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Lecture
Convolutional Codes: Decoding and Performance Analysis
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Related lectures (31)
Convolutional Codes: Mapping Symbols and Paths
Covers Convolutional Codes, focusing on mapping symbols and paths.
Convolutional Codes: Basics and Applications
Explores the basics and applications of convolutional codes in communication systems.
Convolutional Codes: Encoding and Decoding
Explains the encoding and decoding process of convolutional codes using constellation prints.
Convolutional Codes: Decoding and Eye Diagrams
Covers the decoding process of convolutional codes and the analysis of eye diagrams.
Convolutional Coder Introduction
Covers the introduction of Convolutional Coder, explaining its structure and operation.
Designing Convolutional Codes
Covers the art of designing convolutional codes to improve communication rate.
Convolutional Codes: Analysis and Applications
Delves into the analysis and applications of convolutional codes, highlighting the significance of correct implementation for optimal results.
Error Correction Codes: Hamming Code
Explores the Hamming Code for error correction, emphasizing its ability to correct single-bit errors.
Binary Coding: Channel Decoding
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Covers source coding, cryptography, and channel coding in communication systems, exploring entropy, codes, error channels, and future related courses.
Error Correction Codes: Theory and Applications
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Error Correction Codes: Decoding and Communication
Explores error correction codes, decoding algorithms, and their role in communication systems.
Coding Theorem: Proof and Properties
Covers the proof and properties of the coding theorem, focusing on maximizing the properties of lx and the achievable rate.
Linear Codes: Systematic vs Non-Systematic
Explores the creation of systematic linear codes and the transformation of non-systematic codes, showcasing their equivalence and importance in simplifying encoding and decoding processes.
Lecture: Shannon
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Minimum Distance Decoding
Explains Minimum Distance (MD) decoding on erasure channels with illustrative examples.
Linear Block Codes: Basics
Covers the basics of linear block codes and systematic codes over a field F.
Compression: Kraft Inequality
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