Advances on processing for multiple carrier schemes :: OFDM & OFDMA /
Gespeichert in:
Weitere Verfasser: | , |
---|---|
Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
New York :
Nova Science Publishers,
c2012.
|
Schriftenreihe: | Computer science, technology and applications.
|
Schlagworte: | |
Online-Zugang: | DE-862 DE-863 |
Beschreibung: | 1 online resource (ix, 466 p.). |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9781614708346 1614708347 |
Internformat
MARC
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245 | 0 | 0 | |a Advances on processing for multiple carrier schemes : |b OFDM & OFDMA / |c Faouzi Bader, Nizar Zorba, editors. |
260 | |a New York : |b Nova Science Publishers, |c c2012. | ||
300 | |a 1 online resource (ix, 466 p.). | ||
336 | |a text |b txt |2 rdacontent | ||
337 | |a computer |b c |2 rdamedia | ||
338 | |a online resource |b cr |2 rdacarrier | ||
490 | 1 | |a Computer science, technology and applications | |
504 | |a Includes bibliographical references and index. | ||
588 | |a Description based on print version record and CIP data provided by publisher; resource not viewed. | ||
505 | 0 | |a ADVANCES ON PROCESSING FOR MULTIPLE CARRIER SCHEMES OFDM & OFDMA; ADVANCES ON PROCESSING FOR MULTIPLE CARRIER SCHEMES OFDM & OFDMA; CONTENTS ; PREFACE ; INTRODUCTION TO WIRELESS MULTI-CARRIER SCHEMES; Abstract; 1. Introduction; 2. TransmissionoverWirelessChannels:TheMultipathEffect; 2.1. TheMultipathEffect; 2.2. ADiscrete-TimeSignalModel; 3. OrthogonalFrequencyDivisionMultiplexing; 3.1. TheCyclicPrefix; 3.2. OrthogonalFrequencyDivisionMultiplexing; 4. SingleCarrierwithFrequencyDomainEqualization; 5. FilterBanksMulti-carrierSystems; 5.1. IntroductiontoFBMC; 5.1.1. BasicDescriptionofFBMC. | |
505 | 8 | |a 5.1.2. MainDifferences5.2. ChoiceoftheFilterBank; 5.3. DetailedDescriptionofFBMCTransmission; 5.4. Equalization; 5.5.ComparisonResults; 5.6. Applications; 5.7. VariationsofFBMC; 6. Conclusions; References; PEAK-TO-AVERAGE POWER RATIO ISSUES FOR PULSE-SHAPED MULTICARRIER MODULATIONS ; ABSTRACT ; 1. INTRODUCTION ; 2. PULSE-SHAPED MULTICARRIER MODULATION ; 2.1. The Gabor Theory; 2.1.1. Definition ; 2.1.2. Time-Frequency Localization ; 2.1.3. The Balian-Low Theorem and its Consequences ; 2.2. OFDM ; 2.2.1. Formulation in the Continuous-Time Domain. | |
505 | 8 | |a 2.2.2. The OFDM Modulation in the Discrete Time Domain 2.2.3. The Limits of the OFDM Modulation ; 2.3. OFDM/OQAM ; 2.3.1. Continuous-Time Formulation ; 2.3.2. Link with the Gabor Theory ; 2.3.3. Discrete-Time Formulation ; 2.3.4. An Efficient Implementation of the Modulator/Demodulator ; 2.3.5. Conditions for Obtaining an Orthogonal OFDM/OQAM System ; 2.4. Oversampled OFDM ; 2.4.1. Link with the Gabor Theory ; 2.4.2. Continuous-Time Formulation ; 2.4.3. Discrete-Time Formulation ; 2.4.4. An Efficient Implementation of the Modulator/Demodulator. | |
505 | 8 | |a 2.4.5. Conditions for Obtaining an Orthogonal Oversampled OFDM System 2.5. A Unified Formulation ; 3. SOME PULSE SHAPE AND PROTOTYPE FILTER EXAMPLES ; 3.1. Definitions ; 3.1.1. Length of the Prototype Filter ; 3.1.2. Time-Frequency Localization ; 3.1.3. Out-of-Band Energy ; 3.2. Pulse Shapes -- CT Domain ; 3.2.1. Square Root of Raised Cosine (SRRC) ; 3.2.2. Isotropic Orthogonal Transform Algorithm (IOTA) ; 3.3. Prototype Filters -- DT Domain ; 3.3.1. Prototype Filters Optimized for the Time-Frequency Localization (TFL) ; 3.3.2. Prototype Filters Optimized for the Frequency Selectivity (FS) | |
