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Networked digitalisation as an enabler for smart products and data-based business models presents companies with numerous and diverse challenges on their way through the digital transformation. Various reference architecture models have been developed in recent years to support these companies. A detailed analysis of these and in particular their use by companies quickly showed that currently existing reference models have major weaknesses in their practical suitability. With the Aachen Digital Architecture Management (ADAM), a framework was developed that specifically addresses the weaknesses of existing reference architectures and specifically takes up their strengths. As a holistic model, specially developed for use by companies, ADAM structures the digital transformation of companies in the areas of digital infrastructure and business development starting from customer requirements. Systematically, companies are enabled to drive the design of the digital architecture, taking into account design fields. The description of the design fields offers a detailed insight into the essential tasks on the way to a digitally networked company. The model is not only a structuring aid, but also contains a construction kit with the design fields to configure the procedure in the digital transformation. The procedure differentiates between the development of the digitalisation strategy and the implementation of the digital architecture. Three different case studies also show how ADAM is used in industry, what structuring support it can provide and how the digital transformation can be configured. The breadth and depth of ADAM enable companies to take the path of digital transformation systematically and in a structured manner, without ignoring the value-creating components of digitalisation. This qualifies ADAM as a sustainability-oriented framework, as it places the economic scaling, needs-based adaptation and future-oriented robustness of solution modules in the focus of digital transformation.
Digital platforms act as mediator for many types of transactions and processes in various areas in business life. Especially, IoT platforms find increased use within companies. Still, the allocation of computation workload between a platform and exist-ing information systems is not clear. At the same time, companies have no guideline, which platform to choose to facilitate intra-com-pany optimizations. The platforms in the market are not fully designed or tailored for meeting the special needs of companies - especially in the manufacturing industry. To tackle these challenges, this article first gives an overview of the Internet of Production reference framework. In that context, it secondly investigates 212 IoT platforms in the market and then chooses the best options by stepwise narrowing down their number. Following, those selected platforms are described in detail. Additionally, the article provides a comparison of selected IoT platforms, which then creates the general framework of a platform especially designed for the manufacturing industry in terms of its features and functionalities. This reference platform architecture is developed for reaching the potential of the Internet of Production. This general framework and the representative reference architecture can help companies and software vendors to implement the Internet of Production reference architecture by creating an IoT platform, which fits its needs.