首页> 外文期刊>International Journal of Distributed Sensor Networks >Delay Sensitive, Energy Efficient and Fault Tolerant Distributed Slot Assignment Algorithm for Wireless Sensor Networks Under Convergecast Data Traffic
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Delay Sensitive, Energy Efficient and Fault Tolerant Distributed Slot Assignment Algorithm for Wireless Sensor Networks Under Convergecast Data Traffic

机译:聚合广播数据流量下无线传感器网络的时延敏感,高效节能和容错分布式时隙分配算法

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The scarcest resource for most of the wireless sensor networks (WSNs) is energy and the major factor in energy consumption for WSNs is communication. Not only transmission, but also reception is the source of energy consumption. The lore to decrease energy consumption is to turn off the radio circuit when it is not needed. This is why TDMA is advantageous over contention based methods. A time slot assignment algorithm is an essential part of TDMA based systems. Although centralized time slot assignment protocols are preferred in many WSNs, a centralized approach is not scalable. In this article, a new energy efficient, delay sensitive, and fault tolerant distributed time slot assignment algorithm, referred to as ft_DTSM, is proposed for sensor networks under convergecast traffic pattern. ft_DTSM aims at operating with low delay and low energy under faulty nodes assumption. Instead of random access based periods, it assigns slots with the help of tiny request slots. While traditional slot assignment algorithms do not allow assigning the same slot within two hop neighbors, because of the hidden node problem, ft_DTSM can assign, if the assignment is suitable for convergecast traffic. Simulation results have shown that both delay and energy consumption performances of ft_DTSM is superior to existing distributed slot assignment protocols for WSNs. ft_DTSM can also distribute the slots so that the network can continue its operation against a single point of failure. Although ft_DTSM has a somewhat longer execution time, its scalability characteristic may provide application specific time durations.
机译:对于大多数无线传感器网络(WSN),最稀缺的资源是能源,而WSN能耗的主要因素是通信。不仅传输,而且接收也是能源消耗的来源。减少能耗的知识是在不需要无线电电路时将其关闭。这就是为什么TDMA优于基于竞争的方法的原因。时隙分配算法是基于TDMA的系统的重要组成部分。尽管在许多WSN中首选集中式时隙分配协议,但集中式方法不可扩展。本文提出了一种新的高效节能,时延敏感且具有容错能力的分布式时隙分配算法,称为ft_DTSM,用于融合广播流量模式下的传感器网络。 ft_DTSM旨在在故障节点假设下以低延迟和低能耗运行。代替基于随机访问的时间段,它借助微小的请求时隙分配时隙。尽管传统的时隙分配算法不允许在两个跃点邻居中分配相同的时隙,但是由于隐藏节点问题,如果该分配适用于聚合广播流量,则可以分配ft_DTSM。仿真结果表明,ft_DTSM的延迟和能耗性能均优于现有的WSN分布式时隙分配协议。 ft_DTSM还可以分配插槽,以便网络可以针对单点故障继续运行。尽管ft_DTSM的执行时间较长,但是它的可伸缩性特性可以提供特定于应用程序的持续时间。

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