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Relay Node Deployment Based Small World Effect in Hierarchical Industrial Wireless Sensor Networks

机译:分层工业无线传感器网络中基于中继节点部署的小世界效应

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摘要

The industrial wireless sensor networks (IWSNs) brings several advantages over traditional wired industrial monitoring and control systems. The communication reliability of IWSNs has to be guaranteed as the real-time field data need to be transmitted to the control system. The specific requirements of IWSNs have brought challenges to the deployment strategy of sensors in industrial environments. Obviously the network architecture has a significant influence on the performance of IWSNs. Therefore, in this paper, we place three types of nodes in a manufacturing shop to monitor equipment situation, production status and environment. We construct an IWSN with small world characteristics through the random additions of efficient relay nodes and short-cuts at a certain probability. The sensor data will be transmitted in multi-hop to the server quickly and exactly through the small world IWSN. In addition, the proposed deployment strategy will ensure balanced energy-usage among the nodes in the network. Simulation results show that the built network topology possesses the property of rapid transmission to reduce the transmission relay drastically and has good robustness. Compared to the flat single-tier network structure of homogeneous sensor nodes, the small world networks utilizing heterogeneous elements will be preferred in IWSNs.
机译:与传统的有线工业监控系统相比,工业无线传感器网络(IWSN)具有许多优势。由于必须将实时现场数据传输到控制系统,因此必须确保IWSN的通信可靠性。 IWSN的特定要求给工业环境中的传感器部署策略带来了挑战。显然,网络体系结构对IWSN的性能具有重大影响。因此,在本文中,我们在制造车间中放置了三种类型的节点以监视设备状况,生产状态和环境。我们通过随机添加有效的中继节点和快捷方式以一定的概率构建具有小世界特征的IWSN。传感器数据将通过小世界IWSN快速,准确地以多跳方式传输到服务器。此外,建议的部署策略将确保网络中节点之间的能量平衡使用。仿真结果表明,所建立的网络拓扑具有快速传输的特性,可以大大减少传输中继,并且具有良好的鲁棒性。与同类传感器节点的平面单层网络结构相比,在IWSN中将首选使用异构元素的小型世界网络。

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