Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
A The next generation of wireless systems, like 5G/6G, ought to accommodate a wide range of potential use cases like massive real-time and machine-type communications. Accordingly, such systems need to provide high throughput, low latency, and a low peak to average power ratio (PAPR). It is not feasible to fulfil each of these needs with a single 5G/6G technique. On one hand, MIMO technique can potentially improve spectral efficiency and hence support more date rates. On the other hand, the utilization of multi-carriers’ techniques like FBMC/OQAM, or offset quadrature amplitude modulation, offers a compelling substitute for the traditional cyclic prefix-based orthogonal frequency division multiplexing (CP-OFDM) because of its excellent spectral efficiency and extremely low out-of-band radiation. However, the FBMC/OQAM orthogonality constraint is loosened, confined to the real field alone, resulting in intrinsic interference. This interference causes incompatibilities between FBMC/OQAM and certain MIMO schemes. Also, equalizing the time-varying MIMO channel is even more difficult when the complex valued symbol—which includes both real and imaginary FBMC/OQAM task, primarily due to the general non-flatness of the subchannels. From this perspective, we first suggest in this paper an efficient pruned-DFT-based implementation of MIMO to restoring the complex orthogonality and also reduce the complexity of the whole system. Then, we optimize MIMO channel equalization by efficiently separating and equalizing multiple parallel channels using various equalization techniques. The numerical results, presented as MSE versus subcarrier index, show that Pruned DFT technique consistently achieves lower MSE values compared to the standard MIMO FBMC-OQAM across various configurations, which indicates better error performance and its robustness in dynamic channel conditions.
Słowa kluczowe
Rocznik
Tom
Strony
915--921
Opis fizyczny
Bibliogr., 33 poz., rys., tab.
Twórcy
autor
- Department of Communications Engineering, University of Technology, Baghdad
autor
- College of Engineering, University of Information Technology and Communications, Baghdad
Bibliografia
- [1] Lawrence and S. V. George, “Pruned DFT Spread FBMC,” vol. 15, no. 2, pp. 8-11, https://doi.org/10.9790/2834-1502010811
- [2] M. Agrawal, S. Singh, N. Raisen, R. Bhopal, and Y. Raut, “BER Analysis of MIMO OFDM System for AWGN & Rayleigh Fading Channel,” 2011.
- [3] S. S. Ghorpade and S. V Sankpal, “Behaviour of OFDM System using MATLAB Simulation,” 2013.
- [4] M. Divya, “Bit Error Rate Performance of BPSK Modulation and OFDM-BPSK with Rayleigh Multipath Channel,” Int J Eng Adv Technol, 2013, [Online]. Available: www.ijeat.org
- [5] S. Gupta, U. Dalal, and V. N. Mishra, “Performance on ICI Self-Cancellation in FFT-OFDM and DCT-OFDM System,” Journal of Function Spaces, vol. 2015, 2015, https://doi.org/10.1155/2015/854753
- [6] R. Nissel and M. Rupp, “Pruned DFT-Spread FBMC: Low PAPR, low latency, high spectral efficiency,” IEEE Transactions on Communications, vol. 66, no. 10, pp. 4811-4825, Oct. 2018, https://doi.org/10.1109/TCOMM.2018.2837130
- [7] T. M Jamel, A. Al-Shuwaili, and B. M Mansoor, “Novelty Study of the Window Length Effects on the Adaptive Beam-forming Based-FEDS Approach,” International Journal of Computing and Digital Systems, vol. 9, no. 6, pp. 1221-1227, 2020.
- [8] Al-Shuwaili, M. Dh Hassib, and T. M Jamel, “Ball’s-Based Adaptive Channel Estimation Scheme Using RLS Family-Types Algorithms,” International Journal of Computing and Digital Systems, vol. 12, no. 1, pp. 469-477, 2022.
- [9] N. Al-Shuwaili, A. Bagheri and O. Simeone, "Joint uplink/downlink and offloading optimization for mobile cloud computing with limited backhaul," 2016 Annual Conference on Information Science and Systems (CISS), Princeton, NJ, USA, 2016, pp. 424-429.
- [10] M. Agrawal, S. Singh, N. Raisen, R. Bhopal, and Y. Raut, “BER Analysis of MIMO OFDM System for AWGN & Rayleigh Fading Channel,” 2011.
- [11] S. S. Ghorpade and S. V Sankpal, “Behaviour of OFDM System using MATLAB Simulation,” 2013.
- [12] M. Divya, “Bit Error Rate Performance of BPSK Modulation and OFDM-BPSK with Rayleigh Multipath Channel,” Int J Eng Adv Technol, 2013, [Online]. Available: www.ijeat.org
- [13] S. Gupta, U. Dalal, and V. N. Mishra, “Performance on ICI Self-Cancellation in FFT-OFDM and DCT-OFDM System,” Journal of Function Spaces, vol. 2015, 2015, https://doi.org/10.1155/2015/854753
- [14] R. Nissel and M. Rupp, “Pruned DFT-Spread FBMC: Low PAPR, low latency, high spectral efficiency,” IEEE Transactions on Communications, vol. 66, no. 10, pp. 4811-4825, Oct. 2018, https://doi.org/10.1109/TCOMM.2018.2837130
- [15] Md. F. Ahmed, Md. F. Ahmed, and A. Z. Md. Touhidul Islam, “Comparison of Bit Error Rate Performance of Various Digital Modulation Schemes over AWGN and Rayleigh Fading Channels using Simulink,” The International Journal of Ambient Systems and Applications, vol. 9, no. 2, pp. 7-16, Jun. 2021, https://doi.org/10.5121/ijasa.2021.9202
- [16] Walid ali raslan, M. Abdel-Azim Mohamed, and H. Mohamed Abdel-Atty, “Article 7 2022 Part of the Signal Processing Commons, and the Systems and Communications Commons Recommended Citation Recommended Citation raslan,” 2022.
