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Institute
- FIR e. V. an der RWTH Aachen (239)
- Produktionsmanagement (120)
- Dienstleistungsmanagement (68)
- Informationsmanagement (52)
- Business Transformation (10)
The need for a theoretical consideration of the influence of manipulable variables in various evaluation dimensions on the economic efficiency of a production system is obvious. Here it is necessary to link the relevant influencing variables and their mutual dependencies into a model, which represents the basis for the determination of the optimal operating points of the production system. In this model, formal sub-models are to be analysed and integrated, assur-ing that the state of research from various technical disciplines in production engineering, such as manufacturing technology, machine tools, logistics and production planning and control, are used to quantify the economic effect of the influencing variables.
Aus Sicht der logistischen Planung und Steuerung stellt die Beherrschung der steigenden Dynamik in der kundenindividuellen Produktion und Montage die wesentliche Herausforderung der kommenden Jahre dar. Ursachen der zunehmenden internen Dynamik sind kürzere Lieferzeiten, eine höhere Varianz der Fertigungs- und Montageprozesse (verursacht durch die zunehmende Produktvielfalt) und der Einsatz komplexer Produktionsanlagen (Substitution des Faktors Arbeit durch Kapital). Die drastische Verkürzung der Lieferzeiten hat die Auftragssituation und den Kapazitätsbedarf produzierender Unternehmen maßgeblich verändert. Die notwendigen Durchlaufzeitreduzierungen konnten nur durch eine entsprechende Reduzierung der Umlaufbestände erreicht werden. Diese Bestandssenkung hat zwangsläufig zu einer stärkeren Kopplung der einzelnen Produktionsressourcen untereinander geführt. Kapazitätsschwankungen und Prozessinstabilitäten einer Einzelressource wirken sich auf Grund der stärkeren Kopplung stärker auf die Stabilität des Gesamtsystems aus, da der Bestand nicht mehr als Dämpfer wirken kann. Gleichzeitig nehmen makroskopische, überbetriebliche Kapazitätsschwankungen in der Lieferkette zu, da die zeitliche Dämpfung fehlt.
Die steigende Varianz der Prozessketten und -zeiten verstärkt potenziell den Effekt der beschriebenen Kapazitäts- und Durchlaufzeitschwankungen. Eine „mittelwertbasierte PPS“ ist daher nicht mehr anforderungskonform. Herkömmliche Planungs- und Steuerungskonzepte, die auf diese Varianz nicht entsprechend reagieren können, tragen so unweigerlich zu einem weiteren Aufschwingen des Systems bei. Die fehlende Dämpfung führt bei schwankenden Bedarfen zu Auslastungsverlusten und steigenden Rückständen in der Produktion.
Eine Absorption der Dynamik durch Bestände und Entkopplung oder das Vorhalten von Reservekapazitäten zur Prozesssynchronisation sind heute aus Gründen des Kostendrucks und kundenindividueller Produkte nicht mehr möglich. Vielmehr sind neue Ansätze in der Planung und Steuerung von inner- und überbetrieblichen Produktionsprozessen notwendig, die die Dynamik der Prozesse und Kapazitätsbedarfe aufnehmen können, diese in Bezug zum übergeordneten Auftragsnetz bringen und Lösungen zur Absorption der Dynamik unter Berücksichtigung der wirtschaftlichen und logistischen Zielsetzungen ableiten lassen.
European machinery and equipment manufacturers face multiple logistical challenges in their daily business. Interacting in complex non-hierarchical production networks and thus living with the consequences of a lack of transparency, temporal instability, or imbalanced share of market power finally leads to an inadequate OEM’s delivery adherence which in many cases can be traced back to suppliers’ late deliveries.
This paper presents a framework for improving delivery reliability in non-hierarchical production networks by applying market mechanisms. Knowing the financial consequences of a supplier’s belated delivery provides useful information which can be applied in terms of financial incentives. The framework is supported by the results of a study which has been conducted by the authors throughout German, Spanish, and Italian machine tool manufacturers and their suppliers.
Funktionen
(2012)
Die Aufgaben der PPS werden in den direkten und indirekten Bereichen in Fertigungsunternehmen als Funktionalitäten in Informations- bzw. Anwendungssystemen umgesetzt. Informationssysteme unterstützen die Verwaltung und Bereitstellung von Informationen, die Erstellung von Plänen, die Koordination von Abteilungen, die Überwachung und Steuerung von Prozessen und weiteres.
