自组织无线传感器网络的设计问题

M. Becker
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引用次数: 0

摘要

无线网络中节点的自组织特性对实现网络宽特性起着重要作用。在网络连接较少的恶劣条件下,通过更快的数据传输来增加连接显然是一个研究领域。节点的连通性取决于许多因素,如能量、位置、流动性和环境变化。尽管有上述因素,建模一个可以增加连通性的算法是我们试图研究的一个挑战。通过减少从源到目的的平均路径长度,可以实现更快的数据传输。然而,在实际网络中,增加连通性和减少平均路径长度是一项艰巨的任务。减少平均路径长度的一种方法是使用小世界现象。因此,在这项工作中,我们试图研究小世界现象如何帮助我们实现更高的连通性和减少平均路径长度的目标。我们的模型结果表明,使用小世界连接也可以随着平均路径长度的减少而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design issues in self-organizing wireless sensor networks
Self-Organization properties of the nodes in wireless network play an important role in achieving network wide characteristics. In harsh conditions where network connectivity is less, increasing connectivity with faster data transmission is clearly an area of research. Connectivity of the nodes is dependent on many factors like, energy, position, mobility and environmental changes. Modeling an algorithm that can increase the connectivity despite above mentioned factors is a challenge that we have tried to investigate. Faster data transmissions can be achieved by reducing average path length from source to destination. In real networks, however, increasing connectivity and reducing average path length is a hard task. One way to reduce average path lengths is by the use of Small World phenomenon. Thus here in this work we try to investigate how Small World phenomenon can help us in our goal of achieving higher connectivity and reduced average path length. Our model results show that using Small World connectivity can also be increased with the reduction in the average path length.
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