505 | 8 | |a 4. POWER SPECTRAL DENSITY 4.1. Analytic Expression of the PSD ; 4.2. Simulation Results ; 5. ANALYSIS OF THE PAPR ; 5.1. Analysis of a Signal Sample ; 5.2. Approximation of the CCDF ; 5.3. Optimization of the CCDF of the PAPR ; 5.3.1. Lemmas ; 5.3.2. Optimization Problem ; 5.3.3. Application to Pulse-Shaped MCM ; 5.3.3.1. OFDM/OQAM ; 5.3.3.2. Oversampled OFDM ; 5.4. A distance from the Optimal Case -- The Parameter ; 6. PAPR REDUCTION ; 6.1. Selective Mapping for OFDM ; 6.2. The OSLM Technique ; 6.2.1. Description of the Algorithm ; 6.2.2. Modulator/Demodulator Block Diagram. | |
650 | 0 | |a Orthogonal frequency division multiplexing. |0 http://id.loc.gov/authorities/subjects/sh2005002695 | |
650 | 0 | |a Multiple access protocols (Computer network protocols) |0 http://id.loc.gov/authorities/subjects/sh2006001631 | |
650 | 6 | |a Multiplexage par répartition orthogonale de la fréquence. | |
650 | 6 | |a Protocoles à accès multiple (Protocoles de réseaux d'ordinateurs) | |
650 | 7 | |a TECHNOLOGY & ENGINEERING |x Mobile & Wireless Communications. |2 bisacsh | |
650 | 7 | |a TECHNOLOGY & ENGINEERING |x Radio. |2 bisacsh | |
650 | 7 | |a Multiple access protocols (Computer network protocols) |2 fast | |
650 | 7 | |a Orthogonal frequency division multiplexing |2 fast | |
700 | 1 | |a Bader, Faouzi. | |
700 | 1 | |a Zorba, Nizar. | |
758 | |i has work: |a Advances on processing for multiple carrier schemes (Text) |1 https://id.oclc.org/worldcat/entity/E39PCFFTw8FkYMXKx4DWypXGHC |4 https://id.oclc.org/worldcat/ontology/hasWork | ||
776 | 0 | 8 | |i Print version: |t Advances on processing for multiple carrier schemes |d New York : Nova Science Publishers, c2012. |z 9781614706342 (hardcover) |w (DLC) 2011048492 |
830 | 0 | |a Computer science, technology and applications. | |
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Datensatz im Suchindex
DE-BY-FWS_katkey | ZDB-4-EBA-ocn834643109 |
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adam_text | |
any_adam_object | |
author2 | Bader, Faouzi Zorba, Nizar |
author2_role | |
author2_variant | f b fb n z nz |
author_facet | Bader, Faouzi Zorba, Nizar |
author_sort | Bader, Faouzi |
building | Verbundindex |
bvnumber | localFWS |
callnumber-first | T - Technology |
callnumber-label | TK5103 |
callnumber-raw | TK5103.484 |
callnumber-search | TK5103.484 |
callnumber-sort | TK 45103.484 |
callnumber-subject | TK - Electrical and Nuclear Engineering |
collection | ZDB-4-EBA |
