DocumentCode
64120
Title
Service-Outage Capacity Maximization in Cognitive Radio for Parallel Fading Channels
Author
Limmanee, Apirath ; Dey, Shuvashis ; Evans, Jamie S.
Author_Institution
Dept. of Electr. & Electron. Eng., Univ. of Melbourne, Melbourne, VIC, Australia
Volume
61
Issue
2
fYear
2013
fDate
Feb-13
Firstpage
507
Lastpage
520
Abstract
This paper focuses on a cognitive radio network consisting of a secondary user (SU) equipped with orthogonal frequency-division multiplexing (OFDM) technology able to access N randomly fading frequency bands for transmitting delay-insensitive (e.g. data) as well as delay-sensitive (e.g. voice or video) data. Each band is licensed to a distinct delay-sensitive primary user (PU) interested in meeting a minimum rate guarantee for delay-sensitive services with a maximum allowable primary outage probability or a primary outage constraint (POC) . Typically, a PU is oblivious to the SU´s existence and has its own power policy based on the channel side information (CSI) of its direct gain between the PU transmitter and the PU receiver only. Under the assumption that the SU knows PUs´ power policies and CSI of the entire network, we solve the SU´s ergodic capacity maximization problem subject to SU´s average transmit power and outage probability constraints (SOC) and all POCs or the so-called service-outage based capacity maximization for SU with POCs. We use a rigorous probabilistic power allocation technique that allows us to derive optimal power policies applicable to both continuous and discrete fading channels. Also, a suboptimal power control policy is proposed in order to avoid the high computational complexity of the optimal policy when N is large. Numerical results are presented to illustrate the performance of the power allocation algorithms.
Keywords
OFDM modulation; channel capacity; cognitive radio; communication complexity; fading channels; probability; radio receivers; radio transmitters; CSI; OFDM technology; POC; PU power policy; PU receiver; PU transmitter; SOC; SU; average transmit power; channel side information; cognitive radio network; computational complexity; continuous fading channel; delay-insensitive data transmission; delay-sensitive primary user; delay-sensitive service; delay-sensitive video data; delay-sensitive voice data; discrete fading channel; ergodic capacity maximization problem; optimal power policy; orthogonal frequency-division multiplexing; outage probability constraint; parallel fading channel; primary outage constraint; probabilistic power allocation technique; randomly fading frequency band; secondary user; service-outage capacity maximization; suboptimal power control policy; Cognitive radio; Fading; Interference; OFDM; Power control; Probabilistic logic; Resource management; Cognitive radio; ergodic capacity; outage probability; parallel fading channels; power control;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2012.101812.110747
Filename
6341770
Link To Document