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Wired and wireless reliable real-time communication in industrial systems

机译:工业系统中的有线和无线可靠实时通信

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摘要

In modern factory automation systems, data communication plays a vital role. Different nodes like control systems, sensors and actuators can communicate over a wireless or wired industrial network. The data traffic generated is often scheduled for periodic transmission, where each single message or packet must arrive in time. For this real-time communication, methods have been developed to support communication services with a guaranteed throughput and delay bound for such periodic traffic, but merely under the assumption of error-free communication. However, the possibility for errors in the transmission still exists due to, e.g. noise or interference. A node receiving sensor values from a sensor in the system might then be forced to rely upon an older sensor value from the latest period, possibly leading to inaccuracies in control loops which can compromise the functioning of the system. In safety-critical systems, redundant networks or communication channels are frequently added to cope with errors, leading to more expensive systems. In this chapter, we will describe an alternative approach where erroneous data packets are retransmitted in a way that does not jeopardise any earlier stated real-time guarantees for ordinary transmissions. Using our framework, the reliability of real-time communication can be increased in a more cost-efficient way. We describe in this chapter an overview of our framework for reliable real-time communication, while details of our approach can be found in our earlier publications. In the light of the emerging use of wireless communication, the framework proves to be especially useful due to the high bit error rate inherent to the wireless medium. However, the framework is naturally also attractive for wired communication systems.
机译:在现代工厂自动化系统中,数据通信起着至关重要的作用。诸如控制系统,传感器和执行器之类的不同节点可以通过无线或有线工业网络进行通信。通常将生成的数据流量安排为定期传输,其中每个单个消息或数据包必须及时到达。对于这种实时通信,已经开发了方法来支持通信服务,该通信服务具有保证的吞吐量和针对这种周期性业务的延迟限制,但是仅在无差错通信的前提下。但是,由于例如以下原因,仍然存在传输错误的可能性。噪音或干扰。然后,可能会迫使从系统中的传感器接收传感器值的节点依赖于最近周期中较旧的传感器值,这可能导致控制回路不准确,从而可能损害系统的功能。在对安全至关重要的系统中,经常会添加冗余网络或通信通道以应对错误,从而导致系统更加昂贵。在本章中,我们将介绍一种替代方法,其中错误的数据包将以不会损害任何先前规定的常规传输实时保证的方式重新传输。使用我们的框架,可以以更具成本效益的方式提高实时通信的可靠性。我们在本章中描述了可靠的实时通信框架的概述,而有关方法的详细信息可以在我们较早的出版物中找到。鉴于无线通信的新兴使用,由于无线介质固有的高误码率,该框架被证明特别有用。但是,该框架自然也对有线通信系统具有吸引力。

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