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Cooperative Neighbor Discovery Protocol for a Wireless Network Using Two Antenna Patterns

机译:使用两个天线模式的无线网络的协同邻居发现协议

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Neighbor discovery is necessary for the proper functioning of wireless networks. Directional antennae can be used in the network to improve connectivity due to the fact that a narrower beam width can reach a faraway place using the same transmission power. Researches until now have worked on neighbor discovery using only omni directional antenna (OO), neighbor discovery using only directional antenna (DD), or neighbor discovery using one antenna type for transmission and the other type for reception (OD and DO). In this work, we propose a new neighbor discovery model where both antenna neighbor discovery types are available (D+O). Nodes exchange neighbor information with omni directional antennae, and neighbor information beyond the reach of omni directional antennae are collected using directional antennae. In our model, neighboring nodes cooperate with each other to speed up the neighbor discovery process. Two neighbor cooperation mechanisms are presented in the model. Through analysis, we show that the proposed protocol can reduce delays in the neighboring discovery process when the number of neighboring nodes increases following a Poisson distribution and contentions are taken into consideration. Through simulation, we show the improved delay performance and the energy efficiency of the proposed solution when it is compared with other neighbor discovery approaches in the literature.
机译:邻居发现是必要的无线网络的正常运作。定向天线可以在网络中被用于改进的连接由于以下事实:更窄的波束宽度可以使用相同的发送功率达到一个遥远的地方。研究直到现在都使用仅使用定向天线(DD),或使用用于传输的一个天线类型和其它类型的用于接收(OD和DO)邻居发现只有全向天线(OO),邻居发现邻居发现工作。在这项工作中,我们提出了一个新的邻居发现模型,其中两个天线邻居发现类型有(d + O)。节点交换与全向天线的邻居信息,和邻居信息超越全向天线的覆盖范围使用定向天线收集。在我们的模型中,邻近节点相互配合,以加快邻居发现过程。两个相邻的合作机制在模型中提出。通过分析,我们表明,该协议可以降低在邻近的发现过程中的延迟时遵循泊松分布的相邻节点的增加和争论的数量考虑在内。通过仿真,我们展示了改进的延迟性能和提出的解决方案的能源效率时,它比其他邻居发现在文献中的方法。

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