93
Views
0
CrossRef citations to date
0
Altmetric
Articles

Novel Adaptive Filter Design for Filter Bank Multicarrier System Under Doubly Dispersive Channel Conditions

&

REFERENCES

  • S. Weinstein and P. Ebert . (1971). “Data transmission by frequency-division multiplexing using the discrete Fourier transform,” IEEE Trans. Commun. Technol. 19 , pp. 628–634.
  • R. Van Nee and R. Prasad , OFDM for Wireless Multimedia Communications . 1st ed. Norwood, MA : Artech House, 2000.
  • R. W. Chang . (1966). “Synthesis of band-limited orthogonal signals for multichannel data transmission,” Bell Syst. Technol. J. 45 , pp. 1775–1796.
  • P. Siohan , C. Siclet and N. Lacaille . (2002). “Analysis and design of OFDM/OQAM systems based on filterbank theory,” IEEE Trans. Signal Process. 50 , pp. 1170–1183.
  • B. Farhang-Boroujeny . (2011). “OFDM versus filter bank multicarrier,” IEEE Signal Process. Mag. 28 , pp. 92–112.
  • B. Saltzberg . (1967). “Performance of an efficient parallel data transmission system,” IEEE Trans. Commun. Technol. 15 , pp. 805–811.
  • E. Stankevicius , R. Zakaria and S. Kazlauskas . (2015). “FBMC modulation as a possible co-existence facilitator for LTE mobile networks in 800 MHz band,” IETE J. Res. 61 , pp. 417–422.
  • R. Heath , G. Laus , T. Quek , S. Talwar and P. Zhou . (2014). “Signal processing for the 5G revolution [from the guest editors],” IEEE Signal Process. Mag. 31 , pp. 12–13.
  • P. P. Vaidyanathan . (1990). “Multirate digital filters, filter banks, polyphase networks, and applications: A tutorial,” Proc. IEEE 78 , pp. 56–93.
  • F. Schaich , “Filterbank based multi carrier transmission (FBMC) – evolving OFDM: FBMC in the context of WiMAX,” in Proceedings of the 2010 European Wireless Conference (EW) , Lucca, Italy, 2010, pp. 1051–1058.
  • V. Ringset , H. Rustad , F. Schaich , J. Vandermot and M. Najar , “Performance of a filterbank multicarrier (FBMC) physical layer in the WiMAX context,” in Proceedings of Future Network and Mobile Summit , Florence, Italy, 2010, pp. 1–8.
  • G. Wunder , P. Jung , M. Kasparick , T. Wild , F. Schaich , Y. Chen , S. Brink , I. Gaspar , N. Michailow , A. Festag , L. Mendes , N. Cassiau , D. Ktenas , M. Dryjanski , S. Pietrzyk , B. Eged , P. Vago and F. Wiedmann . (2014). “5GNOW: non-orthogonal, asynchronous waveforms for future mobile applications,” IEEE Commun. Mag. 52 , pp. 97–105.
  • H. Lin . (2015). “Flexible configured OFDM for 5G air interface,” IEEE Access 3 , pp. 1861–1870.
  • Y. Tao , L. Liu , S. Liu , and Z. Zhang . (2015). “A survey: Several technologies of non-orthogonal transmission for 5G,” China Commun. 12 , pp. 1–15.
  • S. Premnath , D. Wasden , S. K. Kasera , N. Patwari and B. Farhang-Boroujeny . (2013). “Beyond OFDM: Best-effort dynamic spectrum access using filterbank multicarrier,” IEEE/ACM Trans. Netw . 21 , pp. 869–882.
  • A. Jayaprakash and G. R. Reddy . (2015). “Discrete ambiguity function based analysis of filter bank multicarrier systems,” IETE Tech. Rev. 32 , pp. 330–346.
  • B. Le Floch , M. Alard and C. Berrou . (1995). “Coded orthogonal frequency division multiplex [ TV broadcasting],” Proc. IEEE 83 , pp. 982–996.
