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Distributed resource allocation in cognitive and cooperative ad hoc networks through joint routing, relay selection and spectrum allocation

机译:通过联合路由,中继选择和频谱分配在认知和合作ad hoc网络中分布式资源分配

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摘要

Cooperative relaying and dynamic-spectrum-access/cognitive techniques are promising solutions to increase the capacity and reliability of wireless links by exploiting the spatial and frequency diversity of the wireless channel. Yet, the combined use of cooperative relaying and dynamic spectrum access in multi-hop networks with decentralized control is far from being well understood.We study the problem of network throughput maximization in cognitive and cooperative ad hoc networks through joint optimization of routing, relay assignment and spectrum allocation. We derive a decentralized algorithm that solves the power and spectrum allocation problem for two common cooperative transmission schemes, decode-and-forward (DF) and amplify-and-forward (AF), based on convex optimization and arithmetic–geometric mean approximation techniques. We then propose and design a practical medium access control protocol in which the probability of accessing the channel for a given node depends on a local utility function determined as the solution of the joint routing, relay selection, and dynamic spectrum allocation problem. Therefore, the algorithm aims at maximizing the network throughput through local control actions and with localized information only.Through discrete-event network simulations, we finally demonstrate that the protocol provides significant throughput gains with respect to baseline solutions.
机译:协作中继和动态频谱访问/认知技术是通过利用无线信道的空间和频率分集来提高无线链路的容量和可靠性的有前途的解决方案。然而,在具有分散控制的多跳网络中将协作中继和动态频谱接入结合使用的情况尚不十分清楚。我们通过联合优化路由,中继分配来研究认知和协作自组织网络中网络吞吐量最大化的问题和频谱分配。我们导出了一种分散算法,该算法基于凸优化和算术几何均值逼近技术,解决了两种常见的协作传输方案解码转发(DF)和放大转发(AF)的功率和频谱分配问题。然后,我们提出并设计了一种实用的媒体访问控制协议,其中访问给定节点的信道的概率取决于确定为联合路由,中继选择和动态频谱分配问题的解决方案的本地效用函数。因此,该算法旨在通过局部控制动作和仅具有局部信息来最大化网络吞吐量。通过离散事件网络仿真,我们最终证明了该协议相对于基准解决方案提供了显着的吞吐量增益。

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