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Stochastic cross-layer resource allocation for wireless networks using orthogonal access: Optimality and delay analysis

机译:使用正交访问的无线网络随机跨层资源分配:最优性和延迟分析

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Efficient design of wireless networks requires implementation of cross-layer algorithms that exploit channel state information. Capitalizing on convex optimization and stochastic approximation tools, this paper develops a stochastic algorithm that allocates resources at network, link, and physical layers so that a sum-utility of the average end-to-end rates is maximized. Focus is placed on networks where interference is strong and nodes transmit orthogonally over a set of parallel channels. Convergence of the developed stochastic schemes is characterized, and the average queue delays are obtained in closed form.
机译:无线网络的有效设计需要实施利用信道状态信息的跨层算法。利用凸优化和随机逼近工具,本文开发了一种随机算法,该算法在网络,链路和物理层上分配资源,从而使平均端到端速率的总和效用最大化。重点放在干扰强烈且节点在一组并行信道上正交传输的网络上。表征了所发展的随机方案的收敛性,并且以封闭形式获得了平均队列延迟。

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