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Efficient multi-channel MAC protocol and channel allocation schemes for TDMA based cognitive radio networks

机译:用于基于TDMA的认知无线电网络的高效多信道MAC协议和信道分配方案

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We propose a cross-layer based multi-channel Medium Access Control (MAC) protocol to maximize the utilization of the leftover spectrum of primary user channels in cognitive radio networks. This protocol integrates the spectrum sensing at Physical layer and the packet scheduling at the MAC layer for mobile ad-hoc networks. With a TDMA-based control channel, we have a scheme to handle collision. Moreover, our scheme is suitable for heterogeneous network with different device capabilities. We formulate the channel allocation problem as a constrained optimization problem and propose strategies to handle channel allocation based on graph theoretic principles, specifically using Weighted Bipartite Graph Matching technique. We name our proposed modeling as Weighted Bipartite Multi-Vertex Matching (WBMM) and describes three different schemes based on this model. We conduct extensive simulation studies to analyze and compare the performance of the proposed strategies.
机译:我们提出基于跨层的多通道介质访问控制(MAC)协议,以最大限度地利用认知无线电网络中的主要用户信道的剩余频谱。该协议将物理层的频谱感测与用于移动ad-hoc网络的MAC层的分组调度集成在一起。通过基于TDMA的控制信道,我们有一个处理碰撞的方案。此外,我们的方案适用于具有不同设备能力的异构网络。我们将信道分配问题作为约束优化问题,并提出了基于图形理论原理处理信道分配的策略,具体使用加权二分图匹配技术。我们将建议的建模名称为加权二分号多顶点匹配(WBMM),并基于此模型描述了三种不同的方案。我们进行广泛的模拟研究,以分析和比较拟议策略的表现。

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