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Implementing the Distributed Consensus-based Estimation of Environmental Variables in Unattended Wireless Sensor Networks

机译:在无人值守的无线传感器网络中实现基于分布的基于共识的环境变量估计

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摘要

In this paper, the prototype implementation of a scalable, distributed protocol for calculating the global average of sensed environmental variables in unattended wireless sensor networks (WSNs) is presented. The design and implementation of the protocol introduces a communication scheme for discovering the WSN topology. Such scheme uses a synchronous flooding algorithm, which was implemented over an unreliable radiogram-based wireless channel. The topology discovery protocol has been synchronized with sampling time of the WSN and must be executed before the consensus-based estimation of the global averages. An average consensus algorithm, suited for clustered WSNs with static topologies, was selected from the literature. The algorithm was properly modified so that its implementation guarantees that the convergence time is bounded and less than the sampling time of the WSN. Moreover, to implement the consensus algorithm, a reliable packet-passing protocol was designed to exchange the weighting factors among the sensor nodes. Since the amount of data exchanged in each packet is bounded by the degree of the WSN, the scalability of the protocol is guaranteed to be linear. The proposed protocol was implemented in the Sun SPOT hardware/software platform using the Java programming language. All the radio communications were implemented over the IEEE 802.15.4 standard and the sensed environmental variables corresponded to the temperature and luminosity.
机译:在本文中,提出了一种可伸缩的分布式协议的原型实现,该协议用于计算无人值守的无线传感器网络(WSN)中感测到的环境变量的全局平均值。该协议的设计和实现引入了一种用于发现WSN拓扑的通信方案。这种方案使用同步泛洪算法,该算法是在不可靠的基于射线图的无线信道上实现的。拓扑发现协议已与WSN的采样时间同步,并且必须在基于共识的全局平均值估计之前执行。从文献中选择了一种适用于具有静态拓扑的WSN的平均共识算法。对该算法进行了适当的修改,以使其实现可以保证收敛时间是有界的,并且小于WSN的采样时间。此外,为了实现共识算法,设计了一种可靠的数据包通过协议,以在传感器节点之间交换加权因子。由于每个数据包中交换的数据量受WSN程度的限制,因此可以保证协议的可伸缩性是线性的。所提议的协议是使用Java编程语言在Sun SPOT硬件/软件平台中实现的。所有无线电通信均通过IEEE 802.15.4标准实现,并且感测到的环境变量对应于温度和光度。

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