无线传感器网络中的Newman & Watts和Kleinberg小世界模型分析

Renan Pereira Araujo, F. S. Souza, J. Ueyama, L. Villas, D. Guidoni
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引用次数: 1

摘要

本文研究了基于小世界模型的无线传感器网络的设计。通过对具有小世界特征的传感器网络进行建模,可以减小汇聚节点和传感器节点互连的平均路径长度。本研究的目的是分析无线传感器网络中的Newman & Watts和Kleinberg小世界模型。仿真结果表明,两种模型都能够创建具有小世界特征的传感器网络,但Newman & Watts模型在路径长度、聚类系数和数据通信延迟方面效果更好。另一方面,Kleinberg模型更能降低数据通信过程中的能耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Analysis of Newman & Watts and Kleinberg Small World Models in Wireless Sensor Networks
In this work, we study the design of a Wireless Sensor Network based on the Small world models. By modeling a sensor network with small world features, it is possible to decrease the average path length to interconnect the sink and sensor nodes. The goal of this work is to analysis the Newman & Watts and Kleinberg small world models in wireless sensor networks. The simulation results showed that both models are able to create a sensor network with small world features, however, the Newman & Watts model has better results regarding the path length, clustering coefficient and data communication latency. On the other hand, the Kleinberg model reduces more the energy consumption during data communication.
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