Refine
Document Type
- Article (2)
- Book (2)
- Part of a Book (6)
- Conference Proceeding (16)
- Contribution to a Periodical (11)
- Doctoral Thesis (1)
- Lecture (2)
- Internet Paper (1)
- Report (6)
- Working Paper (9)
Language
- German (32)
- English (23)
- Multiple languages (1)
Is part of the Bibliography
- no (56)
Keywords
- 02 (1)
- 3D-Druck (1)
- AR (1)
- Additive Fertigung (1)
- Additive manufacturing (1)
- After-Sales (1)
- Arbeit 4.0 (1)
- Arbeitsgestaltung (1)
- Arbeitswelt 4.0 (1)
- As-a-Service (1)
Institute
Das FIR an der RWTH Aachen widmet sich gemeinsam mit dem Forschungskonsortium, bestehend aus dem Fraunhofer ILT, der DMG Mori Spare Parts GmbH, der Materialise GmbH, der TOP Mehrwert-Logistik GmbH und der Software AG, der Entwicklung einer unternehmensübergreifenden Softwareplattform zur Realisierung eines Wertschöpfungsnetzwerks für eine agile Logistiklösung zu Herstellung von Neu- und Ersatzteilen unter Nutzung der additiven Fertigung. Ziel ist die Entwicklung und prototypische Implementierung einer unternehmensübergreifenden softwarebasierten Plattform, die die zentralen Koordinationsfunktionen bereitstellt.
In the food industry, a very large potential of data ecosystems is seen, in which data is understood, exchanged and monetized as an economic asset. However, despite the enormous economic potential, companies in the food industry continue to rely on traditional, product-oriented business models. Existing data in the value chain of industrial food production, e.g., in harvesting, logistics, and production processes, is primarily used for internal optimization and is not monetized in the form of data products. Especially the pricing of data products is a key challenge for data-based business models due to their special characteristics compared to conventional, analog offerings and multiple design options. The goal of this work is therefore to solve this issue by developing a framework that allows the identification of pricing models for data products in the industrial food production. For this purpose, following the procedure of typology formation, essential design parameters and the respective characteristics are derived. Furthermore, three types for pricing models of data products are shown. The results will serve not only stakeholders in the food industry but also manufacturing companies in general as input for an orientation of their databased business models.
Pricing for Smart-Product-Service-Systems in Subscription Business Models for Production Industries
(2021)
In the production industry, subscription business models have the potential to create long-term relationships where a supplier provides a continuous value-oriented service to a customer based on digitalisation. Monetising this increase in value through pricing represents a central challenge for suppliers in subscription business. Unlike the current dominant transactional business, the focus of pricing is on the value-in-use of the customer (e.g. on the increase in output for the customer). In this regard, there is so far no pricing approach for practice that allows the linking of the performance data of the customer with the periodically charged price. However, in subscription businesses, such an approach is required to create win-win situations for the customer and supplier through continuous performance improvement. Therefore, this paper develops a novel process model for pricing of smart-product-service-systems in subscription business for production industries. This process can serve as basis for suppliers of subscriptions in the production industry to align pricing with the created value-in-use. In the long term, this allows companies to systematically develop their pricing to monetise the potential of digitalisation.
Electricity generated by wind turbines (WT) is a pillar of the transition to renewable energy [1]. In order to economically utilize WTs, operating and maintenance costs, which account for 25% of total electricity generation costs in onshore WTs, are a focus of cost reduction activities [2]. A prescriptive maintenance approach can support in achieving this goal. Prescriptive maintenance is a maintenance approach, where asset condition data is collected and analyzed to recommend specific actions to prevent breakdowns and reduce downtimes. However, the processing and analysis of data is quite complex. Especially unstructured data (such as comments of service technicians in free text fields) is often left unused, as companies, mostly SMEs lack the capacity to carry out these analyses. In this work we propose an approach to utilize the information from service reports, maintenance reports as well as status records from SCADA systems for the development of a prescriptive maintenance approach to onshore WTs. To achieve this, an ontology was utilized in this approach to codify implicit knowledge of service technicians and aid in making unstructured data usable for further analysis. The ontology was used to link historical service and maintenance reports with status codes, thus enabling automated analysis. In interviews with WT topic experts and through further research, damage mechanisms and corresponding maintenance measures were identified and a measure catalogue was developed to support service and maintenance activities. The recognition of the root cause of problems allows for a prescriptive maintenance approach that recommends targeted actions to reduce downtimes and optimize maintenance activities, it also allows to effectively control the outcome of maintenance activities and optimize their execution.
