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A Scalable and Secure Publish/Subscribe-Based Framework for Industrial IoT

机译:基于可扩展和安全的发布/订阅工业IOT框架

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摘要

In the emerging industrial Internet of Things (IIoT) scenario, machine-to-machine communication is a key technology to set up environments, wherein sensors, actuators, and controllers can exchange information autonomously. However, many current communication frameworks do not provide enough dynamic interoperability and security. Hence, in this article, we propose a novel communication framework based on Message Queuing Telemetry Transport (MQTT) broker bridging, which, in an IIoT scenario, can foster dynamic interoperability across different production lines or industrial sites, guaranteeing, at the same time, a higher degree of isolation and control over the information flows, thereby increasing the overall security of the whole scenario. The solution we propose also supports dynamic authentication and authorization and has been practically implemented and evaluated in a proper small-scale IIoT testbed, encompassing PLCs, IIoT gateways, and MQTT brokers with novel and extended capabilities. The evaluation results demonstrate a linear time complexity for all the considered implementations and bridging modes of the extended brokers. Moreover, all considered access token encapsulation techniques demonstrate a minimum overhead in comparison with standard MQTT brokers.
机译:在新兴的工业互联网(IIT)场景中,机器到机器通信是设置环境的关键技术,其中传感器,执行器和控制器可以自主交换信息。但是,许多当前通信框架不提供足够的动态互操作性和安全性。因此,在本文中,我们提出了一种基于消息排队遥测运输(MQTT)经纪人桥接的新型通信框架,在IIOR情景中,可以在不同生产线或工业场所促进动态互操作性,同时保证,更高程度的隔离和对信息流控制,从而提高了整个场景的整体安全性。我们提出的解决方案还支持动态认证和授权,并且已经实际上实施和评估,包括具有新颖和扩展功能的PLC,IIT网关和MQTT经纪人的适当小型IIOR测试。评估结果表明了所有被考虑的实现和扩展经纪人的桥接模式的线性时间复杂度。此外,与标准MQTT经纪人相比,所有考虑的访问令牌封装技术都证明了最小的开销。

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