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Wireless Cloud Networks for the Factory of Things: Connectivity Modeling and Layout Design

机译:物联网的无线云网络:连接建模和布局设计

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Large-scale adoption of dense cloud-based wireless network technologies in industrial plants is mandatorily paired with the development of methods and tools for connectivity prediction and deployment validation. Layout design procedures must be able to certify the quality (or reliability) of network information flow in industrial scenarios characterized by harsh propagation environments. In addition, these procedures must account for possibly coexisting heterogeneous radio access technologies as part of the Internet of Things (IoT) paradigm, easily allow post-layout validation steps, and be integrated by industry-standard CAD-based planning systems. The goal of the paper is to set the fundamentals for comprehensive industry-standard methods and procedures supporting plant designer during wireless coverage prediction, virtual network deployment, and post-layout verification. The proposed methods carry out the prediction of radio signal coverage considering typical industrial environments characterized by highly dense building blockage. They also provide a design framework to properly deploy the wireless infrastructure in interference-limited radio access scenarios. In addition, the model can be effectively used to certify the quality of machine-type communication by considering also imperfect descriptions of the network layout. The design procedures are corroborated by experimental measurements in an oil refinery site [modeled by three-dimensional (3-D) CAD] using industry-standard ISA IEC 62734 devices operating at 2.4 GHz. A graph-theoretic approach to node deployment is discussed by focusing on practical case studies, and also by looking at fundamental connectivity properties for random deployments.
机译:在工厂中大规模采用基于云的密集无线网络技术与强制性连接预测​​和部署验证的方法和工具的开发是强制性的。布局设计程序必须能够证明以恶劣的传播环境为特征的工业场景中网络信息流的质量(或可靠性)。此外,这些过程必须考虑到可能作为物联网(IoT)范例的一部分而共存的异构无线电访问技术,必须轻松进行布局后验证步骤,并由基于行业标准基于CAD的计划系统进行集成。本文的目的是为在无线覆盖范围预测,虚拟网络部署和布局后验证期间支持工厂设计人员的综合行业标准方法和程序奠定基础。所提出的方法考虑到典型的工业环境中以高密度建筑阻塞为特征的无线电信号覆盖范围的预测。它们还提供了一个设计框架,可以在受干扰限制的无线电访问场景中正确部署无线基础架构。此外,通过考虑网络布局的不完善描述,该模型可以有效地用于验证机器类型通信的质量。使用在2.4 GHz下运行的行业标准ISA IEC 62734装置在炼油厂进行的实验测量(通过三维(3-D)CAD建模)证实了设计程序。通过关注实际案例研究以及通过查看随机部署的基本连接属性来讨论图理论的节点部署方法。

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