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Receiver-Based Channel Allocation for Wireless Cognitive Radio Mesh Networks

机译:无线认知无线电网格网络的基于接收器的信道分配

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Empowered by the cognitive radio technology and motivated by the sporadic channel utilization, both spatially and temporally, dynamic spectrum access networks, also referred to as cognitive radio networks, have emerged as a solution to improve spectrum utilization and provide more flexibility to wireless communication. In this paper, we study the channel allocation problem in wireless cognitive mesh networks. For the allocation to be feasible, served mesh clients must establish connectivity with a backbone network in both the upstream and the downstream directions, and must have the SINR (signal-to-interference and noise-ratio) of the uplink and the downlink with their parent mesh routers within a predetermined threshold. We propose a receiver-based channel allocation strategy and show that this strategy outperforms other strategies in terms of the number of mesh clients served, and the fact that no common control channel is needed for coordinating the communication process. Furthermore, we formulate the receiver-based channel allocation problem in wireless cognitive mesh network as a mixed integer linear program (MILP) and propose a heuristic solution.
机译:在空间和时间上都受到认知无线电技术的支持和零星信道利用的推动,动态频谱接入网络(也称为认知无线电网络)已成为提高频谱利用率并为无线通信提供更大灵活性的解决方案。在本文中,我们研究了无线认知网格网络中的信道分配问题。为了使分配可行,服务的网状客户端必须在上行和下行方向都与骨干网建立连接,并且必须具有上行链路和下行链路的SINR(信号干扰和噪声比)在预定阈值内的父网状路由器。我们提出了一种基于接收器的信道分配策略,并表明该策略在服务的网状客户端数量方面优于其他策略,并且不需要协调通信过程的公共控制信道这一事实。此外,我们将无线认知网状网络中基于接收器的信道分配问题公式化为混合整数线性程序(MILP),并提出启发式解决方案。

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