@masterthesis{MeinersSchneider2021, type = {Bachelor Thesis}, author = {Meiners, Sonja and Schneider, Sophie}, title = {MULO - Multifunktionale Objekte: Eine Serie multifunktionaler Wohnobjekte}, publisher = {FH Aachen}, address = {Aachen}, pages = {137 Seiten}, year = {2021}, abstract = {Mit MULO wurde eine Serie multifunktionaler Objekte f{\"u}r den Wohnbereich entworfen. In Zeiten des {\"U}berangebots und des st{\"a}ndigen Wohnraumwechsels soll der Nutzer dieser Objekte mit einem modernen und schlichten Design unterst{\"u}tzt werden, das zu jedem Anlass passt. Die minimalistische {\"A}sthetik mit hohem Komfort orientiert sich dabei an den Bed{\"u}rfnissen des Endverbrauchers. Als Verwandlungsk{\"u}nstler bereichert MULO jeden Wohnraum. Die gesamte Serie ist unter der Ber{\"u}cksichtigung der schnelllebigen und sich wandelnden Welt entworfen worden. Mit multifunktionalen Objekten ist das Produkt den flexiblen Anforderungen und Bed{\"u}rfnissen des Menschen gewachsen. Die Bereiche Wohnen, Leben, Arbeiten, Schlafen und Entspannen werden durch das Sofa- , das Tisch- und das Keramik-System optimal abgedeckt. Durch die Verwendung von nachhaltigen und recycelbaren Materialien, setzt MULO ein kleines Statement und hinterl{\"a}sst nachhaltig Eindruck.}, language = {de} } @inproceedings{KloeserKohlKraftetal.2021, author = {Kl{\"o}ser, Lars and Kohl, Philipp and Kraft, Bodo and Z{\"u}ndorf, Albert}, title = {Multi-attribute relation extraction (MARE): simplifying the application of relation extraction}, series = {Proceedings of the 2nd International Conference on Deep Learning Theory and Applications DeLTA - Volume 1}, booktitle = {Proceedings of the 2nd International Conference on Deep Learning Theory and Applications DeLTA - Volume 1}, publisher = {SciTePress}, address = {Set{\´u}bal}, isbn = {978-989-758-526-5}, doi = {10.5220/0010559201480156}, pages = {148 -- 156}, year = {2021}, abstract = {Natural language understanding's relation extraction makes innovative and encouraging novel business concepts possible and facilitates new digitilized decision-making processes. Current approaches allow the extraction of relations with a fixed number of entities as attributes. Extracting relations with an arbitrary amount of attributes requires complex systems and costly relation-trigger annotations to assist these systems. We introduce multi-attribute relation extraction (MARE) as an assumption-less problem formulation with two approaches, facilitating an explicit mapping from business use cases to the data annotations. Avoiding elaborated annotation constraints simplifies the application of relation extraction approaches. The evaluation compares our models to current state-of-the-art event extraction and binary relation extraction methods. Our approaches show improvement compared to these on the extraction of general multi-attribute relations.}, language = {en} } @article{PourshahidiAchtsnichtNambipareecheeetal.2021, author = {Pourshahidi, Ali Mohammad and Achtsnicht, Stefan and Nambipareechee, Mrinal Murali and Offenh{\"a}usser, Andreas and Krause, Hans-Joachim}, title = {Multiplex detection of magnetic beads using offset field dependent frequency mixing magnetic detection}, series = {Sensors}, volume = {21}, journal = {Sensors}, number = {17}, publisher = {MDPI}, address = {Basel}, issn = {1424-8220}, doi = {10.3390/s21175859}, pages = {16 Seiten}, year = {2021}, abstract = {Magnetic immunoassays employing Frequency Mixing Magnetic Detection (FMMD) have recently become increasingly popular for quantitative detection of various analytes. Simultaneous analysis of a sample for two or more targets is desirable in order to reduce the sample amount, save consumables, and save time. We show that different types of magnetic beads can be distinguished according to their frequency mixing response to a two-frequency magnetic excitation at different static magnetic offset fields. We recorded the offset field dependent FMMD response of two different particle types at frequencies ƒ₁ + n⋅ƒ₂, n = 1, 2, 3, 4 with ƒ₁ = 30.8 kHz and ƒ₂ = 63 Hz. Their signals were clearly distinguishable by the locations of the extremes and zeros of their responses. Binary mixtures of the two particle types were prepared with different mixing ratios. The mixture samples were analyzed by determining the best linear combination of the two pure constituents that best resembled the measured signals of the mixtures. Using a quadratic programming algorithm, the mixing ratios could be determined with an accuracy of greater than 14\%. If each particle type is functionalized with a different antibody, multiplex detection of two different analytes becomes feasible.