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基于无人机和云计算的智能工业物联网监控与控制系统应用于混凝土搅拌站

Smart Industrial IoT Monitoring and Control System Based on UAV and Cloud Computing Applied to a Concrete Plant.

作者信息

Salhaoui Marouane, Guerrero-González Antonio, Arioua Mounir, Ortiz Francisco J, El Oualkadi Ahmed, Torregrosa Carlos Luis

机构信息

Department of Automation, Electrical Engineering and Electronic Technology, Universidad Politécnica de Cartagena, Plaza del Hospital 1, 30202 Cartagena, Spain.

Laboratory of Information and Communication Technologies (LabTIC), National school of applied sciences of Tangier (ENSATg), Abdelmalek Essaadi University, ENSA Tanger, Route Ziaten, BP 1818, Tanger, Tétouan 93000, Morocco.

出版信息

Sensors (Basel). 2019 Jul 28;19(15):3316. doi: 10.3390/s19153316.

Abstract

Unmanned aerial vehicles (UAVs) are now considered one of the best remote sensing techniques for gathering data over large areas. They are now being used in the industry sector as sensing tools for proactively solving or preventing many issues, besides quantifying production and helping to make decisions. UAVs are a highly consistent technological platform for efficient and cost-effective data collection and event monitoring. The industrial Internet of things (IIoT) sends data from systems that monitor and control the physical world to data processing systems that cloud computing has shown to be important tools for meeting processing requirements. In fog computing, the IoT gateway links different objects to the internet. It can operate as a joint interface for different networks and support different communication protocols. A great deal of effort has been put into developing UAVs and multi-UAV systems. This paper introduces a smart IIoT monitoring and control system based on an unmanned aerial vehicle that uses cloud computing services and exploits fog computing as the bridge between IIoT layers. Its novelty lies in the fact that the UAV is automatically integrated into an industrial control system through an IoT gateway platform, while UAV photos are systematically and instantly computed and analyzed in the cloud. Visual supervision of the plant by drones and cloud services is integrated in real-time into the control loop of the industrial control system. As a proof of concept, the platform was used in a case study in an industrial concrete plant. The results obtained clearly illustrate the feasibility of the proposed platform in providing a reliable and efficient system for UAV remote control to improve product quality and reduce waste. For this, we studied the communication latency between the different IIoT layers in different IoT gateways.

摘要

无人驾驶飞行器(UAV)如今被视为大面积数据采集的最佳遥感技术之一。除了量化生产和辅助决策之外,它们现在还被用作工业领域的传感工具,以主动解决或预防许多问题。无人机是一个高度一致的技术平台,可实现高效且具成本效益的数据收集和事件监测。工业物联网(IIoT)将来自监测和控制物理世界的系统的数据发送到数据处理系统,云计算已证明是满足处理需求的重要工具。在雾计算中,物联网网关将不同对象连接到互联网。它可以作为不同网络的联合接口运行,并支持不同的通信协议。人们在开发无人机和多无人机系统方面投入了大量精力。本文介绍了一种基于无人驾驶飞行器的智能工业物联网监控系统,该系统使用云计算服务,并将雾计算作为工业物联网各层之间的桥梁。其新颖之处在于,无人机通过物联网网关平台自动集成到工业控制系统中,而无人机拍摄的照片则在云端进行系统且即时的计算和分析。无人机对工厂的视觉监控和云服务实时集成到工业控制系统的控制回路中。作为概念验证,该平台在一家工业混凝土工厂的案例研究中得到了应用。所获得的结果清楚地说明了所提出平台在提供可靠且高效的无人机远程控制系统以提高产品质量和减少浪费方面的可行性。为此,我们研究了不同物联网网关中不同工业物联网层之间的通信延迟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c381/6695929/a337b8a33f49/sensors-19-03316-g001.jpg

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