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Das Forschungsprojekt „Herbar Digital” [JKS00] startete 2007 mit dem Ziel der Digitalisierung des Bestands von mehr als 3,5 Millionen getrockneter Pflanzen bzw. Pflanzenteile auf Papierbögen (Herbarbelege) des Botanischen Museums Berlin. Da gelegentlich der Sammler der Pflanze unbekannt ist, wurde in der vorliegenden Arbeit ein Verfahren entwickelt, um aus kursiv geschriebenen Buchstaben deren Schreiber zu bestimmen. Dazu muss der statische Buchstabe in eine dynamische Form gebracht werden. Dies geschieht mit dem Modell einer trägen Kugel, die durch den Schriftzug rollt. Bei dieser Offline-Schreibererkennung werden verschiedene Verfahren wie die Nachbildung der Schreiblinie einzelner Buchstaben durch z.B. Legendre-Polynome verwendet. Bei Verwendung nur eines Buchstabens der Schreiber wird eine Erkennungsrate von durchschnittlich 40% erreicht. Durch Kombination von mehreren Buchstaben steigt die Erkennungsrate stark an und beträgt bei 13 Buchstaben und 93 Schreibern einer internationalen Datenbank 98,6%.
The methods developed in the research project "Herbar Digital" are to help plant taxonomists to master the great amount of material of about 3.5 million dried plants on paper sheets belonging to the Botanic Museum Berlin in Germany. Frequently the collector of the plant is unknown. So a procedure had to be developed in order to determine the writer of the handwriting on the sheet. In the present work the static character is transformed into a dynamic form. This is done with the model of an inert ball which is rolled through the written character. During this off-line writer recognition, different mathematical procedures are used such as the reproduction of the write line of individual characters by Legendre polynomials. When only one character is used, a recognition rate of about 40% is obtained. By combining multiple characters, the recognition rate rises considerably and reaches 98.7% with 13 characters and 93 writers (chosen randomly from the international IAM-database [3]). Another approach tries to identify the writer by handwritten words. The word is cut out and transformed into a 6-dimensional time series and compared e.g. by means of DTW-methods. A global statistical approach using the whole handwritten sentences results in a similar recognition rate of more than 98%. By combining the methods, a recognition rate of 99.5% is achieved.
Dieser Beitrag adressiert einleitend die aktuelle Bedrohungslage aus Sicht der Industrie mit einem Fokus auf das Feld und die Feldgeräte. Zentral wird dann die Frage behandelt, welchen Beitrag Feldgeräte im Kontext von hoch vernetzten Produktionsanlagen für die künftige IT-Sicherheit leisten können und müssen. Unter anderem werden auf Basis der bestehenden Standards wie IEC 62443-4-1, IEC 62443-4-2 oder der VDI 2182-1 und VDI 2182-4 ausgewählte Methoden und Maßnahmen am Beispiel eines Durchflussmessgerätes vorgestellt, die zur künftigen Absicherung von Feldgeräten notwendig sind.
The impact of vertical and horizontal integration in the context of Industry 4.0 requires new concepts for the security of industrial Ethernet protocols. The defense in depth concept, basing on the combination of several measures, especially separation and segmentation, needs to be complimented by integrated protection measures for industrial real-time protocols. To cover this challenge, existing protocols need to be equipped with additional functionality to ensure the integrity and availability of the network communication, even in environments, where possible attackers can be present. In order to show a possible way to upgrade an existing protocol, this paper describes a security concept for the industrial Ethernet protocol PROFINET.
Operators of production plants are increasingly emphasizing secure communication, including real-time communication, such as PROFINET, within their control systems. This trend is further advanced by standards like IEC 62443, which demand the protection of realtime communication in the field. PROFIBUS and PROFINET International (PI) is working on the specification of the security extensions for PROFINET (“PROFINET Security”), which shall fulfill the requirements of secure communication in the field.
This paper discusses the matter in three parts. First, the roles and responsibilities of the plant owner, the system integrator, and the component provider regarding security, and the basics of the IEC 62443 will be described. Second, a conceptual overview of PROFINET Security, as well as a status update about the PI specification work will be given. Third, the article will describe how PROFINET Security can contribute to the defense-in-depth approach, and what the expected operating environment is. We will evaluate how PROFINET Security contributes to fulfilling the IEC 62443-4-2 standard for automation components.
Two of the authors are members of the PI Working Group CB/PG10 Security.
The miniaturized Mössbauer-spectrometer (MIMOS II), originally devised by Göstar Klingelhöfer, is further developed by the Renz group at the Leibniz University Hanover in cooperation with the Hanover University of Applied Sciences and Arts. A new processing unit with a two-dimensional (2D) data acquisition was developed by M. Jahns. The advantage of this data acquisition is that no thresholds need to be set before the measurement. The energy of each photon is determined and stored with the velocity of the drive. After the measurement, the relevant area can be selected for the Mössbauer spectrum. Now we have expanded the evaluation unit with a power supply for a MIMOS drive and a MIMOS PIN detector. So we have a very compact MIMOS transmissions measurement setup. With this setup it is possible to process the signals of two detectors serially. Currently we are working on a parallel signal processing.
An der Fachhochschule Hannover wurde Mitte 2007 das Projekt "Herbar-Digital" gestartet. In dem Forschungsprojekt "Herbar-Digital" sollen aus 3,5 Millionen Papierbögen (Herbarbelege) des Botanischen Museums Berlin möglichst alle Objekte erkannt werden und separat verarbeitbar sein. Bei den Objekten handelt es sich um Barcodes, Tüten, Stempel, Farbtabellen, Elemente aus dem Pflanzenbereich sowie Hand- und Druckschriften. Es soll unter Zuhilfenahme des ADA-BOOST-Algorithmus vom Verfasser eine Objekterkennung realisiert werden, die folgende Eigenschaften aufweist: Position der zu erkennenden Objekte im Bild variabel, auch dreidimensionale - und konturschwache Objekte müssen erkannt werden, gleiche Objekte unterschiedlicher Form müssen erkennbar sein, das System muss lernfähig sein.
In the area of manufacturing and process automation in industrial applications, technical energy management systems are mainly used to measure, collect, store, analyze and display energy data. In addition, PLC programs on the control level are required to obtain the energy data from the field level. If the measured data is available in a PLC as a raw value, it still has to be processed by the PLC, so that it can be passed on to the higher layers in a suitable format, e.g. via OPC UA. In plants with heterogeneous field device installations, a high engineering effort is required for the creation of corresponding PLC programs. This paper describes a concept for a code generator that can be used to reduce this engineering effort.
With regard to climate change, increasing energy efficiency is still a significant issue in the industry. In order to acquire energy data at the field level, so-called energy profiles can be used. They are advantageous as they are integrated into existing industrial ethernet standards (e.g. PROFINET). Commonly used energy profiles such as PROFIenergy and sercos Energy have been established in industrial use. However, as the Industrial Internet of Things (IIoT) continues to develop, the question arises whether the established energy profiles are sufficient to fullfil the requirements of the upcoming IIoT communication technologies. To answer this question the paper compares and discusses the common energy profiles with the current and future challenges of energy data communication. Furthermore, this analysis examines the need for further research in this field.