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    Performance Evaluation for UAV-Based UL-NOMA with Channel Coding

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    https://www.riss.kr/link?id=A108585312

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Non-orthogonal multiple access is a potential technique to improve the spectral efficiency of beyond-5G systems by superposing multiple signals. For a received signal to be decoded, successive interference cancellation (SIC) process is required to subtract other signals at the receiver side. The channel coding is required to reduce the error probability when mobility is considered in non-orthogonal multiple access (NOMA) and applied after the SIC process. In this paper, we evaluate the performance of the unmanned aerial vehicle-based uplink NOMA with the concatenation of Reed–Solomon and convolutional code. Simulation results show comparisons between different conditions such as perfect and imperfect SIC processes.
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    Non-orthogonal multiple access is a potential technique to improve the spectral efficiency of beyond-5G systems by superposing multiple signals. For a received signal to be decoded, successive interference cancellation (SIC) process is required to sub...

    Non-orthogonal multiple access is a potential technique to improve the spectral efficiency of beyond-5G systems by superposing multiple signals. For a received signal to be decoded, successive interference cancellation (SIC) process is required to subtract other signals at the receiver side. The channel coding is required to reduce the error probability when mobility is considered in non-orthogonal multiple access (NOMA) and applied after the SIC process. In this paper, we evaluate the performance of the unmanned aerial vehicle-based uplink NOMA with the concatenation of Reed–Solomon and convolutional code. Simulation results show comparisons between different conditions such as perfect and imperfect SIC processes.

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    참고문헌 (Reference)

    1 G. Geraci, "What will the future of uav cellular communications be? a flight from 5G to 6G" 24 (24): 1304-1335, 2022

    2 X. Zhu, "Non-orthogonal multiple access based integrated terrestrial-satellite networks" 35 (35): 2253-2267, 2017

    3 무니브 아흐매드 ; 이 뇨만 아프라스 라마트리야나 ; 신수용, "NOMA and OMA Comparison for Multiple Antenna Technologies under high Capacity Constraints for 5G and Beyond" 한국통신학회 45 (45): 2004-2013, 2020

    4 Arsla Khan, "Link and System-Level NOMA Simulator: The Reproducibility of Research" MDPI AG 10 (10): 2388-, 2021

    5 M. -O. Wessman, "Frequency diversity performance of coded multiband-OFDM systems on IEEE UWB channels" 2 : 1197-1201, 2004

    6 M. K. Simon, "Digital communication over fading channels" Wiley 2001

    7 J. G. Proakis, "Digital Communications, vol. 4" McGrawhill 2001

    8 R.D. Cideciyan, "Concatenated Reed-Solomon/convolutional coding for data transmission in CDMA-based cellular systems" Institute of Electrical and Electronics Engineers (IEEE) 45 (45): 1291-1303, 1997

    9 W. Wu, "Coding for Satellite Communication" Institute of Electrical and Electronics Engineers (IEEE) 5 (5): 724-748, 1987

    10 X. Wang, "Closedform BER expressions of QPSK constellation for uplink non-orthogonal multiple access" 21 (21): 2242-2245, 2017

    1 G. Geraci, "What will the future of uav cellular communications be? a flight from 5G to 6G" 24 (24): 1304-1335, 2022

    2 X. Zhu, "Non-orthogonal multiple access based integrated terrestrial-satellite networks" 35 (35): 2253-2267, 2017

    3 무니브 아흐매드 ; 이 뇨만 아프라스 라마트리야나 ; 신수용, "NOMA and OMA Comparison for Multiple Antenna Technologies under high Capacity Constraints for 5G and Beyond" 한국통신학회 45 (45): 2004-2013, 2020

    4 Arsla Khan, "Link and System-Level NOMA Simulator: The Reproducibility of Research" MDPI AG 10 (10): 2388-, 2021

    5 M. -O. Wessman, "Frequency diversity performance of coded multiband-OFDM systems on IEEE UWB channels" 2 : 1197-1201, 2004

    6 M. K. Simon, "Digital communication over fading channels" Wiley 2001

    7 J. G. Proakis, "Digital Communications, vol. 4" McGrawhill 2001

    8 R.D. Cideciyan, "Concatenated Reed-Solomon/convolutional coding for data transmission in CDMA-based cellular systems" Institute of Electrical and Electronics Engineers (IEEE) 45 (45): 1291-1303, 1997

    9 W. Wu, "Coding for Satellite Communication" Institute of Electrical and Electronics Engineers (IEEE) 5 (5): 724-748, 1987

    10 X. Wang, "Closedform BER expressions of QPSK constellation for uplink non-orthogonal multiple access" 21 (21): 2242-2245, 2017

    11 ISKANDAR, "Channel Characterization and Performance Evaluation of Mobile Communication Employing Stratospheric Platforms" Institute of Electronics, Information and Communications Engineers (IEICE) E89-B (E89-B): 937-944, 2006

    12 N. Panwar, "A survey on 5G : The next generation of mobile communication" 18 : 64-84, 2016

    13 L. Dai, "A survey of non-orthogonal multiple access for 5G" 20 (20): 2294-2323, 2018

    14 Changsheng You, "3D Trajectory Optimization in Rician Fading for UAV-Enabled Data Harvesting" Institute of Electrical and Electronics Engineers (IEEE) 18 (18): 3192-3207, 2019

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