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Receiver-Based Channel Allocation in Cognitive Radio Wireless Mesh Networks

机译:认知无线电无线网状网络中基于接收器的信道分配

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In this paper, we study the channel allocation problem in cognitive radio wireless mesh networks (CR-WMNs). We aim at finding an allocation strategy that guarantees quality of service (QoS) (link reliability), maximizes network coverage, and alleviates the need for a common control channel to coordinate the communication process. The allocation of a particular channel to a mesh client (MC) is considered feasible if the MC can establish connectivity with the backbone network in both the upstream and the downstream directions, and has the signal-to-interference-plus-noise ratio (SINR) of the uplink and the downlink with its parent mesh router (MR) within a predetermined threshold. A receiver-based channel allocation (RBA) model that achieves the aforementioned objectives is proposed (channel assignment under this model can be proven to be NP-hard). We then formulate a mixed integer linear program, of the channel allocation problem under the proposed model, and compare its performance to that of two other baseline models, namely, transmitter-based and all-tunable channel allocation strategies. The results prove the superiority of the proposed model. We also developed a heuristic algorithm, which is shown to be an accurate algorithm.
机译:在本文中,我们研究了认知无线电无线网状网络(CR-WMN)中的信道分配问题。我们旨在寻找一种分配策略,以确保服务质量(QoS)(链路可靠性),最大化网络覆盖范围并减轻对通用控制信道协调通信过程的需求。如果MC可以在上游和下游方向上与骨干网建立连接,并且具有信噪比(SINR),则将特定信道分配给网状客户端(MC)被认为是可行的。上行链路和下行链路)及其父网状路由器(MR)在预定阈值内。提出了实现上述目标的基于接收器的信道分配(RBA)模型(在该模型下的信道分配可以证明是NP难的)。然后,我们针对提出的模型下的信道分配问题制定了一个混合整数线性程序,并将其性能与其他两个基线模型(即基于发射机的和全可调信道分配策略)的性能进行了比较。结果证明了该模型的优越性。我们还开发了一种启发式算法,该算法被证明是一种准确的算法。

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