TY - JOUR
T1 - Primary user localisation and uplink resource allocation in orthogonal frequency division multiple access cognitive radio systems
AU - Nam, Haewoon
AU - Saeed, Nasir
AU - Ben-Ghorbel, Mand
AU - Alouini, Mohamed Slim
N1 - Publisher Copyright:
© The Institution of Engineering and Technology 2015.
PY - 2015/5/21
Y1 - 2015/5/21
N2 - In cognitive radio networks, secondary users (SUs) can share spectrum with primary users (PUs) under the condition that no interference is caused to the PUs. To evaluate the interference imposed to the PUs, the cognitive systems discussed in the literature usually assume that the channel state information (CSI) of the link from a secondary transmitter to a primary receiver (interference link) is known at the secondary transmitter. However, this assumption may often be impractical in cognitive radio systems, since the PUs need to be oblivious to the presence of the SUs. The authors first discuss PU localisation and then introduce an uplink resource allocation algorithm for orthogonal frequency division multiple access-based cognitive radio systems, where relative location information between primary and SUs is used instead of CSI of the interference link to estimate the interference. Numerical and simulation results show that it is indeed effective to use location information as a part of resource allocation and thus a near-optimal capacity is achieved.
AB - In cognitive radio networks, secondary users (SUs) can share spectrum with primary users (PUs) under the condition that no interference is caused to the PUs. To evaluate the interference imposed to the PUs, the cognitive systems discussed in the literature usually assume that the channel state information (CSI) of the link from a secondary transmitter to a primary receiver (interference link) is known at the secondary transmitter. However, this assumption may often be impractical in cognitive radio systems, since the PUs need to be oblivious to the presence of the SUs. The authors first discuss PU localisation and then introduce an uplink resource allocation algorithm for orthogonal frequency division multiple access-based cognitive radio systems, where relative location information between primary and SUs is used instead of CSI of the interference link to estimate the interference. Numerical and simulation results show that it is indeed effective to use location information as a part of resource allocation and thus a near-optimal capacity is achieved.
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U2 - 10.1049/iet-com.2014.1002
DO - 10.1049/iet-com.2014.1002
M3 - Article
AN - SCOPUS:84928887022
SN - 1751-8628
VL - 9
SP - 1131
EP - 1137
JO - IET Communications
JF - IET Communications
IS - 8
ER -