: Section 3.13~3.18
第十二週
  • Chapter 4 Baseband Pulse Transmission: Section 4.1~4.3
第十三週
  • Chapter 4 Baseband Pulse Transmission: Section 4.4~4.8
第十四週
  • Chapter 4 Baseband Pulse Transmission: Section 4.9~4.12
第十五週
  • Chapter 5 Signal-Space Analysis: Section 5.1~5.5
第十六週
  • Chapter 5 Signal-Space Analysis: Section 5.6~5.8

課程講義 Course Slides

章節
下載連接
教學大綱 SyllabusPDF
Part 1: Random Processes for CommunicationsPDF
Part 2: Fourier Analysis and Power Spectrum DensityPDF
Part 3: Hilbert Transform and Canonical Representation of SignalsPDF
Part 4: Noisefree Analog Modulation and DemodulationPDF
Part 5: Analog Demodulation with NoisePDF
Part 6: Pulse Modulation, Quantization and Line CodingPDF
Part 7: Time-Division Multiplexing and Delta-Sigma ModulationPDF
Part 8: Techniques to Compensate for Intersymbol Interference and AWGNPDF
Part 9: Signal-Space AnalysisPDF
Supplement 1: Hilbert TransformPDF
Supplement 2: Instantaneous frequencyPDF


Sample Problems for Quizzes

Exam/Quiz Date
Sample Problems/Exam Notes
Exam/Quiz Problems & Solutions
2021/3/8PDFPDF
2021/3/15PDFPDF
2021/3/22PDFPDF
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2021/5/3PDFPDF
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2021/6/3PDFPDF
2021/6/17PDFPDF


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