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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Distributed Mode Selection for FDD Communication in Multihop Wireless Networks
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Distributed Mode Selection for FDD Communication in Multihop Wireless Networks

机译:多跳无线网络中FDD通信的分布式模式选择

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We consider a decentralized, multihop wireless network consisting of frequency division duplex (FDD) nodes, which use separate frequency bands for transmission and reception. The use of FDD communication in a multihop wireless network partitions the nodes in two operating modes (or genders), depending on the frequency bands used for the transmission and reception. Since the FDD nodes of the same gender, located in a one-hop neighborhood, cannot communicate with each other, it can limit the availability of communication links between the neighboring nodes and also lead to network partitioning. Therefore, the operating mode of these nodes should be selected such that every node can establish links with its one-hop neighbors. We model the multihop network as a graph and design a novel, distributed bipartite graph coloring scheme, for mode selection of FDD nodes. Unlike the existing graph coloring schemes, which use the entire network topology and yet do not ensure network connectivity, our algorithm requires only the local information of one-hop neighborhood of each node in a distributed manner. The simulation results show that our mode selection algorithm ensures that every FDD node can establish the communication links with approximately half of its one-hop neighbors for omni as well as directional communication, without introducing any disconnected node. This mode selection algorithm also has a lower computational complexity and provides a robust network connectivity, which would help in fault tolerance and establishing stable routes in the network.
机译:我们考虑一个由频分双工(FDD)节点组成的分散的多跳无线网络,其使用单独的频带来传输和接收。根据用于传输和接收的频带,在多跳无线网络中使用FDD通信在两个操作模式(或者是个体)中分区节点。由于位于一个跳邻居中的相同性别的FDD节点不能彼此通信,因此它可以限制相邻节点之间的通信链路的可用性,并且还导致网络分区。因此,应该选择这些节点的操作模式,使得每个节点可以与其一跳邻居建立链接。我们将多彩网塑造为图形并设计一种新颖的分布式二分图着色方案,用于模式选择FDD节点。与现有的图形着色方案不同,它使用整个网络拓扑且不保证网络连接,我们的算法仅以分布式方式仅需要每个节点的一跳邻域的本地信息。仿真结果表明,我们的模式选择算法确保每个FDD节点可以与其一跳邻居的大约一半的通信链路以及定向通信,而不引入任何断开的节点。该模式选择算法还具有较低的计算复杂性,并提供了鲁棒的网络连接,这将有助于容错并在网络中建立稳定路由。

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