@inbook{27108,
  author       = {{Dangelmaier, Wilhelm and Gausemeier, Jürgen}},
  booktitle    = {{Intelligente Technische Systeme – Lösungen aus dem Spitzencluster it’s OWL}},
  publisher    = {{Springer-Verlag GmbH Deutschland}},
  title        = {{{Intelligente Arbeitsvorbereitung auf Basis virtueller Werkzeugmaschinen}}},
  year         = {{2019}},
}

@inproceedings{25100,
  author       = {{Akbulut, Akin and Laroque, Christoph and Dangelmaier,  Wilhelm}},
  editor       = {{Wenzel, Sigrid and  Peter, Tim}},
  pages        = {{189 -- 198}},
  publisher    = {{Kassel University Press}},
  title        = {{{Automatisierte Modellverifikation mithilfe einer Äquivalenzprüfung an einem Referenzmodell}}},
  year         = {{2017}},
}

@book{25251,
  abstract     = {{n the multi-volume work on "Theory of Production", the production models and processes born today from practice are to be derived for the first time on a mathematically justified basis and thus also given the production economy a scientific basis. A constructivist point of view is to be set aside for “we just organized our company that way and it has proven itself”, and so the many descriptive “factory management teachings” are to be replaced. Volume 1 contains the basics of logic, set theory and algebra. The production-relevant conceptions of systems theory are for the first time completely mapped to constructs of formal logic, propositional and predicate logic consistently presented using examples. The predicate logic strikes the bow to the NC program; all parameters of a machining production are derived explicitly. An application example of the set-theoretical concepts is the computer-aided design, the relational calculus is mapped, for example, to product structures, replacement parts and identical parts. The basics of algebra deal in detail with the algebraic systems with internal connections that are important for engineering. Rotating tool magazines are mentioned here as an example. Algebraic systems with external links deal in particular with the handling of matrices. The basics of classifying, ordering and measuring conclude this volume. The basics of algebra deal in detail with the algebraic systems with internal connections that are important for engineering. Rotating tool magazines are mentioned here as an example. Algebraic systems with external links deal in particular with the handling of matrices. The basics of classifying, ordering and measuring complete this volume. The basics of algebra deal in detail with the algebraic systems with internal connections that are important for engineering. Rotating tool magazines are mentioned here as an example. Algebraic systems with external links deal in particular with the handling of matrices. The basics of classifying, ordering and measuring conclude this volume.}},
  author       = {{Dangelmaier, Wilhelm}},
  publisher    = {{Springer-Verlag}},
  title        = {{{Production theory 1}}},
  year         = {{2017}},
}

@book{25252,
  abstract     = {{In the multi-volume work on "Theory of Production", the production models and processes born today from practice are to be derived for the first time on a mathematically justified basis and thus also given the production economy a scientific basis. A constructivist point of view is to be set aside for “we just organized our company that way and it has proven itself”, and so the many descriptive “factory management teachings” are to be replaced. Volume 2 deals with the structures of production. Based on the newly interpreted construct of the “production point”, larger units are composed step by step: single-stage and multi-stage technical quantities. In addition, the production point integrates the subdivision used today in business administration into the object-oriented, activity favoring black box thinking and the functionalist view of consumption and production functions. The conceptual foundations are mainly algebraic input-output systems. Based on the structuring and parameterization options at the production point, alternative organizational concepts for single and multi-level productions are developed. For the engineering sciences, a detailed treatise on the evaluation of production success is particularly important in this volume, which systematically leads to product calculation and the planning of an economically successful production program. Based on the structuring and parameterization options at the production point, alternative organizational concepts for single and multi-level productions are developed. Particularly important for the engineering sciences is a detailed treatise in this volume on the evaluation of production success, which systematically leads to product calculation and the planning of an economically successful production program. Based on the structuring and parameterization options at the production point, alternative organizational concepts for single and multi-level productions are developed. For the engineering sciences, a detailed treatise on the evaluation of production success is particularly important in this volume, which systematically leads to product calculation and the planning of an economically successful production program.
}},
  author       = {{Dangelmaier,  Wilhelm}},
  publisher    = {{Springer-Verlag}},
  title        = {{{Production theory 2}}},
  year         = {{2017}},
}

