MIT 6.451 Principles of Digital Communication II - Spring 2005

MIT 6.451 Principles of Digital Communication II - Spring 2005

12 Videos · Feb 3, 2005

About

This course is the second of a two-term sequence with 6.450. The focus is on coding techniques for approaching the Shannon limit of additive white Gaussian noise (AWGN) channels, their performance analysis, and design principles. After a review of 6.450 and the Shannon limit for AWGN channels, the course begins by discussing small signal constellations, performance analysis and coding gain, and hard-decision and soft-decision decoding. It continues with binary linear block codes, Reed-Muller codes, finite fields, Reed-Solomon and BCH codes, binary linear convolutional codes, and the Viterbi algorithm.

More advanced topics include trellis representations of binary linear block codes and trellis-based decoding; codes on graphs; the sum-product and min-sum algorithms; the BCJR algorithm; turbo codes, LDPC codes and RA codes; and performance of LDPC codes with iterative decoding. Finally, the course addresses coding for the bandwidth-limited regime, including lattice codes, trellis-coded modulation, multilevel coding and shaping. If time permits, it covers equalization of linear Gaussian channels.

Course Highlights

This course features extensive video lectures, along with assignments and other materials used by students in the course.

Course Homepage: 6.451 Principles of Digital Communication II Spring 2005

Course features at MIT OpenCourseWare page: *Syllabus *Calendar *Readings *Assignments *Exams *Download Course Materials

Videos

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02:45:10

Lecture 17 and 18: Codes on Graphs

G. David Forney

Dec 4, 2009

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2960 views

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02:27:22

Lecture 20 and 21: Turbo, LDPC, and RA Codes

G. David Forney

Dec 4, 2009

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4652 views

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04:15:55

Lecture 10, 11 and 12: Reed-Solomon Codes

G. David Forney

Dec 4, 2009

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4183 views

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02:42:56

Lecture 15 and 16: Trellis Representations of Binary Linear Block Codes

G. David Forney

Dec 4, 2009

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2543 views

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01:19:18

Lecture 1: Introduction - Sampling Theorem and Orthonormal PAM/QAM - Capacity of...

G. David Forney

Dec 4, 2009

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5442 views

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04:05:00

Lecture 13 and 14: Introduction to Convolutional Codes

G. David Forney

Dec 4, 2009

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3990 views

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04:08:41

Lecture 7, 8 and 9: Introduction to Finite Fields

G. David Forney

Dec 4, 2009

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4371 views

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01:16:05

Lecture 2: Performance of Small Signal Constellations

G. David Forney

Dec 4, 2009

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2778 views

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02:38:03

Lecture 3 and 4: Hard-decision and Soft-decision Decoding

G. David Forney

Dec 4, 2009

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3402 views

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02:45:50

Lecture 22 and 23: Lattice and Trellis Codes

G. David Forney

Dec 4, 2009

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2923 views

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01:18:36

Lecture 19: The Sum-Product Algorithm

G. David Forney

Dec 4, 2009

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3264 views

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02:55:38

Lecture 5 and 6: Introduction to Binary Block Codes

G. David Forney

Dec 4, 2009

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2790 views