Chapter 4. Optimum Receivers for AWGN Channels, 4.1 Waveform and vector channel models(2/2)

WeekCourse ContentCourse Video
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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