Performance Analysis of Turbo Codes Over AWGN Channel

Author:

Abdulhamid Mohanad1,Thairu Mbugua2

Affiliation:

1. AL-Hikma University , Iraq

2. University of Nairobi , Kenya

Abstract

Abstract Turbo coding is a very powerful error correction technique that has made a tremendous impact on channel coding in the past two decades. It outperforms most known coding schemes by achieving near Shannon limit error correction using simple component codes and large interleavers. This paper investigates the turbo coder in detail. It presents a design and a working model of the error correction technique using Simulink, a companion softwareto MATLAB. Finally, graphical and tabular results are presented to show that the designed turbo coder works as expected.

Publisher

Walter de Gruyter GmbH

Reference6 articles.

1. [1] H. Sadjadpour, N. Sloane, M. Salehi, and G. Nebe, “Interleaver design for turbo codes”, IEEE Journal on Selected Area in Communications, Vol.19, No.5, 2001.

2. [2] J. Kaza and C. Chakrabarti, “Design and implementation of low-energy turbo decoders”, IEEE Transactions on Very Large Scale Integration Systems, Vol. 12. No. 9, 2004.

3. [3] K. Sun, D. Yuan, X. Zhou, “Performance analysis of turbo codes with different interleavers and decoding methods”, 2010 IEEE International Conference on Information Theory and Information Security, China, 2010.

4. [4] S. Jasim, and A. Abbas, “ Performance of turbo code with different parameters”, Journal of Babylon University of Engineering Sciences, Vol. 25, No.5, PP.1684-1692, 2017.

5. [5] M. Devi, K. Ramanjaneyulu, and B. Krishna, “Performance analysis of sub-interleaver based turbo codes”, Cluster Computing, Published Online First in March, 2018.

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Serial and parallel turbo code test over AWGN channel with different modulation;3RD INTERNATIONAL SCIENTIFIC CONFERENCE OF ALKAFEEL UNIVERSITY (ISCKU 2021);2022

2. Turbo codes for telemedicine applications;Journal of Physics: Conference Series;2020-12-01

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