contents | ADVANCES ON PROCESSING FOR MULTIPLE CARRIER SCHEMES OFDM & OFDMA; ADVANCES ON PROCESSING FOR MULTIPLE CARRIER SCHEMES OFDM & OFDMA; CONTENTS ; PREFACE ; INTRODUCTION TO WIRELESS MULTI-CARRIER SCHEMES; Abstract; 1. Introduction; 2. TransmissionoverWirelessChannels:TheMultipathEffect; 2.1. TheMultipathEffect; 2.2. ADiscrete-TimeSignalModel; 3. OrthogonalFrequencyDivisionMultiplexing; 3.1. TheCyclicPrefix; 3.2. OrthogonalFrequencyDivisionMultiplexing; 4. SingleCarrierwithFrequencyDomainEqualization; 5. FilterBanksMulti-carrierSystems; 5.1. IntroductiontoFBMC; 5.1.1. BasicDescriptionofFBMC. 5.1.2. MainDifferences5.2. ChoiceoftheFilterBank; 5.3. DetailedDescriptionofFBMCTransmission; 5.4. Equalization; 5.5.ComparisonResults; 5.6. Applications; 5.7. VariationsofFBMC; 6. Conclusions; References; PEAK-TO-AVERAGE POWER RATIO ISSUES FOR PULSE-SHAPED MULTICARRIER MODULATIONS ; ABSTRACT ; 1. INTRODUCTION ; 2. PULSE-SHAPED MULTICARRIER MODULATION ; 2.1. The Gabor Theory; 2.1.1. Definition ; 2.1.2. Time-Frequency Localization ; 2.1.3. The Balian-Low Theorem and its Consequences ; 2.2. OFDM ; 2.2.1. Formulation in the Continuous-Time Domain. 2.2.2. The OFDM Modulation in the Discrete Time Domain 2.2.3. The Limits of the OFDM Modulation ; 2.3. OFDM/OQAM ; 2.3.1. Continuous-Time Formulation ; 2.3.2. Link with the Gabor Theory ; 2.3.3. Discrete-Time Formulation ; 2.3.4. An Efficient Implementation of the Modulator/Demodulator ; 2.3.5. Conditions for Obtaining an Orthogonal OFDM/OQAM System ; 2.4. Oversampled OFDM ; 2.4.1. Link with the Gabor Theory ; 2.4.2. Continuous-Time Formulation ; 2.4.3. Discrete-Time Formulation ; 2.4.4. An Efficient Implementation of the Modulator/Demodulator. 2.4.5. Conditions for Obtaining an Orthogonal Oversampled OFDM System 2.5. A Unified Formulation ; 3. SOME PULSE SHAPE AND PROTOTYPE FILTER EXAMPLES ; 3.1. Definitions ; 3.1.1. Length of the Prototype Filter ; 3.1.2. Time-Frequency Localization ; 3.1.3. Out-of-Band Energy ; 3.2. Pulse Shapes -- CT Domain ; 3.2.1. Square Root of Raised Cosine (SRRC) ; 3.2.2. Isotropic Orthogonal Transform Algorithm (IOTA) ; 3.3. Prototype Filters -- DT Domain ; 3.3.1. Prototype Filters Optimized for the Time-Frequency Localization (TFL) ; 3.3.2. Prototype Filters Optimized for the Frequency Selectivity (FS) 4. POWER SPECTRAL DENSITY 4.1. Analytic Expression of the PSD ; 4.2. Simulation Results ; 5. ANALYSIS OF THE PAPR ; 5.1. Analysis of a Signal Sample ; 5.2. Approximation of the CCDF ; 5.3. Optimization of the CCDF of the PAPR ; 5.3.1. Lemmas ; 5.3.2. Optimization Problem ; 5.3.3. Application to Pulse-Shaped MCM ; 5.3.3.1. OFDM/OQAM ; 5.3.3.2. Oversampled OFDM ; 5.4. A distance from the Optimal Case -- The Parameter ; 6. PAPR REDUCTION ; 6.1. Selective Mapping for OFDM ; 6.2. The OSLM Technique ; 6.2.1. Description of the Algorithm ; 6.2.2. Modulator/Demodulator Block Diagram. |
ctrlnum | (OCoLC)834643109 |
dewey-full | 621.3845/6 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.3845/6 |
dewey-search | 621.3845/6 |
dewey-sort | 3621.3845 16 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Electronic eBook |
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id | ZDB-4-EBA-ocn834643109 |
illustrated | Illustrated |
indexdate | 2025-04-11T08:41:20Z |
institution | BVB |
isbn | 9781614708346 1614708347 |
language | English |
lccn | 2021699412 |
oclc_num | 834643109 |
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series | Computer science, technology and applications. |
series2 | Computer science, technology and applications |
