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A novel delay-oriented shortest path routing protocol for mobile ad hoc networks

机译:一种适用于移动自组网的面向延迟的新型最短路径路由协议

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In wireless ad hoc mobile network, a host which desires to communicate with another host may need some intermediate nodes to relay data packets. To maximize the channel resource utilization and minimize the network transfer delay along the path, the shortest path with minimum hops approach is often adapted. However, by considering employing the medium access control (MAC) protocol, the minimum transfer delay from source to destination may be achieved by choosing a longer path but with less contention delay. We propose an efficient delay-oriented routing protocol for mobile ad hoc wireless networks. The expected access contention delay of the IEEE 802.11 protocol is analyzed to support the routing decision. Simulation results show that the derived path length in the proposed delay-oriented routing protocol is slightly higher than that of the conventional shortest path with minimum hops approach but it can significantly reduce both the average transfer delay and packet loss rate.
机译:在无线自组织移动网络中,希望与另一个主机进行通信的主机可能需要一些中间节点来中继数据分组。为了最大化信道资源利用率并最小化沿路径的网络传输延迟,通常采用具有最小跳数的最短路径方法。但是,通过考虑采用媒体访问控制(MAC)协议,可以通过选择较长的路径但争用延迟较小来实现从源到目的地的最小传输延迟。我们为移动自组织无线网络提出了一种有效的面向延迟的路由协议。分析IEEE 802.11协议的预期访问竞争延迟以支持路由决策。仿真结果表明,所提出的面向时延的路由协议中的导出路径长度比采用最小跳数方法的传统最短路径的导出路径长度稍高,但是它可以显着减少平均传输延迟和丢包率。

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