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Evaluation of LoRaWAN for Sensor Data Collection in an IIoT-based Additive Manufacturing Project

机译:IIOT系添加剂制造项目中LoraWan对传感器数据收集的评估

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The continuous evolution of additive manufacturing allows to produce innovative objects that are adopted in several diverse fields of applications. This trend can be further enhanced by the spreading of the Industrial Internet of Things (IIoT) paradigm which ensures effective interconnection among distributed, possibly heterogeneous, components and allows remote access by means of commercial devices such as PCs, tablets and smartphones. In this paper, we address a large additive manufacturing project which effectively exploits an IIoT architecture by embedding sensors (temperature, humidity, light, etc.) within the produced artifacts, so that they can make available diverse measurement data collected during both the production process (in real-time) and the subsequent lifetime of the artifacts, enabling further off-line analyses. This clearly represents an innovative and challenging feature that needs to be adequately investigated. To this regard, after describing the automation system of the project, we focus on the wireless system that implements the collection of measurements by the sensors within the artifacts. The design process led to the selection of a Low Power Wide Area Network, namely LoRaWAN, as a suitable communication solution. In this respect, we present here the tests performed to assess the actual feasibility and performance of such network in this specific application context. The obtained results are encouraging, since the sensors within the artifacts revealed able to exchange the required measurement data with the automation system in an effective way.
机译:添加剂制造的连续演变允许生产在几种不同应用领域采用的创新物体。这些趋势可以通过展开工业互联网(IIOT)范式来进一步增强,这确保了分布式,可能异构,组件之间的有效互连,并允许通过诸如PC,平板电脑和智能手机等商业设备进行远程访问。在本文中,我们解决了一个大型添加剂制造项目,通过将所生产的伪像内的传感器(温度,湿度,光等)嵌入了IIOT架构,使得它们可以在生产过程中收集的可用性测量数据进行利用(实时)和伪影的随后寿命,从而实现了进一步的离线分析。这清楚地代表了需要充分调查的创新和具有挑战性的特征。在这方面,在描述项目的自动化系统之后,我们专注于实现伪像内传感器的测量集合的无线系统。设计过程导致选择低电源广域网,即洛拉望,作为合适的通信解决方案。在这方面,我们在这里展示了在此特定应用上下文中评估这种网络的实际可行性和性能的测试。获得的结果是令人鼓舞的,因为伪像内的传感器显示能够以有效的方式将所需的测量数据与自动化系统交换。

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