- [17] K. Naga Bhavani, A. Gangadhar, and M. Hema, “Issue 6 www.jetir.org (ISSN-2349-5162),” 2022. [Online]. Available: www.jetir.org
- [18] S. Al-Doori, A. Al-Shuwaili and T. M. Jamel, "Efficient FBMC-OQAM Channel Equalization Through Pruned DFT," 2023 16th International Conference on Developments in eSystems Engineering (DeSE), Istanbul, Turkiye, 2023, pp. 1-6, https://doi.org/10.1109/DeSE60595.2023.10469207
- [19] T. M. Jamel, A. Al-Shuwaili and V. K. Saad, "Performance Analysis of Pilot-Symbol Aided Channel Estimation (PSACE) in FBMC-OQAM System," 2024 21st International Multi-Conference on Systems, Signals & Devices (SSD), Erbil, Iraq, 2024, pp. 1-9, https://doi.org/10.1109/SSD61670.2024.10549368
- [20] Muntadher T Al-Mashkoor, Thamer M Jamel, Haydar M Al-Tamimi, “Optimizing chromatic dispersion compensation using the adaptive maximum likelihood algorithm for FBMC-OQAM fiber optic systems”, AIP Conference Proceedings, 2024 , https://doi.org/10.1063/5.0205980
- [21] OF Kadhem, TM Jamel, HF Khazaal,” Equalization methods for Filter Bank Multicarrier OQAM”, Wasit Journal of Engineering Sciences, 2023, Volume 11, Issue 3, Pages 106-119.
- [22] OF Kadhem, TM Jamel, HF Khazaal,” Equalization methods for Filter Bank Multicarrier OQAM”, Wasit Journal of Engineering Sciences, 2023, Volume 11, Issue 3, Pages 106-119.
- [23] H. A. Fadel and T. M. Jamel, "Evaluating the Performance of 5G Modulation and Beyond: A Review Study," 2024 21st International Multi-Conference on Systems, Signals & Devices (SSD), Erbil, Iraq, 2024, pp. 727-734, https://doi.org/10.1109/SSD61670.2024.10548506
- [24] Muntadher T Al-Mashkoor, Thamer M Jamel, Haydar M Al-Tamimi, “Optimizing chromatic dispersion compensation using the adaptive maximum likelihood algorithm for FBMC-OQAM fiber optic systems”, AIP Conference Proceedings, 2024 , https://doi.org/10.1063/5.0205980
- [25] Abd-Alhussein, M.T., Jamel, T.M., Abdulhadi, H.M. et al. Performance study of the compensations dispersion systems for an optical filter bank multicarrier transceivers technique. J Opt (2024). https://doi.org/10.1007/s12596-024-02055-x
- [26] Ahmed H. Abbas, Thamer M. Jamel, “ Compensating Chromatic Dispersion and Phase Noise using Parallel AFB-MBPS For FBMC-OQAM Optical Communication System “, International Journal of Electrical and Computer Engineering Systems (IJECES) , Vol. 14 No. 8 (2023), pp 853-867.
- [27] OF Kadhem, TM Jamel, HF Khazaal,” An overview for channel equalization techniques in filter bank’, The Second International Conference on Advanced Computer Applications (ACA2023) by Imam Al-Kadhum College, Maysan Departments, Maysan, Iraq. Technically sponsored by IEEE \ Iraq Section
- [28] Jamel, Thamer & Alshameri, Ahmed & Mohammed, H. (2023). A Review of Phase Noise Compensation Techniques in Optical Fiber Systems Based-on Filter Bank Multi-Carrier. July 2023, Conference: 1st International Conference on Sustainability System Development (ICSSD2023), at Erbil, Iraq, 2023, Erbil , Iraq
- [29] d Ihalainen, T., Hidalgo Stitz, T., Rinne, M. et al. “Channel Equalization in Filter Bank Based Multicarrier Modulation for Wireless Communications.” EURASIP J. Adv. Signal Process. 2007, 049389 (2006). https://doi.org/10.1155/2007/49389
- [30] X. Mestre, M. Majoral and S. Pfletschinger, "An Asymptotic Approach to Parallel Equalization of Filter Bank Based Multicarrier Signals," in IEEE Transactions on Signal Processing, vol. 61, no. 14, pp. 3592-3606, July15, 2013, https://doi.org/10.1109/TSP.2013.2261297
- [31] M. Bellanger, "FS-FBMC: An alternative scheme for filter bank based multicarrier transmission," 2012 5th International Symposium on Communications, Control and Signal Processing, Rome, Italy, 2012, pp. 1-4, https://doi.org/10.1109/ISCCSP.2012.6217776
- [32] V. Oppenheim and R. W. Schafer, Discrete-Time Signal Processing. Upper Saddle River, NJ: Prentice-Hall
- [33] E. M. Ip and J. M. Kahn, "Fiber Impairment Compensation Using Coherent Detection and Digital Signal Processing," in Journal of Lightwave Technology, vol. 28, no. 4, pp. 502-519, Feb.15, 2010, https://doi.org/10.1109/JLT.2009.2028245
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4f3c9098-59b8-4efd-8132-513d01839396
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