@masterthesis{Shah2023, type = {Bachelor Thesis}, author = {Shah, Akshat}, title = {Vita : Rehabilitation assistance for digital professionals}, publisher = {FH Aachen}, address = {Aachen}, pages = {125 Seiten}, year = {2023}, abstract = {Vita ist ein Produkt zur Unterst{\"u}tzung von Physiotherapie und Rehabilitation f{\"u}r moderne digitale Profis. Es hilft beim Aufsp{\"u}ren und Erkennen von Haltungsfehlern und gibt positives und sinnvolles Feedback. Ziel des Feedbacks ist es, ein Gef{\"u}hl des Vertrauens in den Genesungsprozess zu schaffen und durch die Nachahmung der menschlichen Ber{\"u}hrung neue, positive Haltungsgewohnheiten zu entwickeln und zu kultivieren.}, language = {de} } @article{MiyamotoYuIsodaetal.2016, author = {Miyamoto, Ko-ichiro and Yu, Bing and Isoda, Hiroko and Wagner, Torsten and Sch{\"o}ning, Michael Josef and Yoshinobu, Tatsuo}, title = {Visualization of the recovery process of defects in a cultured cell layer by chemical imaging sensor}, series = {Sensors and Actuators B: Chemical}, volume = {236}, journal = {Sensors and Actuators B: Chemical}, publisher = {Elsevier}, address = {Amsterdam}, issn = {0925-4005}, doi = {10.1016/j.snb.2016.04.018}, pages = {965 -- 969}, year = {2016}, abstract = {The chemical imaging sensor is a field-effect sensor which is able to visualize both the distribution of ions (in LAPS mode) and the distribution of impedance (in SPIM mode) in the sample. In this study, a novel cell assay is proposed, in which the chemical imaging sensor operated in SPIM mode is applied to monitor the recovery of defects in a cell layer brought into proximity of the sensing surface. A reduced impedance at a defect formed artificially in a cell layer was successfully visualized in a photocurrent image. The cell layer was cultured over two weeks, during which the temporal change of the photocurrent distribution corresponding to the recovery of the defect was observed.}, language = {de} } @article{MiyamotoHirayamaWagneretal.2013, author = {Miyamoto, Ko-ichiro and Hirayama, Yuji and Wagner, Torsten and Sch{\"o}ning, Michael Josef and Yoshinobu, Tatsuo}, title = {Visualization of enzymatic reaction in a microfluidic channel using chemical imaging sensor}, series = {Electrochimica acta}, journal = {Electrochimica acta}, publisher = {Elsevier}, address = {Amsterdam}, issn = {1873-3859 (E-Journal); 0013-4686 (Print)}, pages = {Publ. online}, year = {2013}, language = {en} } @article{MiyamotoBingWagneretal.2015, author = {Miyamoto, Ko-ichiro and Bing, Yu and Wagner, Torsten and Yoshinobu, Tatsuo and Sch{\"o}ning, Michael Josef}, title = {Visualization of Defects on a Cultured Cell Layer by Utilizing Chemical Imaging Sensor}, series = {Procedia Engineering}, volume = {120}, journal = {Procedia Engineering}, publisher = {Elsevier}, address = {Amsterdam}, issn = {1877-7058}, doi = {10.1016/j.proeng.2015.08.806}, pages = {936 -- 939}, year = {2015}, abstract = {The chemical imaging sensor is a field-effect sensor which is able to visualize both the distribution of ions (in LAPS mode) and the distribution of impedance (in SPIM mode) inthe sample. In this study, a novel wound-healing assay is proposed, in which the chemical imaging sensor operated in SPIM mode is applied to monitor the defect of a cell layer brought into proximity of the sensing surface.A reduced impedance inside the defect, which was artificially formed ina cell layer, was successfully visualized in a photocurrent image.}, language = {en} } @book{DigelZhubanovaAkimbekov2012, author = {Digel, Ilya and Zhubanova, Azhar Ahmetovna and Akimbekov, Nuraly Shardarbekovich}, title = {Visual Virology}, address = {Almaty}, isbn = {978-601-247-298-1}, pages = {144 S. : zahlr. Ill.