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Joint rate adaption, power control, and spectrum allocation for OFDMA-based multi-hop CRNs

机译:基于OFDMA的多跳CRN的联合速率自适应,功率控制和频谱分配

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The overall performance of multi-hop cognitive radio networks (CRNs) can be improved significantly by deploying the channel diversity of orthogonal licensed channels in spectrum underlay fashion. However, interference due to the sharing of common radio channels among links and congestion due to the contention among those flows that share the same link become an obstacle to meet this challenge. How to control congestion efficiently and allocate power as well as channel optimally in order to obtain a high end-to-end throughput motivates a framework of cross-layer optimization design for OFDMA-based multi-hop CRNs. By taking into account the problem of joint rate adaption, power control, and spectrum allocation (JRPS), we propose a new cross-layer optimization framework. The formulation is shown to be a mix-integer non-linear programming (MINLP) problem, which is NP-hard in general. To solve the problem, we develop a partially distributed solution, which has been proved to converge to the global optimum within reasonable times.
机译:通过以频谱方式部署正交许可信道的信道分集,可以显着提高多跳认知无线电网络(CRN)的整体性能。然而,由于链路之间共享公共无线电信道而引起的干扰以及因共享同一链路的那些流之间的争用而引起的拥塞成为应对这一挑战的障碍。如何有效地控制拥塞以及最佳地分配功率和信道以获得高的端到端吞吐量,推动了基于OFDMA的多跳CRN跨层优化设计的框架。考虑到联合速率自适应,功率控制和频谱分配(JRPS)的问题,我们提出了一个新的跨层优化框架。该公式显示为一个混合整数非线性规划(MINLP)问题,通常是NP难的。为了解决该问题,我们开发了一种部分分布式的解决方案,该解决方案已被证明可以在合理的时间内收敛到全局最优值。

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