Stochastic and semidefinite optimization for scheduling in orthogonal frequency division multiple access networks
In this paper, we propose stochastic binary quadratic programs for the scheduling resource allocation process of a wireless orthogonal frequency division multiple access network. More precisely, we formulate a two-stage stochastic model, then we further extend the two-stage model by introducing a kn...
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Published in | Journal of scheduling Vol. 17; no. 5; pp. 445 - 469 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Boston
Springer US
01.10.2014
Springer Nature B.V Springer Verlag |
Subjects | |
Online Access | Get full text |
ISSN | 1094-6136 1099-1425 |
DOI | 10.1007/s10951-013-0333-1 |
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Abstract | In this paper, we propose stochastic binary quadratic programs for the scheduling resource allocation process of a wireless orthogonal frequency division multiple access network. More precisely, we formulate a two-stage stochastic model, then we further extend the two-stage model by introducing a knapsack probabilistic constrained approach, and finally we propose a multi-stage stochastic program for this problem. The models are aimed at minimizing the total power consumption of the network at each time slot of the scheduling process subject to user bit rates, sub-carrier and modulation linear constraints. In order to compute lower bounds, we derive linear and semidefinite programming relaxations for each of the proposed models. The bounds are also compared with a basic variable neighborhood search metaheuristic approach. Numerical results show tight lower bounds for the semidefinite relaxations when compared to the linear ones and with the metaheuristic. Moreover, near optimal solutions are found with the semidefinite relaxations for the two-stage model without using probabilistic constraints and for the multi-stage program as well. |
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AbstractList | In this paper, we propose stochastic binary quadratic programs for the scheduling resource allocation process of a wireless orthogonal frequency division multiple access network. More precisely, we formulate a two-stage stochastic model, then we further extend the two-stage model by introducing a knapsack probabilistic constrained approach, and finally we propose a multi-stage stochastic program for this problem. The models are aimed at minimizing the total power consumption of the network at each time slot of the scheduling process subject to user bit rates, sub-carrier and modulation linear constraints. In order to compute lower bounds, we derive linear and semidefinite programming relaxations for each of the proposed models. The bounds are also compared with a basic variable neighborhood search metaheuristic approach. Numerical results show tight lower bounds for the semidefinite relaxations when compared to the linear ones and with the metaheuristic. Moreover, near optimal solutions are found with the semidefinite relaxations for the two-stage model without using probabilistic constraints and for the multi-stage program as well. In this paper, we propose stochastic binary quadratic programs for the scheduling resource allocation process of a wireless orthogonal frequency division multiple access network. More precisely, we formulate a two-stage stochastic model, then we further extend the two-stage model by introducing a knapsack probabilistic constrained approach, and finally we propose a multi-stage stochastic program for this problem. The models are aimed at minimizing the total power consumption of the network at each time slot of the scheduling process subject to user bit rates, sub-carrier and modulation linear constraints. In order to compute lower bounds, we derive linear and semidefinite programming relaxations for each of the proposed models. The bounds are also compared with a basic variable neighborhood search metaheuristic approach. Numerical results show tight lower bounds for the semidefinite relaxations when compared to the linear ones and with the metaheuristic. Moreover, near optimal solutions are found with the semidefinite relaxations for the two-stage model without using probabilistic constraints and for the multi-stage program as well.[PUBLICATION ABSTRACT] |
Author | Adasme, Pablo Lisser, Abdel |
Author_xml | – sequence: 1 givenname: Pablo surname: Adasme fullname: Adasme, Pablo email: pablo.adasme@usach.cl organization: Departamento de Ingeniería Eléctrica, Universidad de Santiago de Chile – sequence: 2 givenname: Abdel surname: Lisser fullname: Lisser, Abdel organization: Laboratoire de Recherche en Informatique, Université Paris-Sud XI |
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CitedBy_id | crossref_primary_10_1007_s10951_015_0442_0 crossref_primary_10_1016_j_ejor_2016_01_020 crossref_primary_10_1016_j_comnet_2016_11_011 crossref_primary_10_1007_s11276_023_03295_8 |
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Keywords | Semidefinite programming Resource allocation in OFDMA Quadratic programming Stochastic programming |
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SubjectTerms | Artificial Intelligence Bandwidths Business and Management Calculus of Variations and Optimal Control; Optimization Computer Science Frequency division multiple access Linear programming Lower bounds Mathematical models Mathematics Networks Operations Research Operations Research/Decision Theory Optimization Optimization and Control Optimization techniques Power Probability Probability theory Quadratic programming Random variables Scheduling Stochasticity Studies Supply Chain Management Wave division multiplexing Wireless networks |
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Title | Stochastic and semidefinite optimization for scheduling in orthogonal frequency division multiple access networks |
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