Leitfaden der systematischen Fabrikplanung by Hans Kettner, Jürgen Schmidt, Hans-robert Greim from Only Genuine Products. 30 Day. Leitfaden der systematischen Fabrikplanung. by Hans Kettner, Jürgen Schmidt, Hans-Robert Greim, October 1, , Fachbuchverlag Leipzig. 2. Febr. Leitfaden der Systematischen Fabrikplanung. Von H. Kettner, J. Schmidt und H.- R. Grein. Carl Hanser Verlag, München–Wien 1. Aufl.

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Supporting the lectures, students have access to a detailed collection of slides, exercises and sample solutions. Due to short product life cycles, increasing variety of products and short cycles of leap innovations manufacturing companies have to increase the sysetmatischen of factory structures.

Springer, Kettner, H. Springer-Verlag, Berlin Heidelberg, Planung modularer Fabriken – Vorgehen und Beispiele aus der Praxis. To support interdisciplinary sjstematischen participative character of planning processes, a federative factory data management FFDM as a holistic solution will be described. They are able to analyze logistics systems, logistical processes and logistical structures. Methodik zur bewertungsorientierten Skalierung der Digitalen Fabrik.

Contents are explained by lectures and by exemplary applications from industrial practice.

Leitfaden der systematischen Fabrikplanung.

Thus factory planning processes can be characterized as iterative, interdisciplinary and participative processes [1]. Werksentwicklung und Betriebsrationalisierung, Band The interim results of the development of FFDM will be shown in this paper. Springer, Pfohl, H. Inhalt From a higher point of view, the module explains the main principles and goals of logistics engineering, as well as key indicators and impact factors of logistics.


Common structures of production and distribution are presented along with according control strategies and technologies. Design guidelines; logistical processes, functions, and structures; logistical networks; methods for planning logistical structures – Logistics management: Furthermore, they can apply methods to plan logistical structures and know means of control and coordination in logistics systems and concepts of information management.

Documents for exercises with sample solutions; scriptum digital as PDF, free of fabrikplanng Literatur Literature: Control and drr in logistics systems, information management Lehr- und Lernmethode Contents are explained by lectures and by exemplary applications from industrial practice. Teubner Verlag, Stuttgart, Author Title Abstract Keywords Arbeitsaufwand Fabrikpalnung Load Gesamtstunden.

Leitfaden der systematischen Fabrikplanung. (October 1, edition) | Open Library

Mehrfachnutzung von Simulationsmodellen in der Produktionslogistik. From a higher point of view, the module explains the main principles and systematoschen of logistics engineering, as well as key indicators and impact systematicshen of logistics. They know a variety of technologies for smart factories along with their benefits and boundaries.

Systemtechnische Grundlagen mit Praxisbeispielen. Technical processes are explained for a better understanding of production systems, distribution centers and material supply in production systems. The described data can be requested by the factory planner by using a FFDM-browser. Simulation in machine tool development process. Hanser, Modulverantwortliche Name Professor Dr.


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Innovationspotentiale in der Produktentwicklung: Additionally, the module contains the following contents: Dissertation, TU-Berlin, Berlin, fabrikplanhng All documents and further information are accessible online and free via elearning. Leitfaden der systematischen Fabrikplanung. Die Vernetzte und integrierte Planung durch die digitale Fabrik.

In tutorials, exercises demonstrate the applicability of the lectures’ theoretical contents.

Vieweg, Dangelmaier, W.: Technologies for the operations in a smart factory are discussed, comprising control and design strategies flow shop vs.

In this way, students demonstrate different abilities: FFDM is already fabrik;lanung in form of a prototype. Furthermore, we give an overview on how data can be available on different levels of logistics systems to enable smart factories. In addition, students understand the key functions of physical logistics and are able to apply methods to depict material flow and to sjstematischen and evaluate logistics systems. Methods to analyze system behavior complete the module; they comprise static dimensioning, event-discrete simulation, emulation, queuing theory and the concept of availability and reliability of technical systems.