Department of Information Engineering, University of Padova, 35131 Padova, Italy.
Autec s.r.l., 36030 Caldogno, Italy.
Sensors (Basel). 2021 Sep 10;21(18):6073. doi: 10.3390/s21186073.
Functional safety networks are becoming of paramount importance in industrial systems, due to the progressive innovation introduced by the Industry 4.0 paradigm, characterized by high production flexibility, reliability and scalability. In this context, new and challenging applications have emerged such as hyperautomation, which refers to the combination of machine vision, robotics, communication, and learning, with the explicit involvement of humans. This requires the pervasive and ubiquitous connectivity encompassed by the Industrial Internet of Things, typically achieved via wireless systems. As an example, wireless communications are today fundamental to open up to new categories of autonomous devices that can actively collaborate with human personnel in the production process. This challenging scenario has important implications for safety. Indeed, a reliable coordination among sensors, actuators and computing systems is required to provide satisfactory levels of safety, especially in the case of innovative processes and technologies, such as mobile and collaborative robotics. Hence, it becomes imperative to ensure the correct transfer of safety-critical data via communication networks. In this paper, we address the challenges concerned with functional safety networks and protocols in Industrial Internet of Things ecosystems. We first introduce the design characteristics of functional safety networks and discuss the adoption of safety protocols over wireless networks. Then, we specifically address one of such protocols, namely Fail Safety over EtherCAT (FSoE), and provide the results of an extensive experimental session carried out exploiting a prototype system, implemented using commercial devices based on a WiFi network. Finally, the outcomes of the experiments are used as a basis for a discussion about future trends of functional safety in the Industrial Internet of Things era.
功能安全网络在工业系统中变得至关重要,这是由于工业 4.0 范式引入的渐进式创新,其特点是生产灵活性高、可靠性高和可扩展性强。在这种情况下,出现了新的具有挑战性的应用,例如超自动化,它是机器视觉、机器人技术、通信和学习的结合,明确涉及人类。这需要工业物联网所包含的普遍和无处不在的连接,通常通过无线系统来实现。例如,无线通信对于开拓新类别的自主设备至关重要,这些设备可以在生产过程中与人工人员积极协作。这种具有挑战性的情况对安全性有重要影响。事实上,需要传感器、执行器和计算系统之间可靠的协调,以提供令人满意的安全水平,特别是在移动和协作机器人等创新流程和技术的情况下。因此,必须确保通过通信网络正确传输关键安全数据。在本文中,我们解决了工业物联网生态系统中功能安全网络和协议的挑战。我们首先介绍功能安全网络的设计特点,并讨论在无线网络上采用安全协议。然后,我们特别针对其中一个协议,即 EtherCAT 上的故障安全 (FSoE) 进行了介绍,并提供了使用基于 WiFi 网络的商业设备实现的原型系统进行广泛实验的结果。最后,根据实验结果讨论了工业物联网时代功能安全的未来趋势。