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Achieving the Nash bargaining solution in OFDMA uplink using distributed scheduling with limited feedback

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dc.contributor.author Yaacoub E.
dc.contributor.author Dawy Z.
dc.contributor.editor
dc.date 2011
dc.date.accessioned 2017-09-07T07:07:45Z
dc.date.available 2017-09-07T07:07:45Z
dc.date.issued 2011
dc.identifier 10.1016/j.aeue.2010.03.007
dc.identifier.isbn
dc.identifier.issn 14348411
dc.identifier.uri http://hdl.handle.net/10938/11567
dc.description.abstract The Nash bargaining solution in OFDMA uplink scheduling is investigated. The problem is equivalent to proportional fair scheduling. The logarithm of throughput, when used as a utility function, ensures proportional fairness and thus is equivalent to the Nash bargaining solution. An algorithm to implement the solution in the centralized and distributed scenarios is proposed. In the centralized scheduling scenario, the base station is assumed to enforce the cooperative solution. In the distributed scheduling scenario, cooperation between mobile users is implemented using limited feedback of channel state information. A quantization scheme for channel state information is proposed and shown to achieve results close to optimal with a limited number of feedback bits. In fact, only one bit feedback per subcarrier was sufficient to achieve near-optimal results with proportional fair scheduling. © 2010 Elsevier GmbH All rights reserved.
dc.format.extent
dc.format.extent Pages: (320-330)
dc.language English
dc.publisher JENA
dc.relation.ispartof Publication Name: AEU - International Journal of Electronics and Communications; Publication Year: 2011; Volume: 65; no. 4; Pages: (320-330);
dc.relation.ispartofseries
dc.relation.uri
dc.source Scopus
dc.subject.other
dc.title Achieving the Nash bargaining solution in OFDMA uplink using distributed scheduling with limited feedback
dc.type Article
dc.contributor.affiliation Yaacoub, E., Department of Electrical and Computer Engineering, American University of Beirut, P.O. Box 11-0236, Beirut, Lebanon
dc.contributor.affiliation Dawy, Z., Department of Electrical and Computer Engineering, American University of Beirut, P.O. Box 11-0236, Beirut, Lebanon
dc.contributor.authorAddress Yaacoub, E.; Department of Electrical and Computer Engineering, American University of Beirut, P.O. Box 11-0236, Beirut, Lebanon; email: eey00@aub.edu.lb
dc.contributor.authorCorporate University: American University of Beirut; Faculty: Faculty of Engineering and Architecture; Department: Electrical and Computer Engineering;
dc.contributor.authorDepartment Electrical and Computer Engineering
dc.contributor.authorDivision
dc.contributor.authorEmail eey00@aub.edu.lb; zd03@aub.edu.lb
dc.contributor.authorFaculty Faculty of Engineering and Architecture
dc.contributor.authorInitials Yaacoub, E
dc.contributor.authorInitials Dawy, Z
dc.contributor.authorOrcidID
dc.contributor.authorReprintAddress Yaacoub, E (reprint author), Amer Univ Beirut, Dept Elect and Comp Engn, POB 11-0236, Beirut, Lebanon.
dc.contributor.authorResearcherID
dc.contributor.authorUniversity American University of Beirut
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dc.description.citedCount 9
dc.description.citedTotWOSCount 7
dc.description.citedWOSCount 7
dc.format.extentCount 11
dc.identifier.articleNo
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dc.identifier.pubmedID
dc.identifier.scopusID 79951678410
dc.identifier.url
dc.publisher.address OFFICE JENA, P O BOX 100537, 07705 JENA, GERMANY
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dc.relation.ispartofConferenceCode
dc.relation.ispartofConferenceDate
dc.relation.ispartofConferenceHosting
dc.relation.ispartofConferenceLoc
dc.relation.ispartofConferenceSponsor
dc.relation.ispartofConferenceTitle
dc.relation.ispartofFundingAgency
dc.relation.ispartOfISOAbbr AEU-Int. J. Electron. Commun.
dc.relation.ispartOfIssue 4
dc.relation.ispartOfPart
dc.relation.ispartofPubTitle AEU - International Journal of Electronics and Communications
dc.relation.ispartofPubTitleAbbr AEU Int. J. Electron. Commun.
dc.relation.ispartOfSpecialIssue
dc.relation.ispartOfSuppl
dc.relation.ispartOfVolume 65
dc.source.ID WOS:000288625500007
dc.type.publication Journal
dc.subject.otherAuthKeyword Nash bargaining solution
dc.subject.otherAuthKeyword OFDMA
dc.subject.otherAuthKeyword Proportional fair
dc.subject.otherAuthKeyword Scheduling
dc.subject.otherAuthKeyword Uplink
dc.subject.otherChemCAS
dc.subject.otherIndex Centralized scheduling
dc.subject.otherIndex Distributed scheduling
dc.subject.otherIndex Feedback bits
dc.subject.otherIndex Limited feedback
dc.subject.otherIndex Mobile users
dc.subject.otherIndex Nash bargaining solution
dc.subject.otherIndex OFDMA
dc.subject.otherIndex OFDMA uplinks
dc.subject.otherIndex Optimal results
dc.subject.otherIndex Proportional fair
dc.subject.otherIndex Proportional fair scheduling
dc.subject.otherIndex Proportional fairness
dc.subject.otherIndex Quantization schemes
dc.subject.otherIndex Subcarrier
dc.subject.otherIndex Uplink
dc.subject.otherIndex Utility functions
dc.subject.otherIndex Algebra
dc.subject.otherIndex Channel state information
dc.subject.otherIndex Feedback
dc.subject.otherIndex Global system for mobile communications
dc.subject.otherIndex Optimization
dc.subject.otherIndex Real time systems
dc.subject.otherIndex State feedback
dc.subject.otherIndex Frequency division multiple access
dc.subject.otherKeywordPlus WIRELESS NETWORKS
dc.subject.otherKeywordPlus POWER ALLOCATION
dc.subject.otherKeywordPlus FAIRNESS
dc.subject.otherKeywordPlus SYSTEMS
dc.subject.otherKeywordPlus PERFORMANCE
dc.subject.otherKeywordPlus SUBCARRIER
dc.subject.otherKeywordPlus SCHEME
dc.subject.otherKeywordPlus ACCESS
dc.subject.otherWOS Engineering, Electrical and Electronic
dc.subject.otherWOS Telecommunications


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