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Wireless connectivity in Industrial sensor and control networks: Challenges and issues in a real implementation for a smart production use-case

机译:工业传感器和控制网络中的无线连接:智能生产用例的实际实现中的挑战和问题

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The addition of portable devices, modern sensors and actuators for remote control, monitoring and maintenance in an industrial environment aiming to support the Industry 4.0 characteristics and capabilities, has raised the requirements for industrial connectivity. Within this concept and depending on the usage scenarios, the advancement from a limited wired communication network, w.r.t. installation flexibility and system maintainability, to a wireless connectivity platform offering the required mobility, scalability and coverage is imperative. In this paper we implement and evaluate a wireless sensor network in a real smart production use case, by setting up a LoRaWAN network in order to provide usage feasibility for long range applications that are able to serve our fabrication environment which contains different types of sensors, tools and machinery. The implementation of the network architecture focuses on a holistic concept for the data flow between the physical layer (LoRa) and the application layer protocols serving an intelligent system architecture. Wireless connectivity features such as communication range, signal quality, data rate and network scalability have been evaluated and fine-tuned in order to find a balance for the implementation of an effective WSN that overcomes the complications caused by the interference that exists within the harsh industrial environment. Our experimental measurements show the impact of interference and reveal the trade-offs among the desired connectivity features by fine tuning the variable parameters. Also, we discuss the issues and challenges faced in this use-case scenario and how these can be overcome or improved by certain compromises.
机译:旨在支持工业4.0特性和功能的工业环境中用于远程控制,监视和维护的便携式设备,现代传感器和执行器的增加,对工业连接性提出了更高的要求。在此概念内,并根据使用情况,从有限的有线通信网络(w.r.t.对于提供所需移动性,可扩展性和覆盖范围的无线连接平台而言,安装灵活性和系统可维护性势在必行。在本文中,我们通过建立LoRaWAN网络在一个实际的智能生产用例中实施和评估无线传感器网络,以便为能够服务于包含不同类型传感器的制造环境的远程应用提供使用可行性,工具和机械。网络体系结构的实现侧重于在物理层(LoRa)和服务于智能系统体系结构的应用层协议之间的数据流的整体概念。对无线连接功能(例如通信范围,信号质量,数据速率和网络可扩展性)进行了评估和微调,以找到实现有效WSN的平衡,从而克服了恶劣工业环境中存在的干扰所带来的复杂性环境。我们的实验测量结果显示了干扰的影响,并通过微调可变参数揭示了所需连接功能之间的权衡。此外,我们还将讨论此用例场景中面临的问题和挑战,以及如何通过某些折衷方案来克服或改善这些问题和挑战。

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