DocumentCode :
83319
Title :
Robust Utility Maximization and Admission Control for a MIMO Cognitive Radio Network
Author :
Huiqin Du ; Ratnarajah, Tharm
Author_Institution :
Sch. of Eng., Univ. of Edinburgh, Edinburgh, UK
Volume :
62
Issue :
4
fYear :
2013
fDate :
May-13
Firstpage :
1707
Lastpage :
1718
Abstract :
This paper considers a multiple-input-multiple-output (MIMO) cognitive radio network, in which a single primary user (PU) coexists with multiple secondary users (SUs). Standard cognitive radio techniques require perfect channel state information (CSI) and are sensitive to the errors in channel estimation. In practice, such errors are inevitable due to finite feedback resources, quantization errors, and other physical constraints. As a result, robustness has become a crucial issue. Under the assumption of norm-bounded channel imperfections, we develop a robust energy-aware design that strives to admit the maximum number of served SUs and enhance the transmit rate of the secondary links while using the least transmit power while imposing the upper limit of the interference temperature to the PU. A utility function is introduced to achieve the multi-objective function by dealing with the tradeoff between maximizing the transmit rate and minimizing the transmit power. Instead of using the deterministic target, the signal-to-interference-and-noise ratio (SINR) target becomes one of the ongoing optimization variables, which is dynamically adapted with the channel condition under the pre-specified bit-error-rate (BER) requirement, and acts as admission control implicitly, i.e., the cognitive link is not allowed to transmit as long as its SINR falls to zero. Due to its nonconvexity and NP-hardness, the underlying problem is reformulated in a semidefinite programming (SDP) form and solved via an iterative bisection search approach. Simulation results are provided to validate the robustness and efficiency of the proposed scheme.
Keywords :
MIMO communication; channel estimation; cognitive radio; error statistics; mathematical programming; radio links; radio networks; radiofrequency interference; robust control; telecommunication congestion control; wireless channels; BER; CSI; MIMO cognitive radio network; NP-hardness; PU; SDP; SINR; SU; admission control; bit-error-rate; channel estimation; channel state information; cognitive link; finite feedback resource; interference temperature; iterative bisection search approach; multiple secondary user; multiple-input multiple-output radio network; nonconvexity; normbounded channel imperfection; primary user; quantization error; robust energy-aware design; robust utility maximization; semidefinite programming; signal-to-interference-and-noise ratio; transmitting power; Admission control; Bit error rate; Cognitive radio; Interference; Optimization; Robustness; Signal to noise ratio; Adaptive modulation; admission control; iterative bisection search; semidefinite programming (SDP); utility maximization;
fLanguage :
English
Journal_Title :
Vehicular Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9545
Type :
jour
DOI :
10.1109/TVT.2012.2231103
Filename :
6373750
Link To Document :
بازگشت