  • M. Alard , “Construction of a multicarrier signal,” U.S. Patent 6278686 B1, Aug. 21, 2001.
  • H. Bölcskei , P. Duhamel and R. Hleiss . (2003). “Orthogonalization of OFDM/OQAM pulse shaping filters using the discrete ZAK transform,” Signal Process . 83 , pp. 1379–1391.
  • P. Siohan and C. Roche . (2004). “Derivation of extended Gaussian functions based on the Zak transform,” IEEE Signal Process. Lett . 11 , pp. 401–403.
  • R. Haas and J. C. Belfiore , “Multiple carrier transmission with time-frequency well-localized impulses.” Presented at the IEEE Second Symposium on Communication and Vehicular Technology in the Benelux, 1994, Louvain la Neuve , Nov. 1994, pp. 187–193.
  • F. Hlawatsch and G. Matz , Wireless Communications over Rapidly Time-Varying Channels . London: Academic Press, 2011.
  • P. Jung and G. Wunder . (2007). “The WSSUS pulse design problem in multicarrier transmission,” IEEE Trans. Commun . 55 , pp. 1918–1928.
  • W. Kozek and A. Molisch . (1998). “Nonorthogonal pulseshapes for multicarrier communications in doubly dispersive channels,” IEEE J. Select. Areas Commun . 16 , pp. 1579–1589.
  • W. Rhee , J. Chuang and L. Cimini , “Performance comparison of OFDM and multitone with polyphase filter bank for wireless communications”, In Proceedings of 48th IEEE Vehicular Technology Conference , Ottawa, Ont., Canada, 2010, pp. 768–772.
  • A. Viholainen , M. Bellanger and M. Huchard . (2009). “Prototype filter and structure optimization”. Document D5 1 deliverable. Available: http://www.ict-phydyas.org/delivrables/PHYDYAS-D5-1.pdf.
  • C. Drentea , Modern Communications Receiver Design and Technology . Norwood, MA: Artech House, 2010.
  • J. Kaiser and R. Schafer . (1980). “On the use of the i0-sinh window for spectrum analysis,” IEEE Trans. Acoust., Speech, Signal Process . 28 , pp. 105–107.
  • D. Goto , T. Yamazato and B. Mongol , “Gaussian pulse shape optimization of BFDM in time-frequency dispersive channels,” in Proceedings of IEEE 75th Vehicular Technology Conference (VTC Spring) , Yokohama, Japan, 2012, pp. 1–5.
  • B. Farhang-Boroujeny . (2008). “A square-root Nyquist (M) filter design for digital communication systems,” IEEE Trans. Signal Process . 56 , pp. 2127–2132.
  • M. Bellanger , D. Le Ruyet , D. Roviras , M. Terŕe , J. Nossek , L. Baltar , Q. Bai , D. Waldhauser , M. Renfors and T. Ihalainen . (2010). “FBMC physical layer: A primer”. PHYDYAS . Available: http://www.ict-phydyas.org/teamspace/internal-folder/FBMC-Primer_06-2010.pdf.
  • P. Amini , C. H. Yuen , R.-R. Chen and B. Farhang-Boroujeny , “Isotropic filter design for MIMO filter bank multicarrier communications,” in Proceedings of the IEEE Sensor Array and Multichannel Signal Proceeding Workshop (SAM) 2010 , Jerusalem , Oct. 2010, pp. 89–92.
  • P. Amini and B. Farhang-Boroujeny , “Design and performance evaluation of filtered multitone (FMT) in doubly dispersive channels,” in Proceedings of the IEEE International Conference on Communications (ICC) , Kyoto , 2011, pp. 1–5.
  • J. A. Prakash and G. R. Reddy , “Efficient prototype filter design for Filter Bank Multicarrier (FBMC) System based on Ambiguity function analysis of Hermite polynomials,” in Proceedings of the 2013 International Multi-Conference on Automation, Computing, Communications, Control and Compressed Sensing (iMac4s) , Kottayam , India, 2013, pp. 580–585.