}, language = {en} } @article{MontiWaldvogelRitzmannetal.2021, author = {Monti, Elena and Waldvogel, Janice and Ritzmann, Ramona and Freyler, Kathrin and Albracht, Kirsten and Helm, Michael and De Cesare, Niccol{\`o} and Pavan, Piero and Reggiani, Carlo and Gollhofer, Albert and Narici, Marco Vincenzo}, title = {Muscle in variable gravity: "I do not know where I am, but I know what to do"}, series = {Frontiers in Physiology}, volume = {12}, journal = {Frontiers in Physiology}, publisher = {Frontiers Research Foundation}, address = {Lausanne}, issn = {1664-042X}, doi = {10.3389/fphys.2021.714655}, pages = {19 Seiten}, year = {2021}, abstract = {Performing tasks, such as running and jumping, requires activation of the agonist and antagonist muscles before (motor unit pre-activation) and during movement performance (Santello and Mcdonagh, 1998). A well-timed and regulated muscle activation elicits a stretch-shortening cycle (SSC) response, naturally occurring in bouncing movements (Ishikawa and Komi, 2004; Taube et al., 2012). By definition, the SSC describes the stretching of a pre-activated muscle-tendon complex immediately followed by a muscle shortening in the concentric push-off phase (Komi, 1984). Given the importance of SSC actions for human movement, it is not surprising that many studies investigated the biomechanics of this phenomenon; in particular, drop jumps (DJs) represent a good paradigm to study muscle fascicle and tendon behavior in ballistic movements involving the SSC. Within a DJ, three main phases [pre-activation, braking, and push-off (PO; Komi, 2000)] have been recognized and extensively studied in common and challenging conditions, such as changes in load, falling height, or simulated hypo-gravity (Avela et al., 1994; Arampatzis et al., 2001; Fukashiro et al., 2005; Ishikawa et al., 2005; Sousa et al., 2007; Ritzmann et al., 2016; Helm et al., 2020). These studies show that the timing and amount of triceps-surae muscle-tendon unit pre-activation in DJs are differentially regulated based on the load applied to the muscle, being optimal in normal "Earth" gravity conditions (Avela et al., 1994), but decreased in simulated hypo-gravity, hyper-gravity (Avela et al., 1994; Ritzmann et al., 2016), or unknown conditions (i.e., unknown falling heights; Helm et al., 2020). Some authors indicated that, when falling from heights different from the optimal one [defined as the drop height giving a maximum DJ performance indicated as peak ground reaction force (GRF) or jump high], electromyographic (EMG) activity of the plantar flexors increases from lower than optimal to higher than optimal heights (Ishikawa and Komi, 2004; Sousa et al., 2007). These findings highlight the ability of the central nervous system to regulate the timing and amount of pre-activation according to different jumping conditions, thus regulating muscle fascicle length, tendon and joint stiffness as well as position, in order to safely land on the ground and quickly re-bounce. Similarly, to pre-activation, also in the braking phase, the plantar flexors are differentially regulated. In optimal height (i.e., load) jumping conditions, gastrocnemius medialis (GM) fascicles shorten at early ground contact (possibly due to the intervention of the stretch reflex; Gollhofer et al., 1992) and behave quasi-isometrically in the late braking phase, enabling tendon elongation, and storage of elastic energy (Gollhofer et al., 1992; Fukashiro et al., 2005; Sousa et al., 2007). When increasing the falling height (augmenting the impact GRF), the quasi-isometric behavior of fascicles disappears, and fast fascicle lengthening occurs (Ishikawa et al., 2005; Sousa et al., 2007). In the third and last PO phase, fascicles shorten and the tendon releases the elastic energy previously stored. Bobbert et al. (1987) reported no influence of jumping height on the work done and on the net vertical impulse assessed during PO; this observation suggests that, despite an optimal DJ performance might be achieved only in specific conditions (falling heights, loads), the central nervous system seems to be able to regulate muscle behavior in order to effectively perform the required task also in challenging situations. Although the regulation of triceps-surae muscle-tendon unit in DJs has been extensively investigated, very few studies focused on sarcomeres behavior during the performance of this SSC movement (Kurokawa et al., 2003; Fukashiro et al., 2005, 2006). Sarcomeres represent muscle contractile units and are known to express different amounts of force depending on their length (Gordon et al., 1966; Walker and Schrodt, 1974); thus, understanding the time course of their responses during DJs is fundamental to gain further insights into muscle