The Impact of Physical Conditions on Network Connectivity in Wireless Sensor Network

T. Wu, K. Kwong, Chong Shen, W. Michie, Ivan Andonovic
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Abstract

In Wireless Sensor Networks, end-to-end routing paths need to be established when nodes want to communicate with the desired destination. For nodes assumed to be static, many routing protocols such as Directed Diffusion have been proposed to meet this requirement efficiently. The performance of such routing protocols is relative to the given network connectivity. This paper addresses mobile sensor nodes taking into account the diversity of scattered node density and investigates how physical conditions impact on network connectivity which in turn influences routing performance. Three analysis metrics: path availability, path duration, and interavailable path time are proposed to quantify the impact of different physical conditions on network connectivity. Simulation results show that the network connectivity varies significantly as a function of different physical conditions.
无线传感器网络物理条件对网络连通性的影响
在无线传感器网络中,当节点想要与期望的目的地通信时,需要建立端到端路由路径。对于假设为静态的节点,为了有效地满足这一要求,已经提出了许多路由协议,如定向扩散。这种路由协议的性能与给定的网络连通性有关。考虑到分散节点密度的多样性,本文讨论了移动传感器节点,并研究了物理条件如何影响网络连通性,进而影响路由性能。提出了三个分析指标:路径可用性、路径持续时间和可互用路径时间来量化不同物理条件对网络连通性的影响。仿真结果表明,网络连通性随物理条件的不同而有显著的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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