Title :
Scheduling in Multi-Channel Wireless Networks: Rate Function Optimality in the Small-Buffer Regime
Author :
Bodas, Shreeshankar ; Shakkottai, Sanjay ; Lei Ying ; Srikant, R.
Author_Institution :
Qualcomm, Inc., Bridgewater, NJ, USA
Abstract :
The problem of designing scheduling algorithms for a multichannel (e.g., orthogonal frequency division multiplexing-based) wireless downlink network is considered. The classic MaxWeight algorithm, although throughput-optimal, results in a very poor per-user delay performance in such systems. Hence, an alternate class of algorithms called iterated longest queues first (iLQF) is proposed for overcoming this issue. The iLQF-class algorithms are analyzed in a number of different system configurations. A particular algorithm in this class, called iLQF with pullup, is shown to be rate function optimal for the problem in an appropriate large deviations setting, and is shown to result in a strictly positive value of the rate function for a number of modifications to the basic system model. Thus, the proposed algorithm yields provable performance guarantees. The analytic results are confirmed through simulations.
Keywords :
OFDM modulation; channel allocation; queueing theory; scheduling; telecommunication power management; wireless channels; classic MaxWeight algorithm; iLQF class algorithm; iterated longest queues first; multichannel wireless network scheduling; orthogonal frequency division multiplexing; per-user delay performance; rate function optimality; small buffer regime; wireless downlink network; Downlink; OFDM; Queueing analysis; Resource management; Scheduling algorithms; Servers; Wireless networks; Delay optimality; large deviations; perfect matchings; random bipartite graphs; scheduling algorithms; small buffer;
Journal_Title :
Information Theory, IEEE Transactions on
DOI :
10.1109/TIT.2013.2293216