@inproceedings{MertenKaemperBrilletal.2003, author = {Merten, Sabine and K{\"a}mper, Klaus-Peter and Brill, Manfred and Picard, Antoni and Cassel, Detlev and Jentsch, Andreas and Rollwa, Markus}, title = {Virtuelle Sensor-Fertigung: Hightech mit LabVIEW}, year = {2003}, abstract = {Eine neue Generation von Praktika an Hochschulen w{\"a}chst heran. Moderne Wege beim Verstehen und Erlernen naturwissenschaftlicher Zusammenh{\"a}nge sowie industrieller Fertigungsprozesse sind gefordert. Das Technologiepraktikum „Virtuelle Sensor- Fertigung", entwickelt im Verbundprojekt INGMEDIA an den Fachhochschulen Aachen und Zweibr{\"u}cken, tr{\"a}gt als neuartiges Lern- und Lehrmodul dieser Forderung Rechnung. Die Studierenden lernen einen vollst{\"a}ndigen Fertigungsprozess mit Hilfe von virtuellen, in LabVIEW programmierten Maschinen kennen, bevor sie die reale Prozesskette im Reinraum durchf{\"u}hren.}, subject = {LabVIEW}, language = {de} } @inproceedings{MertenConradKaemperetal.2006, author = {Merten, Sabine and Conrad, Thorsten and K{\"a}mper, Klaus-Peter and Picard, Antoni and Sch{\"u}tze, Andreas}, title = {Virtual Technology Labs - an efficient tool for the preparation of hands-on-MEMS-courses in training foundries}, year = {2006}, abstract = {Hands-on-training in high technology areas is usually limited due to the high cost for lab infrastructure and equipment. One specific example is the field of MEMS, where investment and upkeep of clean rooms with microtechnology equipment is either financed by production or R\&D projects greatly reducing the availability for education purposes. For efficient hands-on-courses a MEMS training foundry, currently used jointly by six higher education institutions, was established at FH Kaiserslautern. In a typical one week course, students manufacture a micromachined pressure sensor including all lithography, thin film and packaging steps. This compact and yet complete program is only possible because participants learn to use the different complex machines in advance via a Virtual Training Lab (VTL). In this paper we present the concept of the MEMS training foundry and the VTL preparation together with results from a scientific evaluation of the VTL over the last three years.}, subject = {Virtuelles Laboratorium}, language = {en} } @book{Merten2005, author = {Merten, Sabine}, title = {Verbesserung der Ausbildung in der Mikrosystemtechnik - virtuelle Labore bereiten auf die Herstellung realer Drucksensoren vor (2 Fassungen: konvertiert und original}, publisher = {Fachhochschule Aachen}, year = {2005}, abstract = {Die Ausbildung in Hochtechnologien wie beispielsweise der Mikrosystemtechnik ist oft durch einen hohen Grad an Komplexit{\"a}t charakterisiert. Damit verbunden sind hohe Kosten f{\"u}r die Errichtung und den Betrieb der speziellen Laborr{\"a}ume und ihre h{\"a}ufig geringe Verf{\"u}gbarkeit f{\"u}r die Studierenden. Zuk{\"u}nftige Ingenieure sammeln w{\"a}hrend ihrer Ausbildung aus diesen Gr{\"u}nden nur in beschr{\"a}nktem Umfang praktische Erfahrungen. Die Industrie hingegen fordert Personal mit hoher fachlicher Kompetenz, also fundiertem theoretischen Wissen und umfangreichen praktischen Kenntnissen. Dieser Diskrepanz - qualifizierte Ingenieure auf der einen Seite und eine eher theoretisch ausgerichtete Ausbildung auf der anderen Seite - wird mit einem neuen Blended-Learning-Konzept f{\"u}r MST-Technologiepraktika begegnet. Lernende werden {\"u}ber ein virtuelles Labor, das einen echten Reinraum mit realen Anlagen simuliert, intensiv auf reale Laborpraktika vorbereitet. Dabei geht es im virtuellen Labor gleichermaßen um die Vermittlung von Theorie und Praxis. Nur trainierte Teilnehmer mit einer intensiven Vorbereitung sind in der Lage, relativ eigenst{\"a}ndig ein echtes MST-Bauteil innerhalb des anschließenden einw{\"o}chigen Laborkurses zu fertigen. Die Wirksamkeit des Konzeptes und die Steigerung des Lernerfolges durch die kombinierten virtuellen und realen Laborkurse wurden im Rahmen der Dissertation begleitend untersucht. Die Ergebnisse flossen direkt in die Weiterentwicklung der Technologiepraktika ein. Die Konzepte und Erkenntnisse sind zudem sehr interessant f{\"u}r die Entwicklung von Blended-Learning-Angeboten in {\"a}hnlichen oder anderen Fachgebieten sowie f{\"u}r weitere Bildungseinrichtungen. (Die Dissertation liegt hier in 2 Fassungen vor: Die Originalfassung ist nur bei guter Rechnerausstattung und guter Netzanbindung nutzbar, die konvertierte Fassung ist unver{\"a}ndert, allerdings sind Qualit{\"a}tseinbußen beim Ausdruck einiger Grafiken m{\"o}glich)}, subject = {Mikrosystemtechnik}, language = {de} } @article{MautnerForsterKornhuberetal.2008, author = {Mautner, Karin and Forster, Ralf and Kornhuber, Ralf and Sander, Oliver}, title = {Fast and Reliable Pricing of American Options with Local Volatility / Forster, Ralf ; Kornhuber, Ralf ; Mautner, Karin ; Sander, Oliver}, series = {Domain Decomposition Methods in Science and Engineering XVII}, journal = {Domain Decomposition Methods in Science and Engineering XVII}, isbn = {978-3-540-75198-4}, pages = {383 -- 390}, year = {2008}, language = {en} } @book{Mautner2006, author = {Mautner, Karin}, title = {Numerical treatment of the Black-Scholes variational inequality in computational finance}, address = {Berlin}, pages = {XII, 140 S : graph. Darst.