Title :
Distributed Control of Multiple Cognitive Radio Overlay for Primary Queue Stability
Author :
Lapiccirella, F.E. ; Xin Liu ; Zhi Ding
Author_Institution :
Univ. of California, Davis, Davis, CA, USA
Abstract :
In this paper, we investigate distributed control of multiple secondary users attempting to access the channel of a high priority primary user. Our aim is to maximize the sum cognitive (secondary) user throughput under the constraint of primary user´s queue stability. We consider the effect of primary user link adaptation that allows the primary transmitter (PTx) to adapt its transmission rate in response to the secondary interference-level at the primary receiver (PRx). To control the sum secondary interference to PRx beyond the traditional collision-avoidance paradigm, we propose a novel power-control algorithm for secondary nodes to function. To develop such a distributed algorithm and to improve secondary user adaptability, we allow secondary nodes to monitor primary´s radio link control information on the feedback channel. We present practical schemes that approximate the optimum solution without relying on global channel information at each secondary node.
Keywords :
cognitive radio; distributed algorithms; distributed control; feedback; power control; queueing theory; radio links; radio receivers; radio transmitters; radiofrequency interference; telecommunication congestion control; wireless channels; PRx; PTx; channel access; cognitive radio overlay; collision-avoidance paradigm; distributed algorithm; distributed control; feedback channel; global channel information; power-control algorithm; primary queue stability; primary radio link control information; primary receiver; primary transmitter; primary user link adaptation; secondary interference-level; secondary node; secondary user adaptability; sum cognitive secondary user throughput; sum secondary interference; transmission rate; Algorithm design and analysis; Cognitive radio; Interference; Optimization; Queueing analysis; Stability analysis; Throughput; Lyapunov optimization; Wireless networks; cognitive radios; multiple access control; wireless sensor networks;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2012.121112.111783