  • P. Amini , R.-R. Chen and B. Farhang-Boroujeny . (2015). “Filterbank multicarrier communications for underwater acoustic channels,” IEEE J. Oceanic Eng . 40 , pp. 115–130.
  • N. Eappen , J. A. Prakash and G. R. Reddy , “Efficient multi user CFO estimation and correction techniques in uplink OFDMA systems,” in Proceedings of First International Conference on Computational Systems and Communications (ICCSC) , 2014, pp. 306–310.
  • S. H. S. Masoumian and B. M. Tazehkand . (2015). “Accurate OFDM sparse channel estimation by optimal deterministic pilot pattern,” IETE J. Res. 61 , pp. 230–235.
  • E. Kofidis , D. Katselis , A. Rontogiannis and S. Theodoridis . (2013). “Preamble-based channel estimation in OFDM/OQAM systems: A review,” Signal Process . 93 (7), pp. 2038–2054.
  • V. Lottici , R. Reggiannini and M. Carta . (2010). “Pilot-aided carrier frequency estimation for filter-bank multicarrier wireless communications on doubly-selective channels,” IEEE Trans. Signal Process. 58 , pp. 2783–2794.
  • H. Saeedi-Sourck and S. Sadri . (2013). “Frequency-domain carrier frequency and symbol timing offsets estimation for offset QAM filter bank multicarrier systems in uplink of multiple access networks,” Wireless Pers. Commun . 70 , pp. 601–615.
  • J. Du and S. Signell , “Pulse shape adaptivity in OFDM/OQAM systems,” in Proceedings of the ACM 2008 International Conference on Advanced Infocomm Technology , Shenzhen, China, 2008, p. 131.
  • M. Fuhrwerk , J. Peissig and M. Schellmann , “Channel adaptive pulse shaping for OQAM-OFDM systems,” in Proceedings of the 22nd European Signal Processing Conference (EUSIPCO) , Lisbon, Portugal, 2014, pp. 181–185.
  • Sahin, I. Guvenc and H. Arslan , “A comparative study of FBMC prototype filters in doubly dispersive channels,” in Proceedings of the IEEE Globecom Workshops , Anaheim, CA , 2012, pp. 197–203.
  • D. Goto , T. Yamazato and B. Mongol , “Gaussian pulse shape optimization of BFDM in time-frequency dispersive channels,” in Proceedings of the IEEE 75th Vehicular Technology Conference (VTC Spring) , Yokohama , 2012, pp. 1–5.
  • C. Siclet and P. Siohan , “Design of BFDM/OQAM systems based on biorthogonal modulated filter banks,” in Proceedings of IEEE Global Telecommunications Conference , San Francisco, CA, 2000, pp. 701–705.
  • B. Mongol , T. Yamazato and M. Katayama , “Channel estimation and tracking schemes for the pulse-shaping OFDM systems,” in Proceedings of IEEE International Conference on Communications , Dresden, Germany, 2009, pp. 1–5.
  • T. Strohmer and S. Beaver . (2003). “Optimal OFDM design for time-frequency dispersive channels,” IEEE Trans. Commun . 51 , pp. 1111–1122.
  • F.-M. Fang-ming Han and X.-D. Zhang . (2009). “Wireless multicarrier digital transmission via Weyl-Heisenberg frames over time-frequency dispersive channels,” IEEE Trans. Commun. 57 , pp. 1721–1733.
  • A. Sahin , I. Guvenc and H. Arslan . (2013). “A survey on multicarrier communications: Prototype filters, lattice structures, and implementation aspects,” IEEE Commun. Surv. Tutorials . 16 , pp. 1312–1338.
  • P. Chevillat and G. Ungerboeck . (1982). “Optimum FIR transmitter and receiver filters for data transmission over band-limited channels,” IEEE Trans. Commun. 30 , pp. 1909–1915.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.