DocumentCode :
36314
Title :
Queue-Aware Transmission Scheduling for Cooperative Wireless Communications
Author :
Ning Wang ; Gulliver, T. Aaron
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Victoria, Victoria, BC, Canada
Volume :
63
Issue :
4
fYear :
2015
fDate :
Apr-15
Firstpage :
1149
Lastpage :
1161
Abstract :
Queue-aware transmission scheduling for cooperative wireless communications with sub-fading-block scheduling to better balance load and capacity in low mobility environments is investigated. The scheduling problem for joint cooperation scheduling and resource allocation is formulated as a constrained nonlinear integer optimization problem over an integer convex set based on a source buffer queueing analysis. It is shown that with queue-aware scheduling, the state transition matrix of the source buffer queue has a highly dynamic form. As a result, the objective function of the optimization problem does not have an analytic form in general. The constrained discrete Rosenbrock search algorithm, which is a gradient-free directed discrete search algorithm, is employed to solve the nonlinear integer problem. The output of the directed integer search algorithm is used for queue-aware transmission scheduling for the cooperative system. Numerical results are presented which show that, for cooperative transmission scheduling, the Rosenbrock search based queue-aware algorithm significantly outperforms the equal partitioning, random partitioning, and gradient-based algorithms under quasi-static channel assumptions. Under practical system conditions with unsaturated traffic, the proposed queue-aware scheduling scheme achieves the true optima, and maintains a large stability region for the buffer queue, over a wide range of channel and traffic conditions. It is also shown that when fading channel dynamics are taken into consideration, the performance of the proposed queue-aware scheduling algorithm significantly outperforms fixed relaying and fixed direct transmission channel-aware scheduling strategies.
Keywords :
cooperative communication; fading channels; integer programming; nonlinear programming; queueing theory; search problems; constrained nonlinear integer optimization problem; cooperative wireless communications; discrete Rosenbrock search algorithm; fading channel dynamics; gradient-free directed discrete search algorithm; integer convex set; joint cooperation scheduling and resource allocation; queue-aware transmission scheduling; source buffer queueing analysis; state transition matrix; sub-fading-block scheduling; Fading; Heuristic algorithms; Relays; Resource management; Scheduling; Wireless networks; Cooperative communications; QoS provisioning; cooperative communications; discrete search; modulation and coding scheme; nonlinear integer programming; queue-aware scheduling; sub-fading-block scheduling;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2015.2396916
Filename :
7021949
Link To Document :
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