Digital Communications - 107 Academic Year

數位通訊 - 107學年度

本課程是由 國立陽明交通大學電機工程學系 提供。

Theories of information transmission in digital form from one or more sources to one or more destinations.

課程用書:
John G. Proakis and Masoud Salehi, Digital Communications, 5th ed., McGraw-Hill International Editions, 2008.

為求學習成效完美,請購買課本!

授課教師 電機工程學系 陳伯寧老師
課程學分 3學分
授課年度 107學年度
授課對象 大學生、研究生
預備知識 無
課程提供 課程影音   課程綱要   課程行事曆   課程講義 

週次課程內容課程影音課程下載
Chapter 2: Deterministic and Random Signal Analysis
2.1 Bandpass and lowpass signal representation(1/2)
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Chapter 2: Deterministic and Random Signal Analysis
2.1 Bandpass and lowpass signal representation(2/2)
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Chapter 2: Deterministic and Random Signal Analysis
2.7.1 Random processes
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Chapter 2: Deterministic and Random Signal Analysis
2.9 Bandpass and lowpass random processes
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Chapter 2: Deterministic and Random Signal Analysis
2.8 Series expansion of random processes
2.9 Bandpass and lowpass random processes (revisited)
2.2 Signal space representation(1/2)
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Chapter 2: Deterministic and Random Signal Analysis
2.2 Signal space representation(2/2)
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Chapter 3: Digital Modulation Schemes
3.1 Representation of digitally modulated signals
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Chapter 3: Digital Modulation Schemes
3.2 Memoryless modulation methods(1/2)
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Chapter 3: Digital Modulation Schemes
3.2 Memoryless modulation methods(2/2)
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Chapter 3: Digital Modulation Schemes
3.3 Signaling schemes with memory(1/2)
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Chapter 3: Digital Modulation Schemes
3.3 Signaling schemes with memory(2/2)
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Chapter 3: Digital Modulation Schemes
3.4 Power spectrum of digital modulated signals
2.7.2 Cyclostationary processes
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Chapter 3: Digital Modulation Schemes
3.4-1 Power spectral density of a digitally modulated signal with memory
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Chapter 4. Optimum Receivers for AWGN Channels
4.1 Waveform and vector channel models(1/2)
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Chapter 4. Optimum Receivers for AWGN Channels
4.1 Waveform and vector channel models(2/2)
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Chapter 4. Optimum Receivers for AWGN Channels
4.2-1 Optimal detection for the vector AWGN channel
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Chapter 4. Optimum Receivers for AWGN Channels
4.2-2 Implementation of optimal receiver for AWGN channels
4.2-3 A union bound on the probability of error of maximum likelihood detection
Lower bound on Pe
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Chapter 4. Optimum Receivers for AWGN Channels
4.3 Optimal detection and error
probability for bandlimited signaling
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Chapter 4. Optimum Receivers for AWGN Channels
4.4 Optimal detection and error probability for power limited signaling(1/2)
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Chapter 4. Optimum Receivers for AWGN Channels
4.4 Optimal detection and error probability for power limited signaling(2/2)
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Chapter 4. Optimum Receivers for AWGN Channels
4.6 Comparison of digital signaling methods
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Chapter 4. Optimum Receivers for AWGN Channels
4.5 Optimal noncoherent detection
4.5-1 Noncoherent detection of carrier modulated signals
4.5-2 Optimal noncoherent detection of FSK modulated signals
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Chapter 4. Optimum Receivers for AWGN Channels
4.5-3 Error probability of orthogonal signaling with noncoherent detection
4.5-5 Differential PSK
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Chapter 4. Optimum Receivers for AWGN Channels
4.8-1 Maximum likelihood sequence detector
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Chapter 13 Fading Channels I: Characterization and Signaling
13.1 Characterization of fading
multipath channels
13.1-1 Channel correlation functions and power spectra(1/2)
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Chapter 13 Fading Channels I: Characterization and Signaling
13.1-1 Channel correlation functions and power spectra(2/2)
13.1-2 Statistical models for fading channels
13.2 The effect of signal characteristics on the choice of a channel model
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Chapter 13 Fading Channels I: Characterization and Signaling
13.3 Frequency-nonslective, slowly fading channel
13.4 Diversity techniques for fading multipath channels
13.4-1 Binary signals
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Chapter 13 Fading Channels I: Characterization and Signaling
13.4-2 Multiphase signals
13.4-3 M-ary orthogonal signals
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Chapter 13 Fading Channels I: Characterization and Signaling
13.5 Digital signaling over a frequency-selective, slowly fading channel
13.5.1 A tapped-delay-line channel model
13.5-2 The RAKE demodulator
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Chapter 12 Spread Spectrum Signals for Digital Communicaitons
12.1 Model of spread spectrum digital communications system
12.2 Direct sequence spread spectrum signals(1/3)
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Chapter 12 Spread Spectrum Signals for Digital Communicaitons
12.2 Direct sequence spread spectrum signals(2/3)
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Chapter 12 Spread Spectrum Signals for Digital Communicaitons
12.2 Direct sequence spread spectrum signals(3/3)
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Chapter 12 Spread Spectrum Signals for Digital Communicaitons
12.2-2 Some applications of DS spread spectrum signals
12.2-3 Effect of pulsed interference on DS spread spectrum systems
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Chapter 12 Spread Spectrum Signals for Digital Communicaitons
12.2-5 Generation of PN sequences
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Chapter 9 Digital Communications Through Band-Limited Channels
9.2 Signal design for band-limited channels
9.2-1 Design of band-limited signals for no intersymbol interference -The Nyquist criterion Digital
9.2-2 Design of band-limited signals with contro
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Chapter 9 Digital Communications Through Band-Limited Channels
9.2-3 Data detection for controlled ISI
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Chapter 11 Multichannel and Multicarrier Systems
11.2 Multicarrier communications
11.2-3 Orthogonal frequency division multiplexing (OFDM)
11.2-4 Modulation and demodulation in an OFDM system
11.2-5 An FFT algorithm implementation of an OFDM system
11.2-6
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Chapter 11 Multichannel and Multicarrier Systems
11.2-5 An FFT algorithm implementation of an OFDM system
11.2-6 Spectral characteristics of multicarrier signals
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Chapter 11 Multichannel and Multicarrier Systems
Transmission of multicarrier signal
Receiver for multicarrier signal
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Chapter 5 Carrier and Symbol Synchronization
5.1 Signal parameters estimation
5.2 Carrier phase estimation
5.2-1 ML carrier phase estimation
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Chapter 5 Carrier and Symbol Synchronization
5.2-2 The phase-locked loops
5.2-3 Effect of additive noise on the phase estimate
5.2-4 Decision directed loops
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Chapter 5 Carrier and Symbol Synchronization
5.2-5 Non-decision-directed loops
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Chapter 5 Carrier and Symbol Synchronization
5.3 Symbol timing estimation
5.4 Joint estimation of carrier phase and symbol timing
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課程目標

