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Pre-Reply Probe and Route Request Tail: Approaches for Calculation of Intra-Flow Contention in Multihop Wireless Networks

机译:预答复探测和路由请求尾:多跳无线网络中流内竞争的计算方法

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摘要

Several applications have been envisioned for multihop wireless networks that require different qualities of service from the network. In order to support such applications, the network must control the admission of flows. To make an admission decision for a new flow, the expected bandwidth consumption of the flow must be correctly determined. Due to the shared nature of the wireless medium, nodes along a multihop path contend among themselves for access to the medium. This leads to intra-flow contention; contention between packets of the same flow forwarded by different hops along a multihop path, resulting in an increase in the actual bandwidth consumption of the flow to a multiple of its single hop bandwidth requirement. Determining the amount of intra-flow contention is non-trivial since interfering nodes may not be able to communicate directly if they are outside each other's transmission range. In this paper we examine methods to determine the extent of intra-flow contention along multihop paths in both reactive and proactive routing environments. The highlight of the solutions is that carrier-sensing data is used to deduce information about carrier-sensing neighbors, and no high power transmissions are necessary. Analytical and simulation results show that our methods estimate intra-flow contention with low error, while significantly reducing overhead, energy consumption and latency as compared to previous approaches.
机译:对于需要从网络获得不同服务质量的多跳无线网络,已经设想了几种应用。为了支持此类应用程序,网络必须控制流的准入。为了做出新流的准入决定,必须正确确定该流的预期带宽消耗。由于无线介质的共享性质,沿着多跳路径的节点在它们之间争夺访问该介质的权限。这导致流内竞争;沿着多跳路径由不同跃点转发的同一流的数据包之间的争用,导致流的实际带宽消耗增加到其单跃点带宽要求的倍数。确定流内争用的数量并非易事,因为如果干扰节点位于彼此的传输范围之外,则它们可能无法直接进行通信。在本文中,我们研究了确定反应式和主动式路由环境中沿多跳路径的流内竞争程度的方法。该解决方案的重点在于,使用载波侦听数据来推断有关载波侦听邻居的信息,并且不需要大功率传输。分析和仿真结果表明,与以前的方法相比,我们的方法估计流内争用具有低误差,同时显着减少了开销,能耗和等待时间。

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