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Distributed routing and channel allocation in multi-channel multi-hop ad hoc networks

机译:多通道多跳自组织网络中的分布式路由和通道分配

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In this paper, we propose a novel routing protocol which is integrated with channel assignment for multi-channel multi-hop wireless ad hoc networks. In such a network, each node is equipped with three transceivers. One is always tuned on a control channel which is responsible for control and broadcast messages, and the other two perform as transmitter and receiver respectively for traffic flows on different data channels. The routing protocol works in an on-demand manner, and the proposed routing discovery process selects a path that potentially traverses nodes with lighter traffic load and lower number of carried flows. With a given number of non-overlapping channels, the optimal solution of channel allocation for multiple flows is shown to be in general NP-hard. Therefore, a heuristic algorithm for channel allocation based on the information acquired along a flow path is adopted, in order to mitigate two types of interference, i.e., inter-path interference and intra-path interference. NS2 based simulation experiments are conducted to evaluate the performance of the proposed protocol.
机译:在本文中,我们提出了一种新颖的路由协议,该协议与信道分配集成在一起,用于多信道多跳无线自组织网络。在这样的网络中,每个节点都配备了三个收发器。一个总是在控制信道上调谐,该控制信道负责控制和广播消息,而另外两个则分别充当发送器和接收器,以处理不同数据信道上的业务流。路由协议按需工作,建议的路由发现过程选择一条路径,该路径可能会以较轻的流量负载和较少的携带流量通过节点。在给定数量的非重叠信道下,针对多个流的信道分配的最佳解决方案通常显示为NP-hard。因此,采用基于沿流动路径获取的信息的用于信道分配的启发式算法,以减轻两种类型的干扰,即路径间干扰和路径内干扰。进行了基于NS2的仿真实验,以评估所提出协议的性能。

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