Theories of information transmission in digital form from one or more sources to one or more destinations.

 

課程章節

章節 章節內容
單元一Introduction
單元二Deterministic and Random Signal Analysis
單元三 Digital Modulation Schemes
單元四Optimum Receivers for AWGN Channels
單元Signal-Space Analysis
單元九 Communications Through Band-Limited Channels
單元十一Multichannel and Multicarrier Systems
單元十二Spread Spectrum Signals for Digital Communicaitons
單元十三Fading Channels I: Characterization and Signaling

 

課程書目

John G. Proakis and Masoud Salehi, Digital Communications, 5th ed., McGraw-Hill International Editions, 2008.

 

評分標準

項目百分比
第一次期中考30%
第二次期中考30%
期末考40%

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

  • Chapter 1: Introduction
    1.1: Elements of a Digital Communication System
    1.2: Communication Channels and Their Characteristics
    1.3: Mathematical Models for Communications
第二週
  • 1.4: A historical perspective in the development of digital communications
    1.5: Overview of the Book
第三週
  • Chapter 2 Deterministic and Random Signal Analysis
    2.1: Bandpass and Lowpass Signal Representations
    2.2: Signal Space Representations of Waveforms
    2.7: Random Processes
第四週
  • 2.8: Series Expansion of Random Processes
    2.9: Bandpass and Lowpass Random Processes
第五週
  • Chapter 3 Digital Modulation Schemes
    3.1: Representation of Digitally Modulated Signals
    3.2: Memoryless Modulation Methods
第六週
  • 3.3: Signaling Schemes with Memory
    3.4: Power Spectrum of Digitally Modulated Signals
第七週
  • Chapter 4 Optimum Receivers for AWGN Channels
    4.1: Waveform and Vector Channel Models
    4.2: Waveform and Vector AWGN Channels
    4.3: Optimal Detection and Error Probability for Band-Limited Signaling
第八週
  • 4.4: Optimal Detection and Error Probability for Power-Limited Signaling
    4.5: Optimal Detection in Presence of Uncertainty
第九週
  • 4.6: A Comparison of Digital Signaling Methods
    4.8: Detection of Signaling Schemes with Memory: Maximum Likelihood Sequence Detector (Viterbi Detector)
第十週
  • Chapter 5 Signal-Space Analysis
    5.1: Signal Parameter Estimation
    5.2: Carrier Phase Estimation
第十一週
  • 5.3: Symbol Timing Estimation
    5.4: Joint Estimation of Carrier Phase and Symbol Timing
第十二週
  • Chapter 11 Multichannel and Multicarrier Systems
    11.1: Multichannel Digital Communications in AWGN Channels
    11.2: Multicarrier Communications
第十三週
  • Chapter 11 Multichannel and Multicarrier Systems
第十四週
  • Chapter 12 Spread Spectrum Signals for Digital Communicaitons
第十五週
  • Chapter 12 Spread Spectrum Signals for Digital Communicaitons
第十六週
  • Chapter 13 Fading Channels I: Characterization and Signaling
第十七週
  • Chapter 13 Fading Channels I: Characterization and Signaling

Laboratory Manuals

章節
下載連接
Chapter 00 Course OutlinePDF
Chapter 01 IntroductionPDF
Chapter 02 Deterministic and Random Signal AnalysisPDF
Chapter 03 Digital Modulation SchemesPDF
Chapter 04 Optimum Receivers for AWGN ChannelsPDF
Chapter 05 Carrier and Symbol SynchronizationPDF
Chapter 09 Digital Communications Through Band-Limited ChannelsPDF
Chapter 11 Multichannel and Multicarrier SystemsPDF
Chapter 12 Spread Spectrum Signals for Digital CommunicaitonsPDF
Chapter 13 Fading Channels I: Characterization and SignalingPDF