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Uplink scheduling for joint wireless orthogonal frequency and time division multiple access networks

机译:联合无线正交频分时分多址网络的上行调度

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In this paper, we present a deterministic resource allocation model for a hybrid uplink wireless orthogonal frequency and time division multiple access network. Since the input data of the model may be affected by uncertainty, we further consider a stochastic formulation of the problem which we transform into an equivalent deterministic binary second-order conic program (SOCP). Subsequently, we use this binary SOCP to derive an equivalent integer linear programming formulation. The proposed models are aimed at maximizing the total bandwidth channel capacity subject to user power and sub-carrier assignment constraints while simultaneously scheduling users in time. As such, the models are best suited for non-real-time applications where sub-channel multiuser diversity can be further exploited simultaneously in frequency and time domains. Finally, in view of the large execution times required by CPLEX to solve the proposed models, we propose a variable neighborhood search metaheuristic procedure. Our numerical results show tight bounds and near optimal solutions for most of the instances when compared to the optimal solution of the problem. Moreover, we obtain better feasible solutions than CPLEX in the stochastic case. Finally, these bounds are obtained at a very low computational cost.
机译:在本文中,我们为混合上行链路无线正交频分和时分多址网络提供了一种确定性资源分配模型。由于模型的输入数据可能会受到不确定性的影响,因此我们进一步考虑了问题的随机表述,将其转化为等效的确定性二阶二阶圆锥程序(SOCP)。随后,我们使用该二进制SOCP导出等效的整数线性规划公式。所提出的模型旨在最大化受用户功率和子载波分配约束的总带宽信道容量,同时及时调度用户。这样,该模型最适合非实时应用,在非实时应用中,可以在频域和时域中同时利用子信道多用户分集。最后,鉴于CPLEX解决该模型所需的执行时间较长,我们提出了一种可变邻域搜索元启发式方法。与问题的最佳解决方案相比,我们的数值结果显示了大多数情况下的紧边界和接近最佳的解决方案。此外,在随机情况下,我们获得比CPLEX更好的可行解决方案。最后,以非常低的计算成本获得这些界限。

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