Title :
Hierarchical queue-length-aware power control for delay-sensitive applications over wireless networks
Author :
Li, Xiaochen ; Dong, Xihua ; Wu, Dapeng
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Florida, Gainesville, FL
Abstract :
We consider the problem of optimal power control for quality-of-service-assured wireless communication. The quality of service (QoS) measures of our consideration are a triplet of data rate, delay, and delay bound violation probability. Our target is to develop power control laws that can provide delay guarantees for real-time applications over wireless networks. The power control laws that aim at optimizing certain physical-layer performance measures, usually adapt the transmission power based on the channel gain; we call these ldquochannel-gain-basedrdquo (CGB) power control (PC). In this paper, we show that CGB-PC laws achieve poor link-layer delay performance. To improve the performance, we propose a novel scheme called hierarchical queue-length-aware (HQLA) power control. The key idea is to combine the best features of the two PC laws, i.e., a given CGB-PC law and the clear-queue PC law; here, the clear-queue PC is defined as a PC law that uses a transmission power just enough to empty the queue at the link layer. We analyze our proposed HQLA-PC scheme by the matrix-geometric method. The analysis agrees well with the simulation results. More importantly, our simulation results show that the proposed HQLA-PC achieves significant gain over the CGB-PC scheme, for tight delay requirements.
Keywords :
geometry; matrix algebra; power control; quality of service; queueing theory; radio networks; QoS; channel gain-based power control; delay-sensitive applications; hierarchical queue-length-aware power control; matrix-geometric method; quality of service; wireless networks; Analytical models; Bit error rate; Delay; Gain measurement; Performance gain; Power control; Power measurement; Probability; Quality of service; Wireless networks; Delay constrained communication; matrix-geometric method; power control; queuing;
Conference_Titel :
Military Communications Conference, 2008. MILCOM 2008. IEEE
Conference_Location :
San Diego, CA
Print_ISBN :
978-1-4244-2676-8
Electronic_ISBN :
978-1-4244-2677-5
DOI :
10.1109/MILCOM.2008.4753564