spelling | Advances on processing for multiple carrier schemes : OFDM & OFDMA / Faouzi Bader, Nizar Zorba, editors. New York : Nova Science Publishers, c2012. 1 online resource (ix, 466 p.). text txt rdacontent computer c rdamedia online resource cr rdacarrier Computer science, technology and applications Includes bibliographical references and index. Description based on print version record and CIP data provided by publisher; resource not viewed. ADVANCES ON PROCESSING FOR MULTIPLE CARRIER SCHEMES OFDM & OFDMA; ADVANCES ON PROCESSING FOR MULTIPLE CARRIER SCHEMES OFDM & OFDMA; CONTENTS ; PREFACE ; INTRODUCTION TO WIRELESS MULTI-CARRIER SCHEMES; Abstract; 1. Introduction; 2. TransmissionoverWirelessChannels:TheMultipathEffect; 2.1. TheMultipathEffect; 2.2. ADiscrete-TimeSignalModel; 3. OrthogonalFrequencyDivisionMultiplexing; 3.1. TheCyclicPrefix; 3.2. OrthogonalFrequencyDivisionMultiplexing; 4. SingleCarrierwithFrequencyDomainEqualization; 5. FilterBanksMulti-carrierSystems; 5.1. IntroductiontoFBMC; 5.1.1. BasicDescriptionofFBMC. 5.1.2. MainDifferences5.2. ChoiceoftheFilterBank; 5.3. DetailedDescriptionofFBMCTransmission; 5.4. Equalization; 5.5.ComparisonResults; 5.6. Applications; 5.7. VariationsofFBMC; 6. Conclusions; References; PEAK-TO-AVERAGE POWER RATIO ISSUES FOR PULSE-SHAPED MULTICARRIER MODULATIONS ; ABSTRACT ; 1. INTRODUCTION ; 2. PULSE-SHAPED MULTICARRIER MODULATION ; 2.1. The Gabor Theory; 2.1.1. Definition ; 2.1.2. Time-Frequency Localization ; 2.1.3. The Balian-Low Theorem and its Consequences ; 2.2. OFDM ; 2.2.1. Formulation in the Continuous-Time Domain. 2.2.2. The OFDM Modulation in the Discrete Time Domain 2.2.3. The Limits of the OFDM Modulation ; 2.3. OFDM/OQAM ; 2.3.1. Continuous-Time Formulation ; 2.3.2. Link with the Gabor Theory ; 2.3.3. Discrete-Time Formulation ; 2.3.4. An Efficient Implementation of the Modulator/Demodulator ; 2.3.5. Conditions for Obtaining an Orthogonal OFDM/OQAM System ; 2.4. Oversampled OFDM ; 2.4.1. Link with the Gabor Theory ; 2.4.2. Continuous-Time Formulation ; 2.4.3. Discrete-Time Formulation ; 2.4.4. An Efficient Implementation of the Modulator/Demodulator. 2.4.5. Conditions for Obtaining an Orthogonal Oversampled OFDM System 2.5. A Unified Formulation ; 3. SOME PULSE SHAPE AND PROTOTYPE FILTER EXAMPLES ; 3.1. Definitions ; 3.1.1. Length of the Prototype Filter ; 3.1.2. Time-Frequency Localization ; 3.1.3. Out-of-Band Energy ; 3.2. Pulse Shapes -- CT Domain ; 3.2.1. Square Root of Raised Cosine (SRRC) ; 3.2.2. Isotropic Orthogonal Transform Algorithm (IOTA) ; 3.3. Prototype Filters -- DT Domain ; 3.3.1. Prototype Filters Optimized for the Time-Frequency Localization (TFL) ; 3.3.2. Prototype Filters Optimized for the Frequency Selectivity (FS) 4. POWER SPECTRAL DENSITY 4.1. Analytic Expression of the PSD ; 4.2. Simulation Results ; 5. ANALYSIS OF THE PAPR ; 5.1. Analysis of a Signal Sample ; 5.2. Approximation of the CCDF ; 5.3. Optimization of the CCDF of the PAPR ; 5.3.1. Lemmas ; 5.3.2. Optimization Problem ; 5.3.3. Application to Pulse-Shaped MCM ; 5.3.3.1. OFDM/OQAM ; 5.3.3.2. Oversampled OFDM ; 5.4. A distance from the Optimal Case -- The Parameter ; 6. PAPR REDUCTION ; 6.1. Selective Mapping for OFDM ; 6.2. The OSLM Technique ; 6.2.1. Description of the Algorithm ; 6.2.2. Modulator/Demodulator Block Diagram. Orthogonal frequency division