force-generating capacity. In vivo measurement of sarcomere length in humans has been so far been performed only in static positions and under highly controlled experimental conditions (Llewellyn et al., 2008; Sanchez et al., 2015). Instead, human sarcomere length estimation (achieved by dividing GM measured fascicle length for a fixed sarcomere number) in dynamic contractions provided an indirect measure of sarcomere operating range during squat jump, countermovement jump, and DJ (Fukashiro et al., 2005, 2006; Kurokawa et al., 2003). The results of these studies showed that sarcomeres operate in the ascending limb of their length-tension (L-T) relationship in all types of jumps, and particularly so in DJ. However, most of the available observations on sarcomere and muscle fascicle behavior were made in condition of constant gravity. Thus, in order to understand how sarcomere and muscle fascicle length are regulated in variable gravity conditions, we performed experiments in a parabolic flight, involving variable gravity levels, ranging from about zero-g to about double the Earth's gravity (1 g; Waldvogel et al., 2021). Specifically, the aims of the present study were as follows: 1. To investigate the ability of the neuromuscular system in regulating fascicle length in response to conditions of variable gravity. 2. To estimate sarcomere operative length in the different DJ phases, in order to calculate its theoretical force production and its possible modulation in conditions of variable gravity. We hypothesized that muscle fascicles would be differentially regulated in different gravity conditions compared to 1 g, particularly in anticipation of landing and re-bouncing in unknown gravity levels. In addition, we hypothesized that sarcomeres would operate in the upper part of the ascending limb of their L-T relationship, possibly lengthening during the braking phase (especially in hyper-gravity) while operating quasi-isometrically in 1 g.}, language = {en} } @masterthesis{Loose2021, type = {Bachelor Thesis}, author = {Loose, Pia}, title = {Nachhaltige Nutzung textiler Ressourcen: optimiertes Kreislaufsystem f{\"u}r die Wiederverwendung von Textilien}, publisher = {FH Aachen}, address = {Aachen}, school = {Fachhochschule Aachen}, pages = {179 Seiten}, year = {2021}, abstract = {Die Fast-Fashion-Industrie produziert am laufenden Band neue Kleidung und so schnell wie sie gekauft wird, wird sie auch wieder entsorgt. Das Altkleidersystem ist allerdings an seiner Kapazit{\"a}tsgrenze angekommen und die sich zuspitzende Lage verlangt nach einer neuen innovativen L{\"o}sung. „VABRIC" ersetzt die herk{\"o}mmlichen Altkleidercontainer in den St{\"a}dten und verl{\"a}ngert den Lebenszyklus von Textilien. Durch eine gezielte Vorsortierung entsteht die M{\"o}glichkeit Kleidung weiterzuverteilen und in bestehende oder ganz neue Nutzungskreisl{\"a}ufe zu integrieren. F{\"u}r die Nutzenden wird die Textilspende durch das hochwertige Erscheinungsbild, die zentralen Standorte und die Aufkl{\"a}rung zu einer positiven Erfahrung. „VABRIC" verk{\"o}rpert, am Beispiel von Textilien, die Vision, wie wir in Zukunft mit vermeintlichem Abfall umgehen und den wahren Wert von Ressourcen hervorheben und nutzbar machen.}, language = {de} } @masterthesis{Paulzen2021, type = {Bachelor Thesis}, author = {Paulzen, Lena}, title = {Nachhaltiges Corporate Packaging Design: Am Beispiel von Naturkosmetik Produkten.}, publisher = {FH Aachen}, address = {Aachen}, school = {Fachhochschule Aachen}, pages = {124 Seiten}, year = {2021}, abstract = {Diese Bachelorarbeit widmet sich dem nachhaltigen Packaging-Design von Kosmetikprodukten. Dies wird am Beispiel eines Naturkosmetik-Unternehmens dargestellt. Die Gestaltung einer Shampoo-Flasche wird in dem vorliegenden Projekt exemplarisch f{\"u}r die thematische und gestalterische Untersuchung genutzt. Zudem wurden mit Tube und Tiegel noch zwei weitere Verpackungsformen erstellt. Das Ziel dieser Arbeit ist es, eine nachhaltige Verpackung zu gestalten. Diese soll den hohen CO2-Ausstoß bei der Herstellung von Verpackungen verringern und dabei dem Anspruch des Marketings gerecht werden. Hierbei wurde ein Logo-Design, ein Farbkonzept, eine einheitliche Formsprache und eine Typografie erarbeitet.