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A Routing and Interface Assignment Algorithm for Multi-Channel Multi-Interface Ad Hoc Networks

机译:多通道多接口自组织网络的路由和接口分配算法

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In this paper, we present a routing and interface assignment algorithm for multi-channel multi-interface (MCMI) wireless ad hoc networks. An MCMI network consists of nodes that have more than one interface, and more than one channel available for transmission. The proposed algorithm takes into account both the number of hops between the source to the destination nodes, and the effects of adjacent hop interference. The algorithm has two decoupled steps: route selection and interface assignment. The step of route selection finds the path that has the minimum lower bound among all possible routes between the source and the destination while the step of interface assignment assigns an interface to a channel on each hop on that path. The interface assignment is based on the use of the Viterbi algorithm. The use of decoupled steps makes the algorithm computationally efficient, while the use of the lower bound metrics in route selection and the Viterbi algorithm in interface assignment helps improving the global optimality of the routing. Computer simulation and examples are used to demonstrate the effectiveness and performance of the proposed technique. Comparisons are made to other existing routing techniques in the area of dynamical spectrum access.
机译:在本文中,我们提出了一种用于多通道多接口(MCMI)无线ad hoc网络的路由和接口分配算法。 MCMI网络由具有多个接口和多个可用传输通道的节点组成。该算法既考虑了源到目的节点之间的跳数,又考虑了相邻跳干扰的影响。该算法具有两个分离的步骤:路由选择和接口分配。路由选择步骤查找在源与目的地之间的所有可能路由中具有最小下限的路径,而接口分配步骤将接口分配给该路径上每个跃点上的通道。接口分配基于维特比算法的使用。解耦步骤的使用使该算法的计算效率更高,而在路由选择中使用下限度量和在接口分配中使用Viterbi算法有助于提高路由的全局最优性。计算机仿真和示例用于证明所提出技术的有效性和性能。在动态频谱访问领域与其他现有的路由技术进行了比较。

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