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A power controlled interference aware routing protocol for dense multi-hop wireless networks

机译:密集多跳无线网络的功率控制干扰感知路由协议

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摘要

A key issue impacting the performance of multi-hop wireless networks is the interference among neighboring nodes. In this paper, we propose a novel and practical interference aware metric, termed as Network Allocation Vector Count (NAVC), to estimate the effects of the interference on the average delay and the available bandwidth. This metric can be easily applied to routing protocols designed for 802.11 based multi-hop networks with no modification to the current 802.11 protocol. The design of NAVC as a metric for the AODV [32] routing protocol, as well as a metric for transmit power control, are described in detail. Our simulation results reveal that the NAVC-driven AODV can greatly improve its performance compared to those protocols based on hop-count. For scenarios of densely deployed nodes, the throughput improvement is often a factor near two, indicating that NAVC is more useful as networks grow denser. Moreover, the network lifetime can be notably prolonged when the NAVC is employed to conduct transmit power control. Our approach is essential for emerging applications such as wireless sensor networks where the interference is heavy and the energy is severely constrained.
机译:影响多跳无线网络性能的关键问题是相邻节点之间的干扰。在本文中,我们提出了一种新颖且实用的干扰感知指标,称为网络分配向量计数(NAVC),以估计干扰对平均延迟和可用带宽的影响。无需修改当前的802.11协议,即可轻松将该指标应用于为基于802.11的多跳网络设计的路由协议。详细描述了NAVC作为AODV [32]路由协议度量的设计以及用于发射功率控制的度量。我们的仿真结果表明,与那些基于跳数的协议相比,NAVC驱动的AODV可以大大提高其性能。对于节点密集部署的方案,吞吐量的提高通常是两倍左右,这表明随着网络变得越来越密集,NAVC更加有用。此外,当采用NAVC进行发射功率控制时,可以显着延长网络寿命。对于新兴应用(例如,无线传感器网络中干扰严重且能量受到严重限制),我们的方法至关重要。

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