Open Access   Article Go Back

Filter Optimization MIMO Technique for FBMC Transceiver for 5G Technologies

Aparna Singh Kushwah1 , Mahima Mishra2

Section:Research Paper, Product Type: Journal Paper
Volume-7 , Issue-5 , Page no. 1481-1485, May-2019

CrossRef-DOI:   https://doi.org/10.26438/ijcse/v7i5.14811485

Online published on May 31, 2019

Copyright © Aparna Singh Kushwah, Mahima Mishra . This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

View this paper at   Google Scholar | DPI Digital Library

How to Cite this Paper

  • IEEE Citation
  • MLA Citation
  • APA Citation
  • BibTex Citation
  • RIS Citation

IEEE Style Citation: Aparna Singh Kushwah, Mahima Mishra, “Filter Optimization MIMO Technique for FBMC Transceiver for 5G Technologies,” International Journal of Computer Sciences and Engineering, Vol.7, Issue.5, pp.1481-1485, 2019.

MLA Style Citation: Aparna Singh Kushwah, Mahima Mishra "Filter Optimization MIMO Technique for FBMC Transceiver for 5G Technologies." International Journal of Computer Sciences and Engineering 7.5 (2019): 1481-1485.

APA Style Citation: Aparna Singh Kushwah, Mahima Mishra, (2019). Filter Optimization MIMO Technique for FBMC Transceiver for 5G Technologies. International Journal of Computer Sciences and Engineering, 7(5), 1481-1485.

BibTex Style Citation:
@article{Kushwah_2019,
author = {Aparna Singh Kushwah, Mahima Mishra},
title = {Filter Optimization MIMO Technique for FBMC Transceiver for 5G Technologies},
journal = {International Journal of Computer Sciences and Engineering},
issue_date = {5 2019},
volume = {7},
Issue = {5},
month = {5},
year = {2019},
issn = {2347-2693},
pages = {1481-1485},
url = {https://www.ijcseonline.org/full_paper_view.php?paper_id=4434},
doi = {https://doi.org/10.26438/ijcse/v7i5.14811485}
publisher = {IJCSE, Indore, INDIA},
}

RIS Style Citation:
TY - JOUR
DO = {https://doi.org/10.26438/ijcse/v7i5.14811485}
UR - https://www.ijcseonline.org/full_paper_view.php?paper_id=4434
TI - Filter Optimization MIMO Technique for FBMC Transceiver for 5G Technologies
T2 - International Journal of Computer Sciences and Engineering
AU - Aparna Singh Kushwah, Mahima Mishra
PY - 2019
DA - 2019/05/31
PB - IJCSE, Indore, INDIA
SP - 1481-1485
IS - 5
VL - 7
SN - 2347-2693
ER -

VIEWS PDF XML
324 125 downloads 98 downloads
  
  
           

Abstract

Filter bank Multicarrier (FBMC) is a novel technique evolved from OFDM which resolves most of these problems by taking a filtering approach to multicarrier communication system. FBMC signals can easily meet the Adjacent Channel Leakage Ratio (ACLR) and they do not use cyclic prefix thus improves spectral efficiency. The Filter bank Multicarrier (FBMC) transmission technique also leads to enhanced physical layer for future communication systems and it is an enabling technology for cognitive radio environment. Due to the inclusion of band-limited pulse shaping filters into the signal model in FBMC technique, the design of efficient transceiver architectures for multicarrier systems becomes a challenging task. In this paper the studied of MIMO technique for FBMC transceiver for 5G technologies is presented.

Key-Words / Index Term

Filter Bank Multicarrier (FBMC), Filter Bank, MIMO System, 5G Technology

References

[1] Zongmiao He, Lingyu Zhou, Yiou Chen, Xiang Ling, “Filter Optimization of Out-of-Band Emission and BER Analysis for FBMC-OQAM System in 5G”, 2017 9th IEEE International Conference on Communication Software and Networks.
[2] Mawlawi, B., Dore, J.B., Berg, V. “Optimizing contention based access methods for FBMC waveforms, Int. Conf. on Military Commun. and Information Systems,” Cracow, Poland, May 2015, pp.1-6.
[3] Viholainen, A.,Ihalainen, T., Stitz, T.H., Renfors, M., and Bellanger “Prototype filter design for filter bank based multicarrier transmission,” 17 th Euro. Signal Process Conf., Glasgow, Scotland, August 2009, pp. 24-28.
[4] Chen, D., Qu, D.M., and Jiang, T. “Novel prototype filter design for FBMC base cognitive radio systems through direct optimization of filter coefficients,” IEEE Int. Conf. Wirel. Commun. &Signal Proc., Suzhou, China, October 2010, pp. 21-23.
[5] P. Siohan, C. Siclet, and N. Lacaille, “Analysis and design of OFDM/OQAM systems based on filter bank theory,” IEEE Trans. Signal Process., vol. 50, no. 5, pp. 1170–1183, May 2002.
[6] B. Farhang-Boroujeny, ”OFDM Versus Filter Bank Multicarrier”, IEEE Signal Processing Magazine, vol. 28, pp. 92-112, May 2011.
[7] B. Farhang-Boroujeny, “Cosine Modulated and Offset QAM Filter Bank Multicarrier Techniques A Continuous-Time Prospect,” EURASIP Journal on Advances in Signal Processing, pp. 6, Jan 2010.
[8] V. Ari, B. Maurice, and H. Mathieu, “WP5: Prototype filter and filter bank structure”, PHYDYASPHYsical layer for Dynamic AccesS and cognitive radio, Jan 2009.
[9] B. Hirosaki, “An analysis of automatic equalizers for orthogonally multiplexed QAM systems,” IEEE Transactions on Communications, 28(1). pp. 73-83, Jan. 1980.
[10] S. Nedic and N. Popvic, ”Per-bin DFE for advanced OQAM-based multicarrier wireless data transmission systems,” Broadband Communications, 2002. Access, Transmission, Networking. 2002 International Zurich Seminar on, pp. 38-1, Feb. 2002.
[11] D. S. Waldhauser, L. G. Baltar and J. A. Nossek,”MMSE subcarrier for filter bank based multicarrier systems,” Proc. IEEE 9th Workshop on Signal Processing Advances in Wireless Communications, pp.525-529, July 2008.
[12] A. Ikhlef and J. Louveaux, ”An enhanced MMSE per subchannel equalizer for highly frequency selective channels for FBMC/OQAM systems,” Proc. IEEE 10th Workshop on Signal Processing Advances in Wireless Communications, pp. 186-190. June 2009.
[13] Aparna Singh Kushwah, Monika Jain, “Performance Enhancement of MIMO-OFDM System based on Spectrum Sensing Cognitive Radio Networks using Matched Filter Detection”, International Journal of Innovative Research in Computer and Communication Engineering, Vol. 6, Issue 6, June 2018.
[14] Aparna Singh Kushwah, Alok Kumar Shukla, “BER Reduction of Distributed Spatial Modulation in Cognitive Relay Network based MIMO-OFDM System”, International Journal of Innovative Research in Computer and Communication Engineering, Vol. 6, Issue 6, June 2018.
[15] Kwentus, Z. Jiang, and A. Willson, Jr., “Application of filter sharpening to cascaded integrator-comb decimation filters,” IEEE Transactions on Signal Processing, vol.45, pp.457-467, February 1997.