multiplexing. http://id.loc.gov/authorities/subjects/sh2005002695 Multiple access protocols (Computer network protocols) http://id.loc.gov/authorities/subjects/sh2006001631 Multiplexage par répartition orthogonale de la fréquence. Protocoles à accès multiple (Protocoles de réseaux d'ordinateurs) TECHNOLOGY & ENGINEERING Mobile & Wireless Communications. bisacsh TECHNOLOGY & ENGINEERING Radio. bisacsh Multiple access protocols (Computer network protocols) fast Orthogonal frequency division multiplexing fast Bader, Faouzi. Zorba, Nizar. has work: Advances on processing for multiple carrier schemes (Text) https://id.oclc.org/worldcat/entity/E39PCFFTw8FkYMXKx4DWypXGHC https://id.oclc.org/worldcat/ontology/hasWork Print version: Advances on processing for multiple carrier schemes New York : Nova Science Publishers, c2012. 9781614706342 (hardcover) (DLC) 2011048492 Computer science, technology and applications. |
spellingShingle | Advances on processing for multiple carrier schemes : OFDM & OFDMA / Computer science, technology and applications. ADVANCES ON PROCESSING FOR MULTIPLE CARRIER SCHEMES OFDM & OFDMA; ADVANCES ON PROCESSING FOR MULTIPLE CARRIER SCHEMES OFDM & OFDMA; CONTENTS ; PREFACE ; INTRODUCTION TO WIRELESS MULTI-CARRIER SCHEMES; Abstract; 1. Introduction; 2. TransmissionoverWirelessChannels:TheMultipathEffect; 2.1. TheMultipathEffect; 2.2. ADiscrete-TimeSignalModel; 3. OrthogonalFrequencyDivisionMultiplexing; 3.1. TheCyclicPrefix; 3.2. OrthogonalFrequencyDivisionMultiplexing; 4. SingleCarrierwithFrequencyDomainEqualization; 5. FilterBanksMulti-carrierSystems; 5.1. IntroductiontoFBMC; 5.1.1. BasicDescriptionofFBMC. 5.1.2. MainDifferences5.2. ChoiceoftheFilterBank; 5.3. DetailedDescriptionofFBMCTransmission; 5.4. Equalization; 5.5.ComparisonResults; 5.6. Applications; 5.7. VariationsofFBMC; 6. Conclusions; References; PEAK-TO-AVERAGE POWER RATIO ISSUES FOR PULSE-SHAPED MULTICARRIER MODULATIONS ; ABSTRACT ; 1. INTRODUCTION ; 2. PULSE-SHAPED MULTICARRIER MODULATION ; 2.1. The Gabor Theory; 2.1.1. Definition ; 2.1.2. Time-Frequency Localization ; 2.1.3. The Balian-Low Theorem and its Consequences ; 2.2. OFDM ; 2.2.1. Formulation in the Continuous-Time Domain. 2.2.2. The OFDM Modulation in the Discrete Time Domain 2.2.3. The Limits of the OFDM Modulation ; 2.3. OFDM/OQAM ; 2.3.1. Continuous-Time Formulation ; 2.3.2. Link with the Gabor Theory ; 2.3.3. Discrete-Time Formulation ; 2.3.4. An Efficient Implementation of the Modulator/Demodulator ; 2.3.5. Conditions for Obtaining an Orthogonal OFDM/OQAM System ; 2.4. Oversampled OFDM ; 2.4.1. Link with the Gabor Theory ; 2.4.2. Continuous-Time Formulation ; 2.4.3. Discrete-Time Formulation ; 2.4.4. An Efficient Implementation of the Modulator/Demodulator. 2.4.5. Conditions for Obtaining an Orthogonal Oversampled OFDM System 2.5. A Unified Formulation ; 3. SOME PULSE SHAPE AND PROTOTYPE FILTER EXAMPLES ; 3.1. Definitions ; 3.1.1. Length of the Prototype Filter ; 3.1.2. Time-Frequency Localization ; 3.1.3. Out-of-Band Energy ; 3.2. Pulse Shapes -- CT Domain ; 3.2.1. Square Root of Raised Cosine (SRRC) ; 3.2.2. Isotropic Orthogonal Transform Algorithm (IOTA) ; 3.3. Prototype Filters -- DT Domain ; 3.3.1. Prototype Filters Optimized for the