First Passage Time Analysis in Event-Driven Wireless Sensor Networks

Lu Yu
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引用次数: 2

Abstract

In this paper, we establish a first passage time analysis for event-driven sensor networks with single hop. Our model can be regarded as a theoretical analysis for time cost of message transmission to sink node in an event-driven process in which Slotted ALOHA protocol is implemented. The first passage time Tn,lambda depends on the size n of activated nodes and their transmission rate lambda. Given n, we study the optimal lambda and give the approximation radic1n n/n, further more we give the estimate of the size n from the view point of sink node. So that we can adjust the transmission rate lambda to attain the optimal expected time cost Tmin (n). Numerical result indicates that given the size of active nodes n, the optimal time cost of the procedure increases nearly linearly with n increasing which implies that ALOHA protocol is efficient even in dense event-driven sensor networks.
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事件驱动无线传感器网络的首次通过时间分析
本文建立了单跳事件驱动传感器网络的首次通过时间分析方法。我们的模型可以看作是对实现Slotted ALOHA协议的事件驱动过程中消息传输到汇聚节点时间成本的理论分析。第一次通过时间Tn,取决于激活节点的大小n和它们的传输速率。在给定n的情况下,我们研究了最优的lambda,给出了近似的radic1n n/n,进一步从汇聚节点的角度给出了大小n的估计。因此,我们可以调整传输速率lambda以获得最优的期望时间代价Tmin (n)。数值结果表明,给定活动节点的大小n,该过程的最优时间代价随着n的增加几乎呈线性增加,这意味着即使在密集的事件驱动传感器网络中,ALOHA协议也是有效的。
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