论文标题

不合作频谱共享网络中的吞吐量最大化

Throughput Maximization in Uncooperative Spectrum Sharing Networks

论文作者

Stahlbuhk, Thomas, Shrader, Brooke, Modiano, Eytan

论文摘要

在文献中,无线网络中的吞吐量 - 最佳传输调度已经是一个良好的问题,并且达到了最优性,最大量级调度的方法已知数十年。该算法通过根据每个用户的随机流量需求进行自适应安排传输来实现最佳性。要实施该方法,用户必须向网络控制器报告其队列积压,并且必须迅速响应所得的资源分配。但是,许多当前部署的无线系统无法执行这些任务,而是期望占据固定的资源分配。为了适应这些限制,自适应调度算法需要交互式估计这些不合作的用户的排队积压,并做出调度决策以说明其预测的行为。在这项工作中,我们通过开发算法来完成这些任务,解决了使用不合作的旧系统调度问题的问题。我们首先要提出一个问题的问题,即推断不合作的队列积压作为部分可观察到的马尔可夫决策过程,并继续展示如何成功地用于基于队列长度的调度策略中。我们的理论分析表征了网络的吞吐量稳定性区域,并使用仿真结果进行了验证。

Throughput-optimal transmission scheduling in wireless networks has been a well considered problem in the literature, and the method for achieving optimality, MaxWeight scheduling, has been known for several decades. This algorithm achieves optimality by adaptively scheduling transmissions relative to each user's stochastic traffic demands. To implement the method, users must report their queue backlogs to the network controller and must rapidly respond to the resulting resource allocations. However, many currently-deployed wireless systems are not able to perform these tasks and instead expect to occupy a fixed assignment of resources. To accommodate these limitations, adaptive scheduling algorithms need to interactively estimate these uncooperative users' queue backlogs and make scheduling decisions to account for their predicted behavior. In this work, we address the problem of scheduling with uncooperative legacy systems by developing algorithms to accomplish these tasks. We begin by formulating the problem of inferring the uncooperative systems' queue backlogs as a partially observable Markov decision process and proceed to show how our resulting learning algorithms can be successfully used in a queue-length-based scheduling policy. Our theoretical analysis characterizes the throughput-stability region of the network and is verified using simulation results.

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