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Joint Spectrum Allocation and Power Control for Multihop Cognitive Radio Networks

机译:多跳认知无线电网络的联合频谱分配和功率控制

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We propose a new framework of joint spectrum allocation and power control to utilize open spectrum bands in cognitive radio networks (CRNs) by considering both interference temperature constraints and spectrum dynamics. We first address a simpler problem for the case of a single flow. A TDM-based power-control strategy is adopted to achieve maximum end-to-end throughput by choosing an appropriate multihop route and spectrum combination for each single flow. Then, the simpler solution is extended to the multiflow case in which interflow interference and cumulative interference temperature must be considered. Considering the overhead of switching route and spectrum, the optimal waiting time before making a switch is derived. Our in-depth simulation study has shown that the proposed algorithms utilize spectrum more efficiently than other existing algorithms.
机译:我们提出了一种联合频谱分配和功率控制的新框架,以通过考虑干扰温度约束和频谱动力学来利用认知无线电网络(CRN)中的开放频谱带。我们首先针对单个流程解决一个更简单的问题。通过为每个单流选择适当的多跳路由和频谱组合,采用基于TDM的功率控制策略来实现最大的端到端吞吐量。然后,将更简单的解决方案扩展到必须考虑流间干扰和累积干扰温度的多流情况。考虑到交换路径和频谱的开销,得出进行交换之前的最佳等待时间。我们的深入仿真研究表明,所提出的算法比其他现有算法更有效地利用频谱。

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