@book{25253,
  abstract     = {{In the multi-volume work on "Theory of Production", the production models and processes born today from practice are to be derived for the first time on a mathematically justified basis and thus also given the production economy a scientific basis. A constructivist point of view is to be set aside for “we just organized our company that way and it has proven itself”, and so the many descriptive “factory management teachings” are to be replaced. Volume 3 deals with production processes in time. Ordinal and cardinal amounts of time lead to the system-theoretical definition of a process at the point of production and the possible understandings of processes and states. A main point here is the derivation of the common thinking in series production in terms of performance figures. Starting from the basic form of a time-based production, efficient dynamic events and processes are prepared. This creates the basis for the representation of the state of a general time system and the use of sequential machines. Time-invariant time systems and stochastic productions are the basis of robust production. The point of production and the time system find an ideal symbiosis in the use of finite automatons: A finite number of states together with a limited amount of inputs leads to state-driven production - one of the essential prerequisites for the realization of Industry 4.0. This creates the basis for the representation of the state of a general time system and the use of sequential machines. Time-invariant time systems and stochastic productions are the basis of robust production. The point of production and the time system find an ideal symbiosis in the use of finite automatons: A finite number of states together with a limited amount of inputs leads to state-driven production - one of the essential prerequisites for the realization of Industry 4.0. This creates the basis for the representation of the state of a general time system and the use of sequential machines. Time-invariant time systems and stochastic productions are the basis of robust production. The point of production and the time system find an ideal symbiosis in the use of finite automata: A finite number of states together with a limited number of inputs leads to state-driven production - one of the essential prerequisites for the realization of Industry 4.0.}},
  author       = {{Dangelmaier,  Wilhelm}},
  publisher    = {{Springer-Verlag}},
  title        = {{{Production theory 3}}},
  year         = {{2017}},
}

@book{25254,
  author       = {{Helmke,  Stefan  and Uebel, Matthias and Dangelmaier, Wilhelm}},
  publisher    = {{Springer-Gabler}},
  title        = {{{Effektives Customer Relationship Management}}},
  year         = {{2017}},
}

@inbook{25316,
  author       = {{Dangelmaier, Wilhelm}},
  booktitle    = {{Megatrend digitization - potentials of work and company organization}},
  editor       = {{Schlick, Christopher M.}},
  pages        = {{27--69}},
  publisher    = {{GITO mbH}},
  title        = {{{Time models for the classification and identification of production events}}},
  year         = {{2016}},
}

@inproceedings{25412,
  author       = {{Dangelmaier, Wilhelm}},
  booktitle    = {{Schenk, Michael;Zadek, Hartmut;Müller, Gerhard;Richter, Klaus;Seidel, Holger (Hrsg.): 20. Magdeburger Logistiktage "Sichere und nachhaltige Logistik"}},
  editor       = {{Schenk,  Michael and Zadek, Hartmut  and  M{\"u}ller,  Gerhard and Richter, Klaus and Seidel, Holger}},
  pages        = {{37--42}},
  title        = {{{Online-Optimierung zur Festlegung von Bestellzeitpunkten in der Losgr{\"o}{\ss}enfertigung}}},
  year         = {{2015}},
}

@misc{25586,
  author       = {{Dangelmaier, Wilhelm,  Wilhelm}},
  title        = {{{Online optimization to determine order times}}},
  year         = {{2015}},
}

@inproceedings{25598,
  author       = {{Weber, Jens and Boxnick, Simon  and Dangelmaier, Wilhelm}},
  booktitle    = {{ Proceedings of the IEEE Asia-Pacific World Congress on Computer Science and Engineering 2014 (APWC on CSE 2014)}},
  pages        = {{312--319}},
  title        = {{{Experiments using Meta-Heuristics to Shape Experimental Design for a Simulation-Based Optimization System: Intelligent Configuration and Setup of Virtual Tooling}}},
  year         = {{2014}},
}

@inproceedings{25764,
  author       = {{Dangelmaier,  Wilhelm}},
  editor       = {{Kersten, Wolfgang and Koller, Hans and  L {\ "o} dding, H}},
  pages        = {{317--342}},
  publisher    = {{GITO mbH}},
  title        = {{{Ans {\ "a} sets for {\" u} r an online optimization of the lot sizes in the Series production}}},
  year         = {{2014}},
}

@article{25766,
  author       = {{Dangelmaier, Wilhelm and Sommer-Dittrich, Thomas and Streichhan, Jenny  and Monhof, Markus}},
  journal      = {{Applied Mechanics and Materials}},
  pages        = {{59--62}},
  title        = {{{Information Systems for Composite Materials: Requirements and Challenges}}},
  volume       = {{597}},
  year         = {{2014}},
}