}, year = {2012}, language = {en} } @article{KraftNagl2007, author = {Kraft, Bodo and Nagl, Manfred}, title = {Visual Knowledge Specification for Conceptual Design: Definition and Tool Support}, year = {2007}, abstract = {In: Advanced Engineering Informatics. Vol 21, Issue 1, 2007, Pages 67-83 http://dx.doi.org/10.1016/j.aei.2006.10.001 eds. J.C. Kunz, I.F.C. Smith and T. Tomiyama, Elsevier, Seite 1-22 Current CAD tools are not able to support the conceptual design phase, and none of them provides a consistency analysis for sketches produced by architects. This phase is fundamental and crucial for the whole design and construction process of a building. To give architects a better support, we developed a CAD tool for conceptual design and a knowledge specification tool. The knowledge is specific to one class of buildings and it can be reused. Based on a dynamic and domain-specific knowledge ontology, different types of design rules formalize this knowledge in a graph-based form. An expressive visual language provides a user-friendly, human readable representation. Finally, a consistency analysis tool enables conceptual designs to be checked against this formal conceptual knowledge. In this article, we concentrate on the knowledge specification part. For that, we introduce the concepts and usage of a novel visual language and describe its semantics. To demonstrate the usability of our approach, two graph-based visual tools for knowledge specification and conceptual design are explained.}, subject = {CAD}, language = {en} } @inproceedings{KraftWilhelms2005, author = {Kraft, Bodo and Wilhelms, Nils}, title = {Visual Knowledge Specification for Conceptual Design}, year = {2005}, abstract = {Proc. of the 2005 ASCE Intl. Conf. on Computing in Civil Engineering (ICCC 2005) eds. L. Soibelman und F. Pena-Mora, Seite 1-14, ASCE (CD-ROM), Cancun, Mexico, 2005 Current CAD tools are not able to support the fundamental conceptual design phase, and none of them provides consistency analyses of sketches produced by architects. To give architects a greater support at the conceptual design phase, we develop a CAD tool for conceptual design and a knowledge specification tool allowing the definition of conceptually relevant knowledge. The knowledge is specific to one class of buildings and can be reused. Based on a dynamic knowledge model, different types of design rules formalize the knowledge in a graph-based realization. An expressive visual language provides a user-friendly, human readable representation. Finally, consistency analyses enable conceptual designs to be checked against this defined knowledge. In this paper we concentrate on the knowledge specification part of our project.}, subject = {CAD}, language = {en} } @article{ElsenKraissKrumbiegeletal.1999, author = {Elsen, Ingo and Kraiss, Karl-Friedrich and Krumbiegel, Dirk and Walter, Peter and Wickel, Jochen}, title = {Visual information retrieval for 3D product identification: a midterm report}, series = {KI - K{\"u}nstliche Intelligenz}, volume = {13}, journal = {KI - K{\"u}nstliche Intelligenz}, number = {1}, publisher = {Springer}, address = {Berlin}, issn = {1610-1987}, pages = {64 -- 67}, year = {1999}, language = {en} } @masterthesis{Cekic2022, type = {Bachelor Thesis}, author = {Cekic, Dilara}, title = {Visionsbild eines BMW AG internen Tools : Optimierung einer datenzentrierten Plattform der BMW AG}, publisher = {FH Aachen}, address = {Aachen}, year = {2022}, abstract = {Die BMW AG verfolgt mehrere Ans{\"a}tze eine optimierte Effizienzsteigerung durch eigens entwickelte Softwaretools zu erreichen. Der Fokus hierbei liegt in der Erm{\"o}glichung einer datenzentrierten, nutzerorientierten und hochautomatisierten Fahrzeugentwicklung. Das eigen von der BMW AG entwickelte Software-Tool „Parts List" dient als digitale Bauteilliste f{\"u}r Entwicklungsteams. Das Tool b{\"u}ndelt mehrere Datenbanken und stellt diese in Echtzeit zur Verf{\"u}gung. Somit kann der manuelle Pflegeaufwand erheblich reduziert und eine Durchg{\"a}ngigkeit einer Vielzahl von Daten erm{\"o}glicht werden. Der Fokus der Abschlussarbeit liegt in der konzeptionellen und gestalterischen Optimierung des Tools. Dabei wird insbesondere der User Centered Design Prozess betrachtet, bei dem die Nutzer bzw. die Entwicklungsteams im Zentrum stehen.