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Rashtrasant Tukadoji Maharaj Nagpur University, Maharashtra
Electronics and Communication engineering
Digital Communication
Rashtrasant Tukadoji Maharaj Nagpur University, Maharashtra, Electronics and Communication engineering Semester 6, Digital Communication Syllabus
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Unit - 1 Digital Communication Concept
Unit 1
Digital Communication Concept
1.1 Review of Random variables
1.2 PDFs CDFs
1.3 Central limit Theorem
1.4 Model of digital communication system
1.5 Gram Schmitt Orthogonalization procedure
1.6 Signal space concept
1.7 Geometric interpretation of signals
1.8 Probability of error
1.9 Correlation receiver
1.10 Matched filter receiver
Digital Communication Concept
Unit 1
Digital Communication Concept
Digital Communication Concept
Unit 1
Digital Communication Concept
Unit 1
Digital Communication Concept
1.1 Review of Random variables
1.2 PDFs CDFs
1.3 Central limit Theorem
1.4 Model of digital communication system
1.5 Gram Schmitt Orthogonalization procedure
1.6 Signal space concept
1.7 Geometric interpretation of signals
1.8 Probability of error
1.9 Correlation receiver
1.10 Matched filter receiver
Unit - 2 Source & Waveform Coding Methods
Unit 2
Source Waveform Coding Methods
2.1 Source coding Theorem
2.2 Huffman codingZ encoding algorithm
2.3 Rate distortion theory for optimum quantization
2.4 Scalar vector quantization
2.5 Waveform coding methods ADPCM
2.6 Adaptive SubBand Transform coding
2.7 LP CELP coding
Source Waveform Coding Methods
Unit 2
Source Waveform Coding Methods
2.1 Source coding Theorem
2.2 Huffman codingZ encoding algorithm
Source Waveform Coding Methods
Unit 2
Source Waveform Coding Methods
2.1 Source coding Theorem
2.2 Huffman codingZ encoding algorithm
Unit 2
Source Waveform Coding Methods
2.1 Source coding Theorem
2.2 Huffman codingZ encoding algorithm
2.3 Rate distortion theory for optimum quantization
2.4 Scalar vector quantization
2.5 Waveform coding methods ADPCM
2.6 Adaptive SubBand Transform coding
2.7 LP CELP coding
Unit - 3 Digital Modulation Techniques
Unit 3
Digital Modulation Techniques
3.1 Coherent Binary QPSK
3.2 MSK
3.3 DPSK
3.4 Memory less modulation methods
3.5 Linear modulation with memory
3.6 Nonlinear modulation methods with memory CPFSK CPM
Digital Modulation Techniques
Unit 3
Digital Modulation Techniques
3.1 Coherent Binary QPSK
3.2 MSK
3.3 DPSK
3.4 Memory less modulation methods
Unit 3
Digital Modulation Techniques
Unit 3
Digital Modulation Techniques
3.1 Coherent Binary QPSK
3.2 MSK
3.3 DPSK
3.4 Memory less modulation methods
3.5 Linear modulation with memory
3.6 Nonlinear modulation methods with memory CPFSK CPM
Unit - 4 Channel Coding (PART-1)
Unit 4
Channel Coding PART1
4.1 Introduction to Galois field
4.2 Construction of Galois field GF 2m its basic properties.
4.3 Types of error control Forward error correction FEC
4.4 Automatic repeat request system ARQ
4.5 Convolution encoding and decoding distance properties
4.6 Viterbi algorithm and Fano algorithm
Channel Coding PART1
Unit 4
Channel Coding PART1
4.1 Introduction to Galois field
4.2 Construction of Galois field GF 2m its basic properties.
4.3 Types of error control Forward error correction FEC
4.4 Automatic repeat request system ARQ
Channel Coding PART1
Unit 4
Channel Coding PART1
4.1 Introduction to Galois field
Unit 4
Channel Coding PART1
4.1 Introduction to Galois field
4.2 Construction of Galois field GF 2m its basic properties.
4.3 Types of error control Forward error correction FEC
4.4 Automatic repeat request system ARQ
4.5 Convolution encoding and decoding distance properties
4.6 Viterbi algorithm and Fano algorithm
Unit - 5 Channel Coding (PART-II)
Unit 5
Channel Coding PARTII
5.1 Trellis coded modulation
5.2 Introduction to Turbo coding
5.3 Reed Solomon Codes encoding decoding
5.4 Low density parity check coding LDPC
1.9 Lever rule for phase mixtures and their application in system
Unit 5
Channel Coding PARTII
5.1 Trellis coded modulation
Unit 5
Channel Coding PARTII
5.1 Trellis coded modulation
5.2 Introduction to Turbo coding
5.3 Reed Solomon Codes encoding decoding
5.4 Low density parity check coding LDPC
Unit 5
Channel Coding PARTII
5.1 Trellis coded modulation
5.2 Introduction to Turbo coding
5.3 Reed Solomon Codes encoding decoding
5.4 Low density parity check coding LDPC
Unit - 6 Spread - Spectrum methods
Unit 6
Spread Spectrum methods
6.1 Study of PN sequences
6.2 Direct sequence methods
6.3 Frequency hop methods Slow and fast frequency hop performance analysis
6.4 Synchronization methods for spread spectrum
6.5 Application of spread spectrum
6.6 CDMA
6.7 Introduction to OFDM
Spread Spectrum methods
Unit 6
Spread Spectrum methods
Spread Spectrum methods
Unit 6
Spread Spectrum methods
6.1 Study of PN sequences
6.2 Direct sequence methods
6.3 Frequency hop methods Slow and fast frequency hop performance analysis
6.4 Synchronization methods for spread spectrum
6.5 Application of spread spectrum
6.6 CDMA
6.7 Introduction to OFDM
Unit 6
Spread Spectrum methods
6.1 Study of PN sequences
6.2 Direct sequence methods
6.3 Frequency hop methods Slow and fast frequency hop performance analysis
6.4 Synchronization methods for spread spectrum
6.5 Application of spread spectrum
6.6 CDMA
6.7 Introduction to OFDM
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Other Subjects of Semester-2
Control system engg.
Digital signal processing
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