Time-Frequency Localization (TFL) ; 3.3.2. Prototype Filters Optimized for the Frequency Selectivity (FS) 4. POWER SPECTRAL DENSITY 4.1. Analytic Expression of the PSD ; 4.2. Simulation Results ; 5. ANALYSIS OF THE PAPR ; 5.1. Analysis of a Signal Sample ; 5.2. Approximation of the CCDF ; 5.3. Optimization of the CCDF of the PAPR ; 5.3.1. Lemmas ; 5.3.2. Optimization Problem ; 5.3.3. Application to Pulse-Shaped MCM ; 5.3.3.1. OFDM/OQAM ; 5.3.3.2. Oversampled OFDM ; 5.4. A distance from the Optimal Case -- The Parameter ; 6. PAPR REDUCTION ; 6.1. Selective Mapping for OFDM ; 6.2. The OSLM Technique ; 6.2.1. Description of the Algorithm ; 6.2.2. Modulator/Demodulator Block Diagram. Orthogonal frequency division multiplexing. http://id.loc.gov/authorities/subjects/sh2005002695 Multiple access protocols (Computer network protocols) http://id.loc.gov/authorities/subjects/sh2006001631 Multiplexage par répartition orthogonale de la fréquence. Protocoles à accès multiple (Protocoles de réseaux d'ordinateurs) TECHNOLOGY & ENGINEERING Mobile & Wireless Communications. bisacsh TECHNOLOGY & ENGINEERING Radio. bisacsh Multiple access protocols (Computer network protocols) fast Orthogonal frequency division multiplexing fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh2005002695 http://id.loc.gov/authorities/subjects/sh2006001631 |
title | Advances on processing for multiple carrier schemes : OFDM & OFDMA / |
title_auth | Advances on processing for multiple carrier schemes : OFDM & OFDMA / |
title_exact_search | Advances on processing for multiple carrier schemes : OFDM & OFDMA / |
title_full | Advances on processing for multiple carrier schemes : OFDM & OFDMA / Faouzi Bader, Nizar Zorba, editors. |
title_fullStr | Advances on processing for multiple carrier schemes : OFDM & OFDMA / Faouzi Bader, Nizar Zorba, editors. |
title_full_unstemmed | Advances on processing for multiple carrier schemes : OFDM & OFDMA / Faouzi Bader, Nizar Zorba, editors. |
title_short | Advances on processing for multiple carrier schemes : |
title_sort | advances on processing for multiple carrier schemes ofdm ofdma |
title_sub | OFDM & OFDMA / |
topic | Orthogonal frequency division multiplexing. http://id.loc.gov/authorities/subjects/sh2005002695 Multiple access protocols (Computer network protocols) http://id.loc.gov/authorities/subjects/sh2006001631 Multiplexage par répartition orthogonale de la fréquence. Protocoles à accès multiple (Protocoles de réseaux d'ordinateurs) TECHNOLOGY & ENGINEERING Mobile & Wireless Communications. bisacsh TECHNOLOGY & ENGINEERING Radio. bisacsh Multiple access protocols (Computer network protocols) fast Orthogonal frequency division multiplexing fast |
topic_facet | Orthogonal frequency division multiplexing. Multiple access protocols (Computer network protocols) Multiplexage par répartition orthogonale de la fréquence. Protocoles à accès multiple (Protocoles de réseaux d'ordinateurs) TECHNOLOGY & ENGINEERING Mobile & Wireless Communications. TECHNOLOGY & ENGINEERING Radio. Orthogonal frequency division multiplexing |
work_keys_str_mv | AT baderfaouzi advancesonprocessingformultiplecarrierschemesofdmofdma AT zorbanizar advancesonprocessingformultiplecarrierschemesofdmofdma |