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Delay minimization through joint routing and resource allocation in cognitive radio-based mesh networks

机译:基于认知无线电的网格网络中通过联合路由和资源分配实现的时延最小化

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We consider wireless mesh networks in which the nodes are utilizing cognitive radios and try to opportunistically gain access to spectrum resources. In such networks, the timely delivery of the traffic is a challenging task due to the licensed (primary) users' activities and their traffic characteristics. To overcome this challenge we propose an algorithm that minimizes the end-to-end delay through joint routing and spectrum resources allocation. The network is analyzed from a queueing theory perspective to capture the effects of dynamic spectrum availability on mesh network's traffic. The joint routing and resource allocation problem is formulated as a non-linear integer programming problem, for which we propose a decentralized solution based on the Lagrangian dual problem. Results demonstrate the performance of our proposed algorithm, as well as the efficiency of the decentralized implementation.
机译:我们考虑其中节点正在利用认知无线电的无线网状网络,并尝试机会性地获得对频谱资源的访问。在这样的网络中,由于被许可的(主要)用户的活动及其流量特性,及时传输流量是一项具有挑战性的任务。为了克服这一挑战,我们提出了一种通过联合路由和频谱资源分配将端到端延迟最小化的算法。从排队论的角度分析了网络,以捕获动态频谱可用性对网状网络流量的影响。联合路由和资源分配问题被表述为非线性整数规划问题,为此,我们提出了基于拉格朗日对偶问题的分散式解决方案。结果证明了我们提出的算法的性能,以及分散实施的效率。

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