Digitale Plattformen verfügen über das Potenzial, gesamte Branchen in kürzester Zeit grundlegend zu verändern und bislang profitable Geschäftspraktiken abzulösen. Dieses Phänomen aus dem Business-to-Consumer(B2C)-Bereich stellt auch zunehmend Unternehmen aus dem Business-to-Business(B2B)-Bereich vor einen Paradigmenwechsel. Große Technologiekonzerne wie Siemens oder Bosch haben mit Mindsphere und Bosch-IoT-Suite-Plattformen am Markt etabliert, welche diese neuen Wege der Wertschöpfung vorgeben. Kleine und mittlere Unternehmen (KMU) des Maschinen- und Anlagenbaus sind dabei dem Risiko ausgesetzt, ohne eine eigene Plattformstrategie im Wettbewerb verdrängt zu werden. Deshalb ist das Verständnis von plattformbasierten Geschäftsmodellen und deren Umsetzung elementar. Zu Beginn muss die Entscheidung getroffen werden, ob einer bestehenden Plattform beigetreten oder eine neue Plattform gegründet werden soll. Zur Entscheidungsunterstützung müssen relevante Kriterien definiert und in einem weiteren Schritt erhoben und bewertet werden. Ein Plattformbeitritt kann als Erweiterung der Digitalisierungsstrategie aufwandsarm in die bestehende Strategie integriert werden. Dahingegen ist der Aufbau einer eigenen Plattform ein aufwändiges und kostenintensives Projekt: Begonnen mit der Identifikation und Auswahl von geeigneten plattformbasierten Geschäftsmodellen, über den Aufbau eines plattformbasierten Ökosystems bis hin zu der Skalierung der digitalen Plattform. Wie KMU des Maschinenbaus diese Herausforderungen schrittweise angehen können und so ein hybrides Geschäftsmodell unter Einbezug der Möglichkeiten digitaler Plattformen umsetzen können, ist das Ergebnis dieses Forschungsprojekts. PlattformHybrid gibt KMU einen Praxisleitfaden mit Roadmap an die Hand, welcher zum einen aufzeigt, welche plattformbasierten Geschäftsmodelle im Maschinen- und Anlagenbau existieren und zum anderen, wie eine Plattformstrategie als Ergänzung zu dem bestehenden Geschäft aufgebaut werden kann.
Many industrial companies face their digital transformation. In addition to an existing portfolio of products and services, new digital services are being developed to offer a portfolio of smart product service systems (Smart PSS). While the development of new digital services is rarely a problem for the companies, the organization of sales and distribution of Smart PSS in particular is a key issue. The sales of Smart PSS differs considerably from the sales of only products or services and must therefore be designed differently in order to meet customer requirements and successfully commercialize the developed Smart PSS. This paper therefore describes how the sales organization of Smart PSS should be designed successfully in various forms. The network thinking methodology is used in combination with a case study research approach to describe the connection between the offered portfolio, the customer requirements and the different elements of a sales organization. Furthermore, four different types of a sales organization for Smart PSS are described. This paper gives a recommendation for companies on a design of their sales organizations on which practical implications may be developed.
Operating and maintenance costs, which account for 25% of total costs, are a powerful lever in reducing the electricity generation costs of onshore wind turbines (WT). These costs can be reduced by a condition-orientated maintenance approach. A condition-oriented maintenance strategy optimizes maintenance tasks by executing them with varying levels of detail and focus depending on the system and life cycle phase. OEMs evaluate operating data and structured data from the maintenance history for this purpose, but SMEs lack the capacity for this evaluation. In particular, the unstructured descriptive comments in the maintenance reports generated by service technicians remain unused. In this work, we propose a framework to incorporate this information from the maintenance reports along with the status records from the SCADA system. For this purpose, a mechanism has to be developed to make the contents of the service reports machine-evaluable. The mechanism used in this approach is an ontology, which enables the codification of implicit knowledge such as the experience knowledge of the service technicians. The ontology’s purpose is to link status codes of onshore WT with historical maintenance reports and thereby enabling an automated evaluation. Using an API (application programming interface), the ontology can be integrated into an algorithm to analyse status data and maintenance documents. In this manner, recommendations for actions can be derived and maintenance tasks can be optimized.
Monetizing Industry 4.0: Design Principles for Subscription Business in the Manufacturing Industry
(2019)
Subscription business models have a major role for monetizing products and services for manufacturing companies in the age of Industry 4.0. As the manufacturing industry has difficulties generating revenues through digitalization, the implementation of innovative business models are essential to remain successful. Physical assets are often capital-intensive and require a more complex manufacturing process than subscription business models. Moreover, subscription models can focus on the individual customer benefit and a consistent service transformation, constituting a unique selling proposition and a competitive advantage. Hence, the following paper provides a management model that enables manufacturing companies to successfully realize the transformation towards a subscription business model. The management model presents four major fields of action, each matched with one design principle that must be considered when dealing with subscription models in the manufacturing industry. These principles were determined by an in-depth case study analysis among various manufacturing companies. Opportunities, challenges and recommendations for action were then systematically derived and integrated into the management model.
Industrie 4.0 ist in den Bilanzen deutscher Industrieunternehmen aktuell noch nicht angekommen. Seit der Einführung des Begriffs „Industrie 4.0“, als Bezeichnung für die massenhafte Verbindung von Informations- und Kommunikationstechnologien mit der industriellen Produktion, wird das Thema national wie international in Wirtschaft und Forschung in zahlreichen Initiativen und Projekten behandelt. Enorme wirtschaftliche Potenziale wurden und werden in diversen Studien beziffert, um den revolutionären Charakter dieser Entwicklung zu unterstreichen.
This chapter addresses the market launch and sales of smart services. It opens with an introduction of the new challenges that the market launch of smart services creates for companies. Then follows the discussion of a four-phase approach to the market launch of smart services. Subsequently, successful practices are presented for this approach along eight design fields of the market launch. [https://link.springer.com/chapter/10.1007/978-3-030-58182-4_8]