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This paper addresses the challenge of modelling individual cyber-physical systems (CPS) for small and medium-sized enterprises (SMEs) in manufacturing industries. CPS are key technology building blocks for the implementation of Industrie 4.0. Especially for SMEs the increase of production efficiency and reduction of manufacturing costs through CPS offer potential to maintain their competitiveness and innovation capacity. Although SMEs perceive the potential of CPS, they often lack financial and human resources to acquire the necessary CPS-competencies as well as an overview of all the currently available technological solutions. To overcome this issue a matching platform will offer SMEs support in finding suitable CPS-components by letting them express their functional and technical requirements. The matching logic is based on a set of morphologies that encompasses the functional and requirement spectrum of CPS-components. The matching algorithm analyses the input for congruence of requirements and available technologies and suggests suitable technology combinations. This paper describes the methodology of the matching platform, and introduces the research work to define and to develop the technology morphologies. The presented results facilitate the selection and configuration of CPS for SMEs.
Datenbasierte Services rücken durch die Vernetzung zunehmend in den Fokus von Unternehmen. Für produzierende Unternehmen jeder Größe ist es immanent, die eigenen Daten stärker zu nutzen. Durch ein historisches Wachstum des Unternehmens sind IT-Lösungen oftmals über das Unternehmen verteilt und Daten werden mehrfach gehalten. Mithilfe des Konzepts eines digitalen Schattens können die aufgezeigten Herausforderungen gelöst werden. Dessen Umsetzung erfolgt über software-definierte Plattformen. Diese ermöglichen ein Abbild der relevanten Unternehmensdaten und schaffen Transparenz über aktuelle und vergangene Ereignisse. Unter Nutzung von Datenanalyseverfahren und Visualisierungssystemen tragen sie zur Entscheidungsunterstützung im Unternehmen bei. Dieser Beitrag enthält eine Definition dieses Plattformtyps und eine Morphologie zur Einordnung verschiedener Plattformen vor. Anhand des morphologischen Kastens werden die zentralen, notwendigen Merkmale einer software-definierten Plattform herausgearbeitet und beschrieben. Integrationsanforderungen zur Einführung in Unternehmen werden in den vier Dimensionen Technik, Organisation, Prozesse sowie Anforderungen zur Datenintegration dargestellt.
Ergänzt wird diese Betrachtung um Praxiserfahrungen bei der Umsetzung einer software-definierten Plattform. Damit liefert der Artikel einen Beitrag zur Diskussion um software-definierte Plattformen und unterstützt Unternehmen bei der Einführung einer solchen.
Nowadays, cyber physical systems support the improvement of efficiency in intralogistics by controlling and manipulating the production and logistic environment autonomously. Due to the complexity of the individual production processes, designing suitable cyber-physical systems based on their existing production environment is a challenge for companies.
This paper presents a new methodology on how to design cyber-physical systems conceptually to suit an individual production environment. Compared to existing design approaches, this methodology matches immediately the required functions to existing information and communication technology’s components insisting on the neutral assimilation of requirements.
Therefore, the requirement specification asks for needed functions in relating to offered functions of information and communication technology (ICT) components. The paper focusses the use case of implementing a cutting-edge mobile network technology into an existing tracking and tracing process.
ECM im Mittelstand
(2017)
Mit der ganzheitlichen Strategie des Enterprise Content Management (ECM) werden alle Dokumente eines Unternehmens verwaltet und organisiert. Durch den Einsatz geeigneter ECM Werkzeuge erhalten Unternehmen zum Beispiel Unterstützung beim effizienten Erfassen, Ablegen und Wiederauffinden von Dokumenten, bei der Abwicklung dokumentenbasierter Prozesse sowie bei der Einhaltung rechtlicher Vorgaben, etwa zur revisionssicheren Archivierung. Damit können ECM-Lösungen einen maßgeblichen Beitrag zur Digitalisierung der Geschäfts- und Arbeitswelt im Sinne des »Digital Office« leisten.
Das Konzept des umfassenden ECM ist mittlerweile in großen Unternehmen etabliert. Wesentliche Treiber sind hier neben offensichtlichen Rationalisierungseffekten und hohen Anforderungen an die Rechtssicherheit im Umgang mit Dokumenten(Compliance) vor allem auch neue Formen der Zusammenarbeit in Teams sowie die Automatisierung und Integration von Geschäftsprozessen. Auch die voranschreitende Digitalisierung von Geschäftsmodellen benötigt eine komplett digitale Unterstützung, zum Beispiel die automatisierte Ablage und Weiterverarbeitung von Verträgen oder Bankgeschäften, die im Internet geschlossen werden. Um Medienbrüche zu vermeiden und damit ein Geschäftsvorfall schnell nach den Compliance-Gesichtspunkten verarbeitet werden kann, ist eine ECM-Strategie, die der Unternehmensstrategie folgt, angeraten.
