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    AuthorAbdallah, Mohamed M. (2)
    Alouini, Mohamed-Slim (2)
    Bouida, Zied (2)
    Qaraqe, Khalid A. (2)
    Department
    Communication Theory Lab (2)
    Computer, Electrical and Mathematical Sciences and Engineering (CEMSE) Division (2)
    Electrical Engineering Program (2)
    Physical Sciences and Engineering (PSE) Division (2)Journal2011 IEEE Vehicular Technology Conference (VTC Fall) (1)Proceedings of the 6th International ICST Conference on Cognitive Radio Oriented Wireless Networks and Communications (1)PublisherEuropean Alliance for Innovation n.o. (1)Institute of Electrical and Electronics Engineers (IEEE) (1)SubjectAdaptive Modulation (2)
    Spectrum Sharing (2)
    Switched Diversity (2)
    and Performance Analysis (1)Performance Analysis (1)View MoreTypeConference Paper (2)Year (Issue Date)
    2011 (2)
    Item AvailabilityMetadata Only (2)

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    Joint switched transmit diversity and adaptive modulation in spectrum sharing systems

    Qaraqe, Khalid A.; Bouida, Zied; Abdallah, Mohamed M.; Alouini, Mohamed-Slim (Proceedings of the 6th International ICST Conference on Cognitive Radio Oriented Wireless Networks and Communications, European Alliance for Innovation n.o., 2011) [Conference Paper]
    Under the scenario of an underlay cognitive radio network, we propose in this paper an adaptive scheme using switched transmit diversity and adaptive modulation in order to minimize the average number of switched branches at the secondary transmitter while increasing the capacity of the secondary link. The proposed switching efficient scheme (SES) uses the scan and wait (SWC) combining technique where a transmission occurs only when a branch with an acceptable performance is found, otherwise data is buffered. In our scheme, the modulation constellation size and the used transmit branch are determined to achieve the highest spectral efficiency with a minimum processing power, given the fading channel conditions, the required error rate performance, and a peak interference constraint to the primary receiver. Selected numerical examples show that the SES scheme minimizes the average number of switched branches for the average and the high secondary signal-to-noise ratio range. This improvement comes at the expense of a small delay introduced by the SWC technique. For reference, we also compare the performance of the SES scheme to the selection diversity scheme (SDS) where the best branch verifying the modulation mode and the interference constraint is always selected. © 2011 ICST.
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    Spectrally efficient switched transmit diversity for spectrum sharing systems

    Bouida, Zied; Abdallah, Mohamed M.; Qaraqe, Khalid A.; Alouini, Mohamed-Slim (2011 IEEE Vehicular Technology Conference (VTC Fall), Institute of Electrical and Electronics Engineers (IEEE), 2011-09) [Conference Paper]
    Under the scenario of an underlay cognitive radio network, we propose in this paper an adaptive scheme using switched transmit diversity and adaptive modulation in order to increase the spectral efficiency of the secondary link. The proposed bandwidth efficient scheme (BES) uses the scan and wait (SWC) combining technique where a transmission occurs only when a branch with an acceptable performance is found, otherwise data is buffered. In our scheme, the modulation constellation size and the used transmit branch are determined to achieve the highest spectral efficiency given the fading channel conditions, the required error rate performance, and a peak interference constraint to the primary receiver. Selected numerical examples show that the BES scheme increases the capacity of the secondary link when compared to an existing switching efficient scheme (SES). This spectral efficiency comes at the expense of an increased average number of switched branches and thus an increased average delay. © 2011 IEEE.
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