Autor: Roman Dumitrescu

Determining a Promising Industry 4.0 Target Position

Determining a Promising Industry 4.0 Target Position

Decision-making for companies taking into account external influences
Christoph Pierenkemper, Jannik Reinhold, Roman Dumitrescu ORCID Icon, Jürgen Gausemeier
Using industry 4.0 maturity models, companies can systematically record their performance in the context of industry 4.0. When the status quo is determined, the question “Where do we want to be in future?” is usually associated at the same time. However, companies are not always in a position to introduce what is fundamentally possible. Therefore, this question is not trivial. If a company is supposedly aware of its I4.0 target position, external influences often lead to the fact that the achievement of the target is made more difficult or hindered. It is therefore important to take these circumstances into account. This paper shows how environmental developments can be taken into account when determining a promising I4.0 target position. The target position forms the starting point for the implementation of industry 4.0 in the company.
Industrie 4.0 Management | Volume 35 | 2019 | Edition 5 | Pages 30-34 | DOI 10.30844/I40M_19-5_S30-34
Managing Digital Transformation

Managing Digital Transformation

Wie Unternehmen die digitale Transformation strukturiert meistern
Roman Dumitrescu ORCID Icon, André Lipsmeier, Thorsten Westermann, Arno Kühn
Digitalization is a strategic core issue that has to be anchored in the strategy of every company. The challenge in this context is that there is no uniform pattern for the digital transformation of a company. Instead, each company has to develop its own company-specific plan how it will position itself in the context of digitalization. Furthermore, the development of an individual digitalization strategy is required. The following article presents a planning approach for the development of such a digitalization strategy, based on three major steps.
Industrie 4.0 Management | Volume 35 | 2019 | Edition 4 | Pages 55-58 | DOI 10.30844/I40M_19-4_S55-58
Integrated System and Test Specification

Integrated System and Test Specification

A Model-based Approach
Ruslan Bernijazov, Michael Hillebrand, Roman Dumitrescu ORCID Icon
Space robotics is characterized by its complexity. However validation on real prototype is costly and under real environmental conditions also limited. Thus the continuous virtual commission is crucial. This article describes a new approach for an integrated system- and test specification that fulfils the current ECSS standards and enables an early verification and validation of the system under development. This approach was validated on several space robotics applications but is not limited to this field and can be applied to other areas such as autonomous driving or automation.
Industrie 4.0 Management | Volume 35 | 2019 | Edition 1 | Pages 15-18
Autonomous Systems in Production

Autonomous Systems in Production

Toward a planning and development methodology
Roman Dumitrescu ORCID Icon, Thorsten Westermann, Tommy Falkowski
The performance of assistance systems, especially in the automotive sector, has become an unique selling point. The trend toward Autonomous driving represents the expected impact of innovation resulting from the exploitation of the latest technologies. Besides autonomous driving, other areas of application for autonomous systems could trigger social change - the prime example being industrial production. The following article presents a planning approach tailored to the complex engineering task of planning and designing autonomous systems for industrial applications.
Industrie 4.0 Management | Volume 34 | 2018 | Edition 6 | Pages 17-20 | DOI 10.30844/I40M_18-6_17-20
Innovations in the Age of Digitization

Innovations in the Age of Digitization

Roman Dumitrescu ORCID Icon, Jürgen Gausemeier
Digitization creates fascinating opportunities. However, we have to recognize that Germany needs more than the technology leadership in order to succeed in the long term. We must be able to transform the technology leadership we take in the field of industry 4.0 for example into added value, entrepreneurial success and employment. Essential levers to success are data based services, business models, positioning in platform economy, foundation culture, shaping the digitized working environment and, last but not least, Systems Engineering. In any case, our success will be a matter of strategic operation and systemic thinking and acting.
Industrie 4.0 Management | Volume 34 | 2018 | Edition 2 | Pages 7-11
Intelligent Technical Systems OstWestfalenLippe

Intelligent Technical Systems OstWestfalenLippe

Mit Intelligenten Technischen Systemen an die Spitze
Jürgen Gausemeier, Christian Tschirner, Roman Dumitrescu ORCID Icon
The leading-edge Cluster Intelligent Technical Systems OstWestfalenLippe (it’s OWL) focuses on the innovation leap from mechatronics to systems with inherent intelligence. Within this paper we explain the technological evolution and its drivers for such intelligent technical systems. This leads to a technological concept which has been chosen as basis for the leading-edge cluster’s technology platform. Finally we present the cluster’s structure and its projects.
Industrie Management | Volume 29 | 2013 | Edition 1 | Pages 49-52