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Energy-efficient scheduling and power control via stochastic network optimisation in cognitive radio networks

机译:认知无线电网络中通过随机网络优化进行的节能调度和功率控制

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摘要

In this work, the authors consider a joint scheduling and power control problem via stochastic network optimisation in interweave cognitive radio networks subject to an energy-efficiency (EE) constraint, scheduling constraints, and power constraints, which is solved by traffic admission control, channel allocation, and power allocation. The authors' objective is to maximise the total utility of secondary user equipment, while satisfying the minimum throughput requirement of primal user equipment, the EE requirement, and the performance requirement. In particular, their optimisation on the stochastic system is obtained by using the Lyapunov drift-plus-penalty framework to deal with the time-varying channels and traffics so that the long-term stability on the data queues and virtual queues involved can be guaranteed. Given that, the scheduling algorithm is conducted with polynomial time efficiency, and despite the system to dynamically vary its power, the power control algorithms as well as the admission control proposed are simply threshold-based and thus very computationally efficient. Finally, in addition to the theoretical analysis, their simulation studies further confirm the performance trade-off between throughput and delay as [O(1/V),O(V)] with a system parameterV, and also show the trade-off between throughput and EE, while satisfying all the requirements concerned.
机译:在这项工作中,作者考虑了交织认知无线电网络中通过随机网络优化进行的联合调度和功率控制问题,这些问题受到能效(EE)约束,调度约束和功率约束的影响,这可以通过流量接纳控制,信道来解决分配和功率分配。作者的目标是在满足主要用户设备的最低吞吐量要求,EE要求和性能要求的同时,最大程度地提高辅助用户设备的总体利用率。特别是,通过使用Lyapunov漂移加罚罚框架来处理随时间变化的通道和流量,可以对随机系统进行优化,从而可以保证所涉及的数据队列和虚拟队列的长期稳定性。鉴于此,调度算法以多项式时间效率进行,尽管系统动态地改变了其功率,但是功率控制算法以及所提出的准入控制都是基于阈值的,因此计算效率很高。最后,除了理论分析之外,他们的仿真研究还进一步确认了系统参数 n V n,以及在满足所有相关要求的同时,显示吞吐量和EE之间的权衡。

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