Channel Coding Analysis for High-Speed Telecommunication System

Channel Coding Analysis for High-Speed Telecommunication System

Authors

  • Khin Saw Yangon Technological University
  • Lei Lei Yin Win Yangon Technological University
  • Hla Myo Tun Yangon Technological University
  • Thanda Win Yangon Technological University
  • Mya Mya Aye Yangon Technological University
  • Khin Kyu Kyu Win Yangon Technological University
  • Devasis Pradhan Acharya Institute of Technology

DOI:

https://doi.org/10.56741/jnest.v4i03.820

Keywords:

Channel Coding, High-Speed Telecommunication System, Efficient Coding Techniques, Numerical Analysis, Wireless Communication Channel

Abstract

The paper mainly focuses on the channel coding design for high-speed telecommunication systems. The challenging issues in this study are based on (1) the growing demand for high data speed and an increase in subscribers, and (2) high-speed telecommunication networks allow users to avoid them due to better speed and more bandwidth. The objectives of this study are (1) to obtain a higher data rate, higher spectral efficiency, higher throughput, higher bandwidth, and higher energy efficiency at lower latency and (2) to detect/correct errors caused when information is transmitted through noisy channels. Therefore, high-speed telecommunication channel coding techniques will play a major role in achieving fast communication with minimum errors. The linear block and turbo codes are fundamental to analyzing the channel coding scheme for specific purposes. Theoretical concepts with numerical simulation are used to conduct the analyses. The simulation results on BER analyses confirm that the performance criteria could be met with real-world applications.

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Author Biographies

Khin Saw, Yangon Technological University

Khin Saw received her B.E. (Electronics) Degree from Technological University (Sittwe) in 2006, and M.E. (Electronics) Degree from West Yangon Technological University in 2010, respectively. She is now a PhD candidate at the Department of Electronic Engineering of Yangon Technological University. (email: ecdepartment.ytu@gmail.com).

Lei Lei Yin Win, Yangon Technological University

Dr. Lei Lei Yin Win is a Professor of the Department of Electronic Engineering Yangon Technological University. (email: maleileiyinwin.ytu@gmail.com).

Hla Myo Tun, Yangon Technological University

Dr. Hla Myo Tun is a Leading Pro-Rector for Research and Engineering Higher Education of Yangon Technological University (YTU).

Thanda Win, Yangon Technological University

Dr. Thanda Win is a Professor of the Department of Electronic Engineering of Yangon Technological University. (email: mathandawin.ytu@gmail.com).

Mya Mya Aye, Yangon Technological University

Dr. Mya Mya Aye is an Associate Professor of the Department of Electronic Engineering of Yangon Technological University. (email: mamyamyaaye.ytu@gmail.com).

Khin Kyu Kyu Win, Yangon Technological University

Dr. Khin Kyu Kyu Win is a Professor of the Department of Electronic Engineering of Yangon Technological University. (email: makhinkyukyuwin.ytu@gmail.com).

Devasis Pradhan, Acharya Institute of Technology

Devasis Pradhan is working as an Assistant Professor in Grade 1 and Dean of Research and Development at Acharya Institute of Technology, Bengaluru, Karnataka, from 2017 onwards. His current research includes the effectiveness of 5G Green Communications, mmWave antenna design, UWB antennas, and its implementation. With 16+ years of experience in the Academic and Research field, he has published 76 research papers and eight papers submitted to IEEE Access and Reputed Book and 4 Authored Books and 3 Edited Books (CRC, ISTE, Bentham Science) with a reputed publishing house. (email: devasispradhan@acharya.ac.in)

References

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Pradhan, D., Sahu, P. K., & Tun, H. 5G-Enabled Edge Computing for Smart Cities. 5G Green Communication Networks for Smart Cities, 245, 2025. DOI: https://doi.org/10.1201/9781003560357-14

Tun, H., Pradhan, D., Naing, Z., Oo, T., & Wah, N. 5G-Enabed Smart Healthcare System with the Integration of Blockchain Technology. 5G Green Communication Networks for Smart Cities, 187, 2025. DOI: https://doi.org/10.1201/9781003560357-10

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PRADHAN, D., TUN, H., NAING, Z., OO, T., & WAH, N. Secure M2M Communication for 5G-enabled Cities with Its Challenges. 5G Green Communication Networks for Smart Cities, 261, 2025 DOI: https://doi.org/10.1201/9781003560357-15

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Published

2025-11-03

How to Cite

Saw, K., Yin Win, L. L., Myo Tun, H., Win, T., Aye, M. M., Kyu Kyu Win, K., & Pradhan, D. (2025). Channel Coding Analysis for High-Speed Telecommunication System. Journal of Novel Engineering Science and Technology, 4(03), 99–105. https://doi.org/10.56741/jnest.v4i03.820

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