Organizations, of all sizes, in every domain and in all geographies, are facing growing challenges to comprehend the scope of social media based technologies for their internal process use and for their networks. To assist the CIO’s and executives, FIR has developed a tool based framework to evaluate the impact of social web based collaborative technologies to support knowledge intensive processes. The FSI framework extends organizational spectrum to three categories of Formal, Semi-formal and Informal. The FSI tool places the emphasis on both business process and IT level.
The FSI framework and approach are validated in conjunction with industrial and research clients as test cases. Initial finding, reflected in this article, show a dire mismatch between the process exploitable potential level and organizational ICT profile. At the end, a set of recommendations are included for the organizational management to consider for organizational transformation.
Prozessarchitektur
(2012)
Das Aachener PPS-Modell beschreibt Aufgaben, Prozesse und Funktionen für die Produktionsplanung und -steuerung in verschiedenen Referenzsichten. Dabei liegt der Fokus auf den unterschiedlichen Aspekten der Planung und Steuerung inner- und überbetrieblicher Produktion. Die Unterscheidung in inner- und überbetriebliche Aufgaben wurde bereits im Aufgabenmodell dargestellt. Betrachtet man die Produktion in Netzwerken, so wird deutlich, dass nicht alle Aufgaben durch einen Netzwerkpartner abgedeckt werden können. Die kooperative Leistungserstellung macht es erforderlich, dass die Erfüllung einzelner Teilaufgaben durch unterschiedliche Netzwerkpartner koordiniert wird. Für die PPS in Produktionsnetzwerken werden daher die Netzwerkebene und die Ebene der einzelnen Unternehmung unterschieden.
To monetize the potential of digitalization in times of saturated markets, increased machinery and plant engineering companies are starting to transform the transaction-based business model into a customer- and service-oriented subscription business. Even though subscription offerings can create win-win situations for providers and customers, companies encounter significant difficulties in acquiring customers for this innovative business model. Historically linear acquisition processes focused on transactional product sales impede success. To identify key challenges and targeted coping strategies for customer acquisition we conducted in-depth interviews with 18 subscription managers and sales representatives from seven machinery and plant engineering case studies. In our research we uncovered four challenge dimensions: (1) lack of motivation, (2) missing skills and competences, (3) insufficient customer confidence and (4) transaction-oriented sales approach. Beyond that we derived four appropriate coping strategies (1) steering mechanisms, (2) human resource management, (3) trust building instruments and (4) systematic methodology to address them. These insights highlight the key challenges at the management level for customer acquisition that companies face when trying to initiate and sustain the transition from a purely transactional product and service business to subscription-oriented growth. Furthermore, they provide guidance how to cope with these challenges.
The planning and implementation of migration projects in global production networks is a complex planning task that is confronted with a dynamic global environment with highly complex interdependencies. Today's migration approaches are either large projects or isolated local
investments. As such, they are not suitable for simultaneously addressing interdependencies and continuity. This paper illustrates a holistic and continuous methodology for rolling migration planning and implementation in global production networks. Seven steps enable the transformation from the current state of the production network into a target state regarding internal as well as external dynamics and interactions.
The number of cyber-attacks on small and medium enterprises (SMEs) is constantly increasing. SMEs do not recognize the attacks until the damage has occurred. Only then, they fight with measures to increase IT-security and IT-safety. Many studies come to the point that this refers to a lack of budget, expertise and awareness of the need for IT-security. There are many compendia with recommendations for action, but they are too comprehensive and unspecific to the individual needs of SMEs. In this paper, we present the results of a research activity on the gaps that address the challenges faced by SMEs. In addition, we develop a concept for a serious gaming approach that includes an economic perspective on IT-security measures and shows how SMEs can derive their own IT-seurity target state
Numerous traditional, agile and hybrid development approaches have been proposed for the development of CPS. As the choice of development process is crucial to the success of development projects, it has become a major challenge to identify the best-suited process. This paper introduces a methodology for identifying the best-suited CPS development process, based on the individual boundary conditions for a certain development project within a company. The authors used a set of eight indicators to assess a CPS-development project. The results of the assessment were matched with CPS-development approaches. Based on the matching results a best-suited development process was selected. The application is shown for a use case in the German manufacturing industry. The developed method aims to reduce the risk of project failure due to the wrong choice of development process.