Vor diesem Hintergrund bietet die Studie »ECM im Mittelstand 2017« anhand der Aussagen von über 600 mittelständischen Unternehmen eine Bestandsaufnahme der ECM-Praxis im Mittelstand. Im Vordergrund stehen Fragen zum Begriffsverständnis, zur Verbreitung, zu Nutzen und zu Kosten von ECM-Software ebenso wie zu zukünftigen Entwicklungen und Trends rund um ECM im Mittelstand. Aufgrund vergleichbarer Fragestellungen sind in weiten Teilen Aussagen zur Entwicklung seit 2013 möglich, die auf entsprechenden Studienergebnissen aus einer Vorgängerstudie basieren.
Nowadays, the market for information and communication technologies used for IOT-applications grows daily. Since companies need technologies to transform their business processes corresponding to the digital revolution, they need to know which technologies are available, and fit the best for their use case. Their inertial issue is the lacking overview of technologies suitable to connect their production or logistics. Hence, this paper presents a methodology to select technologies (and combinations) based on their functions. It differentiates between information and communication technologies, digital technologies and connecting technologies by the physical function and its role in a cyber-physical system. Depending on the use case, the applicability of every technology varies. Due to that reason, the paper illustrates a ranked qualification of the technologies for typical use cases, focussing tracking and tracing issues in the intralogistics of producing companies. The evaluation is performed upon a literature research, a market study to identify suitable technologies, and various expert interviews to assess the applicability of the technologies.
Manufacturing companies worldwide recognized the high potential of Industrie 4.0 in order to increasing production efficiency. Key benefits include creation of integrated systems, networked products and improvement of service portfolios. However, for many companies deriving and evaluating necessary measures to use Industrie 4.0 potentials represents a major challenge. This paper introduces the "acatech Industrie 4.0 Maturity Index" as an approach to meet this challenge. The development of multidimensional maturity model intents to provide companies an assessment methodology. The aim is to capture the status quo in companies in order to be able to develop individual roadmaps for the successful introduction of Industrie 4.0 and manage the transformation progressively.
Digitalization is changing the industrial landscape in a way we did not anticipate. The manufacturing industries worldwide are working to develop strategies and concepts for what is labelled with different terms such as the Industrial Internet of Things in the USA or Industrie 4.0 in Germany. Many industrialized economies are driven by the production sector and this sector needs specific approaches and instruments to take up other than those approaches we know from start-ups and ventures coming from Silicon Valley and other places. In this paper, we demonstrate an appropriate approach to transform producing companies in a systematic and evolutionary approach.
In particular, the objective of this paper is to provide results from two initiatives which conceptually build upon each other and are of particular relevance for the production industry. First, we present a global survey on the state of implementation and the future perspectives of the concept Industrie 4.0 from 2016. Findings from this study have forced parts of the German industry to heavily invest into a common approach to accelerate change towards Industry 4.0 in order to stay competitive in worldwide economy. This approach is presented in a second part.
The digitalization of manufacturing processes is expected to lead to a growing interconnection of production sites, as well as machines, tools and work pieces. In the course of this development, new use-cases arise which have challenging requirements from a communication technology point of view. In this paper we propose a communication network architecture for Industry 4.0 applications, which combines new 5G and non-cellular wireless network technologies with existing (wired) fieldbus technologies on the shop floor. This architecture includes the possibility to use private and public mobile networks together with local networking technologies to achieve a flexible setup that addresses many different industrial use cases. It is embedded into the Industrial Internet Reference Architecture and the RAMI4.0 reference architecture. The paper shows how the advancements introduced around the new 5G mobile technology can fulfill a wide range of industry requirements and thus enable new Industry 4.0 applications. Since 5G standardization is still ongoing, the proposed architecture is in a first step mainly focusing on new advanced features in the core network, but will be developed further later.
Factory automation and production are currently
undergoing massive changes, and 5G is considered being a key
enabler. In this paper, we state uses cases for using 5G in the
factory of the future, which are motivated by actual needs of the
industry partners of the “5Gang” consortium. Based on these use
cases and the ones by 3GPP, a 5G system architecture for the
factory of the future is proposed. It is set in relation to existing
architectural frameworks.
This paper addresses the challenge of a systematic requirement-oriented configuration and selection of cyber physical systems (CPS) for SMEs. As the key technologies of realizing the digitalization and interconnection of production processes, manufacturing companies have realized the potential benefits brought by CPS. However, due to the
complexity and fast development of CPS technology, it is difficult for SMEs, which lack expertise and financial resources, to select the appropriate CPS technologies meeting both functional and financial requirements. To overcome the issue, an online matching platform is developed to let SMEs express their needs and assist them onceptualize
the individual CPS. This paper presents the matching methodology of the matching platform, which can not only match technical characteristics but also evaluate economic potentials. Then, it was demonstrated by a tracking and tracing use case in the end-of-line assembly of a small-sized German electric automobile manufacturer.