}, language = {de} } @article{BlankeHagenkampDoeringetal.2021, author = {Blanke, Tobias and Hagenkamp, Markus and D{\"o}ring, Bernd and G{\"o}ttsche, Joachim and Reger, Vitali and Kuhnhenne, Markus}, title = {Net-exergetic, hydraulic and thermal optimization of coaxial heat exchangers using fixed flow conditions instead of fixed flow rates}, series = {Geothermal Energy}, volume = {9}, journal = {Geothermal Energy}, number = {Article number: 19}, publisher = {Springer}, address = {Berlin}, issn = {2195-9706}, doi = {10.1186/s40517-021-00201-3}, pages = {23 Seiten}, year = {2021}, abstract = {Previous studies optimized the dimensions of coaxial heat exchangers using constant mass fow rates as a boundary condition. They show a thermal optimal circular ring width of nearly zero. Hydraulically optimal is an inner to outer pipe radius ratio of 0.65 for turbulent and 0.68 for laminar fow types. In contrast, in this study, fow conditions in the circular ring are kept constant (a set of fxed Reynolds numbers) during optimization. This approach ensures fxed fow conditions and prevents inappropriately high or low mass fow rates. The optimization is carried out for three objectives: Maximum energy gain, minimum hydraulic efort and eventually optimum net-exergy balance. The optimization changes the inner pipe radius and mass fow rate but not the Reynolds number of the circular ring. The thermal calculations base on Hellstr{\"o}m's borehole resistance and the hydraulic optimization on individually calculated linear loss of head coefcients. Increasing the inner pipe radius results in decreased hydraulic losses in the inner pipe but increased losses in the circular ring. The net-exergy diference is a key performance indicator and combines thermal and hydraulic calculations. It is the difference between thermal exergy fux and hydraulic efort. The Reynolds number in the circular ring is instead of the mass fow rate constant during all optimizations. The result from a thermal perspective is an optimal width of the circular ring of nearly zero. The hydraulically optimal inner pipe radius is 54\% of the outer pipe radius for laminar fow and 60\% for turbulent fow scenarios. Net-exergetic optimization shows a predominant infuence of hydraulic losses, especially for small temperature gains. The exact result depends on the earth's thermal properties and the fow type. Conclusively, coaxial geothermal probes' design should focus on the hydraulic optimum and take the thermal optimum as a secondary criterion due to the dominating hydraulics.}, language = {en} } @masterthesis{Khalaimova2021, type = {Bachelor Thesis}, author = {Khalaimova, Karina}, title = {Neuerfindung der Ligaturen}, publisher = {FH Aachen}, address = {Aachen}, school = {Fachhochschule Aachen}, pages = {43 Seiten}, year = {2021}, abstract = {Gegenstand des Projekts ist, Ligaturen als erweiterte Mittel der Informations{\"u}bertragung einzusetzen. Ligaturen als zus{\"a}tzliches Instrument sollen die visuelle Komponente des Textes unterst{\"u}tzen, ihm die gewisse Frische einhauchen und ihn hiermit insgesamt sichtbarer, origineller und moderner machen. Der Einsatzbereich erstreckt sich hierbei in die verschiedensten Bereiche hin {\"u}ber Design und Werbung, als auch im Handel oder in sozialen Bereichen. Hierbei kann eine große Anzahl an W{\"o}rtern neue Formen annehmen und mithin an neuem Leben und Bedeutung gewinnen, was sicherlich die allgemeinen Sprachmittel bereichern wird. Auf einer historischen Basis und mit Hilfe der Dekonstruktion wurden neue Formen der Ligaturen geschaffen — seltsame, kontroverse, auff{\"a}llige und einzigartige.}, language = {de} } @masterthesis{Muehl2021, type = {Bachelor Thesis}, author = {M{\"u}hl, Leonie}, title = {Neues Erscheinungsbild f{\"u}r den APX: Redesign des LVR - Arch{\"a}ologischen Park Xanten und des R{\"o}mermuseums}, publisher = {FH Aachen}, address = {Aachen}, school = {Fachhochschule Aachen}, pages = {90 Seiten}, year = {2021}, abstract = {Der Arch{\"a}ologische Park Xanten (APX) gilt als Deutschlands einziger arch{\"a}ologischer Freiluftpark. Er zeichnet sich im Verbund mit dem R{\"o}mermuseum durch seine Lage auf dem historischen Grund einer r{\"o}mischen Metropole und seine kontinuierliche Forschungsaktivit{\"a}t aus und bietet so ein einzigartiges Umfeld von kultureller Relevanz. Ziel dieses Projektes war es, ein neues Erscheinungsbild zu entwickeln, welches klar die Thematik des Parks in den Medien erkennbar macht. Das Corporate Design dient dazu, die Inhalte des Verbundes in einem einheitlichen System medien{\"u}bergreifend zu pr{\"a}sentieren. Das Design unterst{\"u}tzt den APX in seiner Funktion als Begegnungs- und Bildungsst{\"a}tte. Aufgrund dessen ist es im Hinblick auf das Ziel relevant, das Interesse an Kulturgeschichte und Forschung zu wecken.}, language = {de} } @article{Golland2021, author = {Golland, Alexander}, title = {Neuregelungen zum Datenschutz: Ein Update f{\"u}r Website-Betreiber. Reform des Telekommunikations- und Telemedienrechts verabschiedet}, series = {NWB Rechnungswesen - BBK}, journal = {NWB Rechnungswesen - BBK}, number = {14}, isbn = {0340-9848}, pages = {672 -- 674}, year = {2021}, language = {de} }