Analysis on Wideband Channel Model for High Speed Wireless Communication Systems

Analysis on Wideband Channel Model for High Speed Wireless Communication Systems

Authors

  • Myint Myint Mon West Yangon Technological University
  • Hla Myo Tun Yangon Technological University
  • Lei Lei Yin Win Yangon Technological University
  • Thanda Win Yangon Technological University
  • Mya Mya Aye Yangon Technological University
  • Khaing Thandar Soe Yangon Technological University
  • Devasis Pradhan Acharya Institute of Technology

DOI:

https://doi.org/10.56741/jnest.v4i01.803

Keywords:

Channel Modelling, High Speed Wireless Communication Systems, Numerical Analysis, Performance Accuracy, Tapped Delay-Line Model, Wide Band Channel

Abstract

The paper emphasizes on the analysis on wideband channel model for high speed wireless communication systems. The research problem in this study are based on the following concepts such as (i) Firstly, it is necessary to change to the appropriate physical devices that can support 5G system, (ii) It is required to design a channel that will adapt to the medium that will be convenient for the changed physical devices, and (iii) Mobile terminals that currently use 4G cannot be used in 5G system. The objectives in this study are - to analyze the existing channel model for mobile communication, to analyze the mathematical and dynamical model for wireless propagation channel, to implement the wireless propagation channel with specific purposes, to implement the optimized channel model performance, and to evaluate the performance of the developed channel design. The numerical analyses in this study are conducted by using MATLAB language. The research direction in this study are based on the channel system functions, and tapped delay-line models. The simulation results are confirmed that the 12 taps in this study for the high speed wireless communication system design.

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Author Biographies

Myint Myint Mon, West Yangon Technological University

received her B.E. (Electronics) from Technological University (Maubin) in 2005, M.E. (Electronics) Dergee from West Yangon Technological University (WYTU) in 2010, respectively. She is now a PhD candidate of the Department of Electronic Engineering of Yangon Technological University. email: ecdepartment.ytu@gmail.com).

Hla Myo Tun, Yangon Technological University

is a Leading Pro-Rector for Research and Engineering Higher Education of Yangon Technological University (YTU). He specializes in professional training for Engineering Higher Education leaders, heads of departments and faculty members. He also directs Research and Development programmes and workshops and works as a certified Quality Assurance Evaluator of the Myanmar Engineering Council (MEngC) since 2019. (email: hmt.ytu@gmail.com).

Lei Lei Yin Win, Yangon Technological University

is a Professor of the Department of Electronic Engineering, Yangon Technological University, Myanmar. (email: maleileiyinwin.ytu@gmail.com).

Thanda Win, Yangon Technological University

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

Mya Mya Aye, Yangon Technological University

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

Khaing Thandar Soe, Yangon Technological University

is an Assistant Lecturer of the Department of Electronic Engineering, Yangon Technological University, Myanmar. (email: makhaingthandarsoe.ytu@gmail.com).

Devasis Pradhan, Acharya Institute of Technology

has worked 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

J.D. Parsons. Mobile Radio Propagation Channel, second edition, John Wiley & Sons, Ltd, Chichester, UK, 2000. DOI: https://doi.org/10.1002/0470841524

Digital land mobile radio communications. Cost 207. Final Report. 1989. Commission of European Communities, Brussels.

D. Pradhan, P. K. Sahu, A. Dash and H. M. Tun, "Sustainability of 5G Green Network toward D2D Communication with RF- Energy Techniques," 2021 International Conference on Intelligent Technologies (CONIT), Hubli, India, 2021, pp. 1-10, doi: 10.1109/CONIT51480.2021.9498298. DOI: https://doi.org/10.1109/CONIT51480.2021.9498298

H. M. Tun, Z. T. Thu Lin, D. Pradhan and P. K. Sahu, "Slotted Design of Rectangular Single / Dual Feed Planar Microstrip Patch Antenna for SISO and MIMO System," 2021 International Conference on Electrical, Computer and Energy Technologies (ICECET), Cape Town, South Africa, 2021, pp. 1-6, doi: 10.1109/ICECET52533.2021.9698738. DOI: https://doi.org/10.1109/ICECET52533.2021.9698738

Tun, H. M. (2021). Radio Network Planning and Optimization for 5G Telecommunication System Based on Physical Constraints. Journal of Computer Science Research, 3(1), 1–15. https://doi.org/10.30564/jcsr.v3i1.2701 DOI: https://doi.org/10.30564/jcsr.v3i1.2701

Phyo, A. T., & Tun, H. M. (2010). Integrated WiFi/WiMAX Heterogeneous Wireless Network with Minimum Cost Flow Robust Optimization Uncertain Demand Problem. Bahria University Journal of Information & Communication Technologies (BUJICT), 3(1).

Tun, F. A., Phyo, S. B., & Naing, T. C. (2010). Equal Power Distribution and Dynamic Subcarrier Assignment in OFDM Using Minimum Channel Gain Flow with Robust Optimization Uncertain Demand. arXiv preprint arXiv:1002.4045.

TUN, H., PRADHAN, D., NAING, Z., OO, T., & WAH, N. (2025). 5G-Enabed Smart Healthcare System with the Integration of Blockchain Technology. 5G Green Communication Networks for Smart Cities, 187. DOI: https://doi.org/10.1201/9781003560357-10

VERMA¹, S. C., TUN, H., & AKHTAR, T. (2025). Bigdata Analytics for Supply Chain Management Toward 5G Green Cities. 5G Green Communication Networks for Smart Cities, 229. DOI: https://doi.org/10.1201/9781003560357-13

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

PRADHAN, D., SAHU, P. K., & TUN, H. (2025). 5G-Enabled Edge Computing for Smart Cities. 5G Green Communication Networks for Smart Cities, 245. DOI: https://doi.org/10.1201/9781003560357-14

Tun, H. M., Kyu Win, K. K., Naing, Z. M., Pradhan, D., & Sahu, P. K. (2021). Measurement Analysis of Specific Absorption Rate in Human Body Exposed to a Base Station Antenna by Using Finite Difference Time Domain Techniques. Semiconductor Science and Information Devices, 3(2), 17–26. https://doi.org/10.30564/ssid.v3i2.3861 DOI: https://doi.org/10.30564/ssid.v3i2.3861

Pradhan, D., Tun, H. M., Wah, N. K. S., Oo, T., Priyanka, K. C., & Dash, A. (2022, July). Efficient Usage of Energy in 5G toward Sustainable Development inclined to Industry 4.0 Connectivity. In 2022 IEEE Region 10 Symposium (TENSYMP) (pp. 1-6). IEEE. DOI: https://doi.org/10.1109/TENSYMP54529.2022.9864351

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Published

2025-03-09

How to Cite

Mon, M. M., Tun, H. M., Win, L. L. Y., Win, T., Aye, M. M., Soe, K. T., & Pradhan, D. (2025). Analysis on Wideband Channel Model for High Speed Wireless Communication Systems. Journal of Novel Engineering Science and Technology, 4(01), 33–38. https://doi.org/10.56741/jnest.v4i01.803

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