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Resource Allocation for OFDMA-Based Cognitive Radio Networks with Application to H.264 Scalable Video Transmission

机译:基于OFDMA的认知无线电网络的资源分配及其在H.264可扩展视频传输中的应用

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摘要

Resource allocation schemes for orthogonal frequency division multiple access- (OFDMA-) based cognitive radio (CR) networks that impose minimum and maximum rate constraints are considered. To demonstrate the practical application of such systems, we consider the transmission of scalable video sequences. An integer programming (IP) formulation of the problem is presented, which provides the optimal solution when solved using common discrete programming methods. Due to the computational complexity involved in such an approach and its unsuitability for dynamic cognitive radio environments, we propose to use the method of lift-and-project to obtain a stronger formulation for the resource allocation problem such that the integrality gap between the integer program and its linear relaxation is reduced. A simple branching operation is then performed that eliminates any noninteger values at the output of the linear program solvers. Simulation results demonstrate that this simple technique results in solutions very close to the optimum.
机译:考虑了施加最小和最大速率约束的基于正交频分多址(OFDMA)的认知无线电(CR)网络的资源分配方案。为了演示此类系统的实际应用,我们考虑了可伸缩视频序列的传输。提出了问题的整数编程(IP)公式,当使用常见的离散编程方法求解时,它将提供最佳的解决方案。由于这种方法涉及的计算复杂性及其不适用于动态认知无线电环境,因此我们建议使用提升和投影方法来为资源分配问题获得更强的公式,以使整数程序之间的完整性差距线性松弛减少。然后执行简单的分支操作,以消除线性程序求解器输出处的任何非整数值。仿真结果表明,这种简单的技术可以使解决方案非常接近最优值。

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