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Influence of node dynamics on cluster global time continuity

机译:节点动力学对集群全局时间连续性的影响

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The cluster global time can change in wireless sensor networks due to leader re-elections and node disabilities between two successive synchronizations, which will affect temporal relationships. This paper analyzes cluster global time continuity, using global time change models for the node dynamics. The results prove that defining the global time using the cluster average time (AGT) is more stable than defining it using a single node's local time (SGT). With normally distributed clock-parameter assumptions, the AGT change bounds are at most 70.7% of those for the SGT's. The impacts of the initial phase and frequency skew distributions on the global time continuity are also investigated to show that the initial phase variations may strongly influence the continuity. Simulations show that the AGT is more stable with less disabled nodes or larger clusters. The appropriate cluster size is 20–40 when there are less than 15 disabled nodes.
机译:由于两个连续同步之间的领导者连任和节点残疾,群集全局时间可能会在无线传感器网络中发生变化,这会影响时间关系。本文使用节点时间动态的全局时间变化模型分析集群的全局时间连续性。结果证明,使用群集平均时间(AGT)定义全局时间比使用单个节点的本地时间(SGT)定义全局时间更稳定。如果采用正态分布的时钟参数假设,则AGT的变化范围最多为SGT的70.7%。还研究了初始相位和频率偏斜分布对全局时间连续性的影响,以表明初始相位变化可能强烈影响连续性。仿真表明,AGT在禁用节点较少或群集较大的情况下更加稳定。当禁用节点少于15个时,适当的群集大小为20–40。

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