@inproceedings{25771,
  abstract     = {{New paradigms for designing manufacturing systems, such as adaptive and service-oriented manufacturing systems or self-optimizing resources, introduce new degrees of freedom into manufacturing control. These paradigms lead to the research question how human decision makers can be enabled to exploit the high adaptability of the new manufacturing systems in accordance to the current requirements arising from quickly changing market requirements and demand for sustainable manufacturing. This contribution extends a scheduling model for self-optimizing and service-oriented manufacturing systems through the consideration of alternative resources and introduces a multi-objective scheduling concept based on evolutionary algorithms in combination with a new optimized type of crossover operator.}},
  author       = {{Kl{\"o}pper, Benjamin and Pater, Jan-Patrick  and Dangelmaier, Wilhelm}},
  booktitle    = {{Proceedings of the 47th Annual Hawaii International Conference on System Sciences}},
  publisher    = {{Computer Society Press}},
  title        = {{{An Evolutionary Approach on Multi-objective Scheduling for Evolving Manufacturing Systems}}},
  year         = {{2014}},
}

@inproceedings{28517,
  abstract     = {{Functional gradation denotes a continuous distribution of properties over at least one spatial dimension of a component made of single material. This distribution is tailored with respect to the later intended application of the component. The improved material utilization enables light weight design and reduced resource consumption, thus offering an alternative for modern composite materials. To support the production planner in setting up the required manufacturing processes, this contribution proposes a multi-criteria decision-support approach that is based upon a framework for the computer-aided planning and optimisation of functionally graded components. The obtained ranking of possible process chains then allows the production planner to select the best alternative.}},
  author       = {{Rudtsch, Vinzent  and Gausemeier, J{\"u}rgen and Petersen, Marcus}},
  editor       = {{Dangelmaier, Wilhelm and Laroque, Christoph and Klaas, Alexander}},
  isbn         = {{978-3-942647-35-9}},
  pages        = {{469--480}},
  publisher    = {{Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn}},
  title        = {{{Multikriterielle Entscheidungsunterst{\"u}tzung f{\"u}r die Synthese von Herstellprozessen zur Fertigung funktional gradierter Bauteile}}},
  year         = {{2013}},
}

@inproceedings{25778,
  author       = {{Klaas, Alexander and Laroque, Christoph and Renken, Hendrik and Dangelmaier, Wilhelm}},
  booktitle    = {{Proceedings of the 2013 Winter Simulation Conference}},
  title        = {{{Simulation Aided, Self-Adapting Knowledge Based Control of Material Handling Systems}}},
  year         = {{2013}},
}

@inproceedings{25780,
  author       = {{Dangelmaier, Wilhelm and Klaas, Alexander}},
  pages        = {{37--49}},
  publisher    = {{GITO-Verlag}},
  title        = {{{Collective generation of subjective situations / measures for online control in transport and storage systems}}}},
  year         = {{2013}},
}

@inproceedings{25782,
  author       = {{Dangelmaier, Wilhelm  and Laroque, Christoph and Klaas, Alexander}},
  booktitle    = {{Proceedings 15th ASIM Conference Simulation in Production and Logistics}},
  isbn         = {{978-3-942647-35-9}},
  publisher    = {{Heinz Nixdorf Institute}},
  title        = {{{Simulation in Production and Logistics 2013}}},
  volume       = {{316}},
  year         = {{2013}},
}

@inproceedings{25789,
  author       = {{Renken, Hendrik and Dangelmaier, Wilhelm}},
  booktitle    = {{Proceedings of the 3rd International Conference on Simulation and Modeling Methodologies, Technologies and Applications}},
  pages        = {{94--101}},
  publisher    = {{INSTICC PRESS}},
  title        = {{{Improving Flow-Based Modeling of Enterprise Systems and Modeling of Custom Warehouse Systems in d³fact}}},
  year         = {{2013}},
}

@inproceedings{25791,
  author       = {{Dangelmaier, Wilhelm and Kaganova, Ekaterina}},
  title        = {{{Evaluation of affinely adjustable robust counterpart for the CLSP}}},
  year         = {{2013}},
}

@inproceedings{25792,
  author       = {{Klaas, Alexander and Streit, Daniel and Schilling, Markus and Dangelmaier, Wilhelm}},
  booktitle    = {{Proceedings of the 11th IFAC Workshop on Intelligent Manufacturing Systems}},
  title        = {{{Proactive Self-Adaptation of a Flexible Simulation Based Control System Using Forecasting}}},
  year         = {{2013}},
}