}, year = {2006}, language = {en} } @article{LuftLuftArntz2023, author = {Luft, Angela and Luft, Nils and Arntz, Kristian}, title = {A basic description logic for service-oriented architecture in factory planning and operational control in the age of industry 4.0}, series = {Applied Sciences}, volume = {2023}, journal = {Applied Sciences}, number = {13}, publisher = {MDPI}, address = {Basel}, doi = {10.3390/app13137610}, pages = {Artikel 7610}, year = {2023}, abstract = {Manufacturing companies across multiple industries face an increasingly dynamic and unpredictable environment. This development can be seen on both the market and supply side. To respond to these challenges, manufacturing companies must implement smart manufacturing systems and become more flexible and agile. The flexibility in operational planning regarding the scheduling and sequencing of customer orders needs to be increased and new structures must be implemented in manufacturing systems' fundamental design as they constitute much of the operational flexibility available. To this end, smart and more flexible solutions for production planning and control (PPC) are developed. However, scheduling or sequencing is often only considered isolated in a predefined stable environment. Moreover, their orientation on the fundamental logic of the existing IT solutions and their applicability in a dynamic environment is limited. This paper presents a conceptual model for a task-based description logic that can be applied to factory planning, technology planning, and operational control. By using service-oriented architectures, the goal is to generate smart manufacturing systems. The logic is designed to allow for easy and automated maintenance. It is compatible with the existing resource and process allocation logic across operational and strategic factory and production planning.}, language = {en} } @inproceedings{LuftGebhardtBalc2019, author = {Luft, Angela and Gebhardt, Andreas and Balc, Nicolae}, title = {Challenges of additive manufacturing in production systems}, series = {Modern technologies in manufacturing (MTeM 2019)}, volume = {299}, booktitle = {Modern technologies in manufacturing (MTeM 2019)}, number = {Article 01003}, doi = {10.1051/matecconf/201929901003}, pages = {6 Seiten}, year = {2019}, language = {en} } @article{LuftBremenLuft2023, author = {Luft, Angela and Bremen, Sebastian and Luft, Nils}, title = {A cost/benefit and flexibility evaluation framework for additive technologies in strategic factory planning}, series = {Processes}, volume = {11}, journal = {Processes}, number = {7}, publisher = {MDPI}, address = {Basel}, issn = {2227-9717}, doi = {10.3390/pr11071968}, pages = {Artikel 1968}, year = {2023}, abstract = {There is a growing demand for more flexibility in manufacturing to counter the volatility and unpredictability of the markets and provide more individualization for customers. However, the design and implementation of flexibility within manufacturing systems are costly and only economically viable if applicable to actual demand fluctuations. To this end, companies are considering additive manufacturing (AM) to make production more flexible. This paper develops a conceptual model for the impact quantification of AM on volume and mix flexibility within production systems in the early stages of the factory-planning process. Together with the model, an application guideline is presented to help planners with the flexibility quantification and the factory design process. Following the development of the model and guideline, a case study is presented to indicate the potential impact additive technologies can have on manufacturing flexibility Within the case study, various scenarios with different production system configurations and production programs are analyzed, and the impact of the additive technologies on volume and mix flexibility is calculated. This work will allow factory planners to determine the potential impacts of AM on manufacturing flexibility in an early planning stage and design their production systems accordingly.}, language = {en} } @incollection{LingensVollmann2013, author = {Lingens, Hans and Vollmann, Andreas}, title = {F{\"u}getechnik an der FH Aachen - Aus- und Weiterbildung mit Praxisbezug}, series = {Innovation durch Kooperation : wie der Mittelstand durch Zusammenarbeit mit den Hochschulen seine Wettbewerbsf{\"a}higkeit steigert : Festschrift f{\"u}r Prof. Dr. rer. nat. Johannes Gartzen / Thomas Gartzen, Ute Gartzen (Hrsg.)}, booktitle = {Innovation durch Kooperation : wie der Mittelstand durch Zusammenarbeit mit den Hochschulen seine Wettbewerbsf{\"a}higkeit steigert : Festschrift f{\"u}r Prof. Dr. rer. nat. Johannes Gartzen / Thomas Gartzen, Ute Gartzen (Hrsg.)}, publisher = {Apprimus Verlag}, address = {Aachen}, isbn = {978-3-86359-136-6}, pages = {123 -- 127}, year = {2013}, language = {de} } @inproceedings{LeidingerSchuermannWollertetal.2010, author = {Leidinger, Rafael and Sch{\"u}rmann, Volker and Wollert, J{\"o}rg and Schneider, Christoph}, title = {Entwicklungsprojekt BASic - Bluetooth Authentication Service}, series = {Wireless Technologies : 12. Kongress, 22. - 23. September 2010, Bochum ; von der Technologie zur Anwendung / J{\"o}rg F. Wollert (Hrsg.) (Fortschritt-Berichte VDI : Reihe 10, Informatik, Kommunikation ; 810)}, booktitle = {Wireless Technologies : 12. Kongress, 22. - 23. September 2010, Bochum ; von der Technologie zur Anwendung / J{\"o}rg F. Wollert (Hrsg.) (Fortschritt-Berichte VDI : Reihe 10, Informatik, Kommunikation ; 810)}, publisher = {VDI-Verl.}, address = {D{\"u}sseldorf}, isbn = {978-3-18-381010-9}, pages = {296 -- 303}, year = {2010}, language = {de} }