MIMO Signal Processing in Offset-QAM Based Filter Bank Multicarrier Systems

Next-generation communication systems have to comply with very strict requirements for increased flexibility in heterogeneous environments, high spectral efficiency, and agility of carrier aggregation. This fact motivates research in advanced multicarrier modulation (MCM) schemes, such as filter ban...

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Vydané v:IEEE transactions on signal processing Ročník 64; číslo 21; s. 5733 - 5762
Hlavní autori: Perez-Neira, Ana I., Caus, Marius, Zakaria, Rostom, Le Ruyet, Didier, Kofidis, Eleftherios, Haardt, Martin, Mestre, Xavier, Yao Cheng
Médium: Journal Article Publikácia
Jazyk:English
Vydavateľské údaje: IEEE 01.11.2016
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ISSN:1053-587X, 1941-0476
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Abstract Next-generation communication systems have to comply with very strict requirements for increased flexibility in heterogeneous environments, high spectral efficiency, and agility of carrier aggregation. This fact motivates research in advanced multicarrier modulation (MCM) schemes, such as filter bank-based multicarrier (FBMC) modulation. This paper focuses on the offset quadrature amplitude modulation (OQAM)-based FBMC variant, known as FBMC/OQAM, which presents outstanding spectral efficiency and confinement in a number of channels and applications. Its special nature, however, generates a number of new signal processing challenges that are not present in other MCM schemes, notably, in orthogonal-frequency-division multiplexing (OFDM). In multiple-input multiple-output (MIMO) architectures, which are expected to play a primary role in future communication systems, these challenges are intensified, creating new interesting research problems and calling for new ideas and methods that are adapted to the particularities of the MIMO-FBMC/OQAM system. The goal of this paper is to focus on these signal processing problems and provide a concise yet comprehensive overview of the recent advances in this area. Open problems and associated directions for future research are also discussed.
AbstractList Next-generation communication systems have to comply with very strict requirements for increased flexibility in heterogeneous environments, high spectral efficiency, and agility of carrier aggregation. This fact motivates research in advanced multicarrier modulation (MCM) schemes, such as filter bank-based multicarrier (FBMC) modulation. This paper focuses on the offset quadrature amplitude modulation (OQAM)-based FBMC variant, known as FBMC/OQAM, which presents outstanding spectral efficiency and confinement in a number of channels and applications. Its special nature, however, generates a number of new signal processing challenges that are not present in other MCM schemes, notably, in orthogonal-frequency-division multiplexing (OFDM). In multiple-input multiple-output (MIMO) architectures, which are expected to play a primary role in future communication systems, these challenges are intensified, creating new interesting research problems and calling for new ideas and methods that are adapted to the particularities of the MIMO-FBMC/OQAM system. The goal of this paper is to focus on these signal processing problems and provide a concise yet comprehensive overview of the recent advances in this area. Open problems and associated directions for future research are also discussed.
Next-generation communication systems have to comply with very strict requirements for increased flexibility in heterogeneous environments, high spectral efficiency, and agility of carrier aggregation. This fact motivates research in advanced multicarrier modulation (MCM) schemes, such as filter bank-based multicarrier (FBMC) modulation. This paper focuses on the offset quadrature amplitude modulation (OQAM)-based FBMC variant, known as FBMC/OQAM, which presents outstanding spectral efficiency and confinement in a number of channels and applications. Its special nature, however, generates a number of new signal processing challenges that are not present in other MCM schemes, notably, in orthogonal-frequency-division multiplexing (OFDM). In multiple-input multiple-output (MIMO) architectures, which are expected to play a primary role in future communication systems, these challenges are intensified, creating new interesting research problems and calling for new ideas and methods that are adapted to the particularities of the MIMO-FBMC/OQAM system. The goal of this paper is to focus on these signal processing problems and provide a concise yet comprehensive overview of the recent advances in this area. Open problems and associated directions for future research are also discussed. Peer Reviewed
Author Zakaria, Rostom
Mestre, Xavier
Perez-Neira, Ana I.
Haardt, Martin
Caus, Marius
Le Ruyet, Didier
Kofidis, Eleftherios
Yao Cheng
Author_xml – sequence: 1
  givenname: Ana I.
  surname: Perez-Neira
  fullname: Perez-Neira, Ana I.
  email: ana.isabel.perez@upc.edu
  organization: Dept. of Signal Theor. & Commun., Univ. Politec. de Catalunya, Barcelona, Spain
– sequence: 2
  givenname: Marius
  surname: Caus
  fullname: Caus, Marius
  email: marius.caus@cttc.cat
  organization: Centre Tecnol. de Telecomunicacions de Catalunya, Barcelona, Spain
– sequence: 3
  givenname: Rostom
  surname: Zakaria
  fullname: Zakaria, Rostom
  email: rostom.zakaria@cnam.fr
  organization: LAETITIA, CNAM, Paris, France
– sequence: 4
  givenname: Didier
  surname: Le Ruyet
  fullname: Le Ruyet, Didier
  email: didier.le_ruyet@cnam.fr
  organization: LAETITIA, CNAM, Paris, France
– sequence: 5
  givenname: Eleftherios
  surname: Kofidis
  fullname: Kofidis, Eleftherios
  email: kofidis@unipi.gr
  organization: Dept. of Stat. & Insurance Sci., Univ. of Piraeus, Piraeus, Greece
– sequence: 6
  givenname: Martin
  surname: Haardt
  fullname: Haardt, Martin
  email: martin.haardt@tu-ilmenau.de
  organization: Commun. Res. Lab., Ilmenau Univ. of Technol., Ilmenau, Germany
– sequence: 7
  givenname: Xavier
  surname: Mestre
  fullname: Mestre, Xavier
  email: xavier.mestre@cttc.cat
  organization: Centre Tecnol. de Telecomunicacions de Catalunya, Barcelona, Spain
– sequence: 8
  surname: Yao Cheng
  fullname: Yao Cheng
  email: y.cheng@tu-ilmenau.de
  organization: Commun. Res. Lab., Ilmenau Univ. of Technol., Ilmenau, Germany
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Snippet Next-generation communication systems have to comply with very strict requirements for increased flexibility in heterogeneous environments, high spectral...
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ieee
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StartPage 5733
SubjectTerms 5G mobile communication
Channel estimation
Comunicacions mòbils, Sistemes de
FBMC/OQAM
Frequency modulation
MIMO
MIMO precoder/decoder design
Mobile communication systems
Multi-stream transmission
OFDM
Time-frequency analysis
Title MIMO Signal Processing in Offset-QAM Based Filter Bank Multicarrier Systems
URI https://ieeexplore.ieee.org/document/7491375
https://recercat.cat/handle/2072/282754
Volume 64
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