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DEGREE REGULATIONS & PROGRAMMES OF STUDY 2010/2011
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DRPS : Course Catalogue : School of Engineering : Postgrad (School of Engineering)

Postgraduate Course: Advanced Digital Communications (PGEE11028)

Course Outline
School School of Engineering College College of Science and Engineering
Course type Standard Availability Available to all students
Credit level (Normal year taken) SCQF Level 11 (Postgraduate) Credits 20
Home subject area Postgrad (School of Engineering) Other subject area None
Course website None Taught in Gaelic? No
Course description This module will cover the current topics of interest in Advanced Digital Communications. In particular information theory fundamentals related to source and channel coding, modulation of signals and channel capacity are studied. Rate-distortion theory and quantisation for uncorrelated and correlated signals are of particular interest.
Syllabus:
Scalar quantisation, asymptotic quantisation theory, vector quantisation, rate-distortion theory, linear prediction and model-based source coding, multimedia source codecs (overview); the separation principle of information theory, digital modulation, channel coding, convolutional codes, Viterbi and soft-in/soft-out decoding, Turbo codes, codes for error detection.

Entry Requirements
Pre-requisites It is RECOMMENDED that students have passed Discrete-Time Signal Analysis (PGEE11026) AND Statistical Signal Processing (PGEE11027) AND Digital Communication Fundamentals (PGEE11025)
Co-requisites
Prohibited Combinations Other requirements None
Additional Costs None
Information for Visiting Students
Pre-requisites None
Displayed in Visiting Students Prospectus? Yes
Course Delivery Information
Delivery period: 2010/11 Semester 2, Available to all students (SV1) WebCT enabled:  Yes Quota:  None
Location Activity Description Weeks Monday Tuesday Wednesday Thursday Friday
King's BuildingsTutorial1-11 12:10 - 13:00
King's BuildingsLecture1-11 10:00 - 12:00
King's BuildingsLecture1-11 11:10 - 13:00
First Class Week 1, Monday, 10:00 - 12:00, Zone: King's Buildings. JCMB 5327
Exam Information
Exam Diet Paper Name Hours:Minutes Stationery Requirements Comments
Main Exam Diet S2 (April/May)2:0016 sides / Open BookOpen Book
Summary of Intended Learning Outcomes
The students will understand fundamentals as well as advanced concepts in digital communications. They will be able to quantify the bit rate that is theoretically needed to perform source coding of continuous-valued signals with some given maximum distortion. They will be able to explain the complexity-quality tradeoffs in practical systems and they will be able to quantify how close practical quantisation and channel-coding algorithms can get to the theoretical limits given by information theory. They will be able to design scalar and vector quantisers and linear predictive coding schemes for practical signals and they will be able to understand and apply modern channel coding concepts and digital modulation schemes in a given practical problem setting.
Assessment Information
100% open-book formal written examination
Special Arrangements
None
Additional Information
Academic description Not entered
Syllabus Not entered
Transferable skills Not entered
Reading list Not entered
Study Abroad Not entered
Study Pattern Not entered
Keywords source coding, quantisation, rate-distortion theory, channel coding, channel capacity, turbo codes,
Contacts
Course organiser Dr Harald Haas
Tel: (0131 6)50 5591
Email: H.Haas@ed.ac.uk
Course secretary Mrs Kim Orsi
Tel: (0131 6)50 5687
Email: Kim.Orsi@ed.ac.uk
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copyright 2011 The University of Edinburgh - 31 January 2011 8:05 am