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Spectrum-Efficient Resource Allocation in Multi-Radio Multi-Hop Cognitive Radio Networks

机译:多无线电多跳认知无线电网络中的频谱有效资源分配

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摘要

The multi-hop cognitive radio network (CRN) has attracted much attention in industry and academia because of its seamless wireless coverage by forming multi-hop links and high spectrum utilization of cognitive radio (CR) technology. Using multi-slot statistical spectrum status information (SSI), this work investigates the average spectrum efficiency (SE) of a multi-radio multi-hop (MRMH) CRN where each hop is permitted to use different spectra and long-distance hops can reuse the same idle primary user (PU) spectrum. Faced with the modeled SE problem, which is a complex non-convex fractional mixed integer nonlinear programming (MINLP) problem, the optimal spectrum and power allocation for multi-hop links in multi-slot and multi-channel scenarios can be obtained with the proposed successive multi-step convex approximation scheme (SMCA). As shown through computational complexity and simulation analysis, SMCA can obtain an approximate lower bound of the optimal solution for the modeled SE problem with a lower computational cost. Furthermore, some potential relationships between network performance and spectrum idle rate can be easily discussed with SMCA, which can provide some sensible deployment strategies for the MRMH CRN in future multi-slot scenarios.
机译:多跳认知无线电网络(CRN)由于通过形成多跳链接和认知无线电(CR)技术的高频谱利用率而实现了无缝的无线覆盖,因此在行业和学术界引起了广泛关注。使用多时隙统计频谱状态信息(SSI),这项工作研究了多无线电多跳(MRMH)CRN的平均频谱效率(SE),其中每个跳被允许使用不同的频谱,长距离跳可以重复使用相同的空闲主要用户(PU)频谱。面对建模的SE问题,这是一个复杂的非凸分数混合整数非线性规划(MINLP)问题,该提议可以为多时隙和多信道场景中的多跳链路获得最优频谱和功率分配。连续多步凸逼近方案(SMCA)。如通过计算复杂度和仿真分析所示,SMCA可以以较低的计算成本获得建模SE问题的最优解的近似下界。此外,可以使用SMCA轻松讨论网络性能与频谱空闲速率之间的某些潜在关系,这可以为未来的多时隙方案中的MRMH CRN提供一些明智的部署策略。

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