无线传感器网络间基于共识的分散资源共享

Vana Micie, D. Tolic, V. Bilas
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引用次数: 5

摘要

随着各种同址无线传感器网络(wsn)在智能建筑和智慧城市等应用中的出现,促进它们之间的交互变得越来越重要。网络间协作的目的是利用每个WSN的性能,以及整个系统的服务质量。在本文中,我们提出了一种分散的网络间协作方法,其中每个节点能够在其网络中的节点之间发起达成共识的过程,并在达成共识后终止该过程。之后,它与邻近网络的节点交换信息。为了不干扰wsn的主要任务(检测和报告有趣的事件),我们的共识算法需要节能和快速。我们在智能监控应用的案例研究中强调了我们的方法的重要性,其中气体WSN和视频WSN共享相同的物理环境。使用现成的无线传感器平台,实验研究了共识算法在网络内通信期间(在网络间通信之前)的性能。我们引入了一个能量-时间因子,从一致性算法的能量和时间效率的角度来表示最优通信速率。在我们的实验中,通信周期为0.1 s(即2%占空比)时达到最佳性能。
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Consensus-based decentralized resource sharing between co-located Wireless Sensor Networks
With the emergence of various co-located Wireless Sensor Networks (WSNs) in applications such as smart buildings and smart cities, it becomes increasingly important to facilitate their interaction. The aim of inter-network collaboration is to leverage the performance of each WSN, as well as the quality of service of the overall system. In this paper, we propose a decentralized method for inter-network collaboration, where each node is able to initiate a consensus-reaching procedure among the nodes from its network and terminate it after the consensus is reached. After that, it exchanges the information with a node from a neighboring network. In order not to interfere with the main task of the WSNs (detecting and reporting interesting events), our consensus algorithm needs to be energy-efficient and fast. We emphasize the importance of our approach on a case study of a smart surveillance application, where a gas WSN and video WSN share the same physical environment. The performance of the consensus algorithm during intranetwork communication (prior to inter-network communication) is experimentally investigated, using off-the-shelf wireless sensor platforms. We introduce an energy-time factor that indicates the optimal communication rate in terms of energy- and time-efficiency of the consensus algorithm. In our experiments, the best performance is achieved for period of communication 0.1 s (i.e., 2% duty cycle).
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