资源约束下的可控频谱感知与调度

Nicolò Michelusi, U. Mitra
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引用次数: 3

摘要

本文提出了一种跨层框架,用于实现资源约束下敏捷无线网络的频谱感知和调度。次要用户(su)网络可以机会地访问由授权的主用户(pu)网络未使用的部分频谱。CC (central controller)是一个中心控制器,通过单元的分布式压缩频谱感知,对各个频段的业务流量进行调度。感知和调度都基于当前频谱占用信念进行控制,在PU吞吐量退化和感知传输成本的约束下,以SU吞吐量最大化为目标。提出了一种局部短视调度策略,通过动态规划最优地确定SU的总流量,而通过在PU和SU吞吐量之间的瞬时权衡的短视最大化来确定整个频带的总流量分配,从而降低了高优化复杂性,这可以使用凸优化工具有效地解决。证明了部分近视眼调度策略的结构结果。仿真结果表明,所提出的框架可以最优地平衡通过分布式频谱感知获取状态信息的成本和SU产生的数据传输成本,同时在可用资源约束下实现PU和SU吞吐量之间的最佳权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controlled Spectrum Sensing and Scheduling under Resource Constraints
In this paper, a cross-layer framework to perform spectrum sensing and scheduling in agile wireless networks under resource constraints is presented. A network of secondary users (SUs) opportunistically accesses portions of the spectrum left unused by a network of licensed primary users (PUs). A central controller (CC) schedules the traffic of the SUs over the spectrum bands, based on distributed compressed spectrum sensing performed by the SUs. Both sensing and scheduling are controlled based on the current spectrum occupancy belief, with the goal to maximize the SU throughput, under constraints on the PU throughput degradation and the sensing-transmission cost incurred by the SUs. The high optimization complexity is reduced by proposing a partially myopic scheduling strategy, where the total traffic of the SUs is determined optimally via dynamic programming, whereas the allocation of the resulting total traffic across frequency bands is determined via a myopic maximization of the instantaneous trade-off between PU and SU throughputs, which can be solved efficiently using convex optimization tools. Structural results of the partially myopic scheduling strategy are proved. Simulation results demonstrate how the proposed framework allows to balance optimally the cost of acquisition of state information via distributed spectrum sensing and the cost of data transmission incurred by the SUs, while achieving the best trade-off between PU and SU throughput under the resource constraints available.
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