}, language = {de} } @book{BoonzaaijerHelmigBergerhausenetal.2010, author = {Boonzaaijer, Karel and Helmig, Ilka and Bergerhausen, Johannes and Beudaert, Matthieu}, title = {Vision - space for imagination}, publisher = {Stichting Kunstboek}, address = {Oostkamp}, isbn = {978-90-5856-357-6}, pages = {[85] S. : zahlr. Ill.}, year = {2010}, language = {en} } @misc{SammWitte2003, author = {Samm, Doris and Witte, Tim}, title = {Virtuelles Labor zur Verarbeitung elektronischer Signale}, year = {2003}, abstract = {Oberfl{\"a}che zur Simulation einfacher Praktikumsversuche mit dem NIM System. Programmiert mit Flash MX. Die Simulation verschafft virtuellen Einblick in ein Pulselektroniklabor.}, subject = {Impulstechnik}, language = {de} } @article{KaemperMertenBrilletal.2003, author = {K{\"a}mper, Klaus-Peter and Merten, Sabine and Brill, Manfred and Cassel, Detlev (u.a.)}, title = {Virtuelle Sensor-Fertigung: Hightech mit LabVIEW}, series = {Virtuelle Instrumente in der Praxis : Messtechnik, Automatisierung ; Begleitband zum Kongress VIP 2003 / Rahman Jamal ; Hans Jaschinski (Hrsg.)}, journal = {Virtuelle Instrumente in der Praxis : Messtechnik, Automatisierung ; Begleitband zum Kongress VIP 2003 / Rahman Jamal ; Hans Jaschinski (Hrsg.)}, publisher = {H{\"u}thig}, address = {Heidelberg}, isbn = {3-7785-2908-0}, pages = {465 -- 470}, year = {2003}, language = {de} } @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} } @article{SchmitzVomHemdtBreitschuhetal.2002, author = {Schmitz, G{\"u}nter and Vom Hemdt, A. and Breitschuh, S. and Graber, S.}, title = {Virtuelle Praktika f{\"u}r die Ingenieurausbildung}, series = {NetWorlds : Leben und Arbeiten in vernetzten Welten ; VDE-Kongress 2002, 21. bis 23. Oktober 2002 in Dresden / Gesamtleitung: J. Ebersp{\"a}cher}, journal = {NetWorlds : Leben und Arbeiten in vernetzten Welten ; VDE-Kongress 2002, 21. bis 23. Oktober 2002 in Dresden / Gesamtleitung: J. Ebersp{\"a}cher}, publisher = {VDE-Verl.}, address = {Berlin [u.a.]}, isbn = {3-8007-2723-4}, pages = {69 -- 74}, year = {2002}, language = {de} } @article{Siedenbiedel1999, author = {Siedenbiedel, Georg}, title = {Virtuelle Organisation und F{\"u}hrungsverhalten}, series = {Strategische Personalpolitik : Festschrift f{\"u}r Prof. Dr. Dudo von Eckardstein}, journal = {Strategische Personalpolitik : Festschrift f{\"u}r Prof. Dr. Dudo von Eckardstein}, publisher = {Hampp}, address = {M{\"u}nchen [u.a.]}, pages = {271 -- 306}, year = {1999}, language = {de} } @inproceedings{DielmannVelden2003, author = {Dielmann, Klaus-Peter and Velden, Alwin van der}, title = {Virtuelle Kraftwerke - Stand der Technik}, year = {2003}, abstract = {Ausgangslage, Funktionsprinzip des virtuellen Kraftwerkes, Energiemanagementsysteme (EMS), Einsatzgebiete, Anlagesysteme eines VKW's, Einsatzbereich der verschiedenen dezentralen Energieanlagen, Vorteile des virtuellen Kraftwerkes, Auswirkungen auf das elektrische Netz, Wirtschaftliche Aspekte, Beispielprojekte}, language = {de} } @article{ReisgenSchleserMokrovetal.2011, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Zabirov, Alexander}, title = {Virtual welding equipment for simulation of GMAW processes with integration of power source regulation}, series = {Frontiers of materials science}, volume = {Vol. 5}, journal = {Frontiers of materials science}, number = {Iss. 2}, publisher = {Springer}, address = {Berlin}, issn = {2095-0268 (E-Journal); 2095-025X (Print)}, pages = {79 -- 89}, year = {2011}, language = {en} } @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} } @article{Starke2001, author = {Starke, G{\"u}nther}, title = {Virtual Reality und Simulation als integrierte Werkzeuge f{\"u}r die Entwicklung mechatronischer Systeme}, series = {VDI-Berichte. 1631 (2001)}, journal = {VDI-Berichte. 1631 (2001)}, isbn = {0083-5560}, pages = {1 -- 17}, year = {2001}, language = {de} } @article{Gebhardt2002, author = {Gebhardt, Andreas}, title = {Virtual Reality oder Rapid Prototyping?}, series = {Zeitschrift f{\"u}r die gesamte Wertsch{\"o}pfungskette Automobilwirtschaft (2002)}, journal = {Zeitschrift f{\"u}r die gesamte Wertsch{\"o}pfungskette Automobilwirtschaft (2002)}, year = {2002}, language = {de} }