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Institute
- Fakultät I - Elektro- und Informationstechnik (20) (remove)
The trend towards the use of Ethernet in automation networks is ongoing. Due to its high flexibility, speed, and bandwidth, Ethernet nowadays is not only widely used in homes and offices worldwide but finding its way into industrial applications. Especially in automation processes, where many field devices send data in relative short time spans, the requirements for a safe and fast data transfer are high. This makes the use of industrial Ethernet essential. A new hardware-layer, specifically tailored for industrial applications, has been introduced in the form of Ethernet-APL (‘Advanced Physical Layer’). Ethernet-APL is based on the Ethernet standard and implements a two-wire Ethernet-based communication for field devices and provides data and power over a two-wire cable. The operation in areas with potentially explosive atmosphere is also possible. This enables a modular, fast, and transparent Ethernet network structure throughout the entire plant. However, by integrating Ethernet-APL into the field, industrial networks in the future will face the challenge of operating at varying datarates at different locations in the network, resulting in a ‘mixed link speed’ network. This can lead to limitations in packet-throughput and consequently to potential packet loss of system relevant data, which must be avoided. Therefore, the purpose of this thesis is to investigate the potential of packet loss in ‘mixed link speed’ networks.
Kleine und mittlere Unternehmen (KMU), die dem Bereich der Automatisierungstechnik zuliefern, stehen vor der wachsenden Herausforderung, dass Kundinnen und Kunden vermehrt Produkte fordern, die im Sinne der IT-Sicherheit „sicher“ entwickelt werden. Die Norm IEC 62443-4-1 beschreibt einen solchen sichereren Produkt-Entwicklungslebenszyklus. Derartige Standards stellen hohe Anforderungen an die Organisation der Prozesse. Um die Umsetzung dieses Prozesses auch KMU zu ermöglichen, werden im folgenden Dokument Musterprozesse beschrieben, die Unternehmen befähigen die Anforderungen zu verstehen und im eigenen Unternehmen ein-, bzw. fortzuführen.
This paper reflects the content of the presentation “The Next Generation: Ethernet-APL for Safety Systems” at the NAMUR Annual General Meeting 2022. It deals with the use of the Ethernet Advanced Physical Layer (Ethernet-APL) in combination with the PROFINET/PROFIsafe protocol for safety applications. It describes the virtues of the digital communication between the field and safety system. In parallel the aspect of OT security for this use case is touched as well. The paper proposes a secure architecture, where safety- and non-safety field communications are still separated. At the end a set of requirements for the development of future APL devices is described.
Das PROFINET Protokoll wurde in der aktuellen Version um Security-Funktionen erweitert. Damit können für PROFINET flexible Netzwerkarchitekturen unter Berücksichtigung von OT-Security Anforderungen entworfen werden, die durch die bisher erforderliche Netzwerksegmentierung nicht möglich waren. Neben den Herstellern der Protokollstacks sind nachfolgend auch die Komponentenhersteller gefordert, eine sichere Implementierung in ihren Geräten umzusetzen. Die erforderlichen Maßnahmen gehen dabei über die Nutzung eines sicheren Protokollstacks hinaus. Der Beitrag zeigt am Beispiel eines Ethernet-APL Messumformers mit PROFINET-Kommunikation die künftig von PROFINET-Geräteherstellern zu berücksichtigenden technischen und organisatorischen Rahmenbedingungen.
The PROFINET protocol has been extended in the current version to include security functions. This allows flexible network architectures with the consideration of OT security requirements to be designed for PROFINET, which were not possible due to the network segmentation previously required. In addition to the manufacturers of the protocol stacks, component manufacturers are also required to provide a secure implementation in their devices. The necessary measures go beyond the use of a secure protocol stack. Using the example of an Ethernet-APL transmitter with PROFINET communication, this article shows which technical and organizational conditions will have to be considered by PROFINET device manufacturers in the future.