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This thesis deals with the distribution of large virtual networks to multiple physical hosts using the virtualization tools VNUML and EDIV. While VNUML is responsible for simulating the network, EDIV has its focus primarily on the distributiion. After a short explanation of basic terms and concepts from the field of network simulation, the two previously mentioned virtualization tools are described in detail. This starts in both cases with a detailed description regarding the proper installation and configuration, followed by a demonstration of the most important functions, such as starting or stopping a simulation. The creation of a suitable network scenario and the information scripts provided by EDIV are two further points described in this context. To use the presented possibilities of those tools in practice, an own network scenario is designed and distributed to several hosts, so that the different functions of EDIV can be shown and described accurately.
This thesis imparts a general view of the mechanics and implementation of latest voxelization strategies using the GPU. In addition to established voxelization procedures using the rasterization pipeline, new possibilities arising from GPGPU programming are examined. On the basis of the programming language C++ and the graphics library OpenGL the implementation of several methods is explained. The methods are compared in terms of performance and quality of the resulting voxelization and are evaluated critically with regards to possible use cases. Furthermore, two exemplary applications are detailed that use a voxelized scene in such a way that the augmentation of established techniques of real time graphics are facilitated. To this end, the concepts and the implementations of Transmittance Shadow Mapping and of Reflective Shadow Mapping utilizing a voxel based ambient occlusion effect is explained. Finally, the prolonging relevance of voxelization is put into prospect, by addressing latest research and further enhancements and applications of the presented methods.
This work compiles the comparison of different medical drug-dispensers. A drug-dispenser is a device which allows it from a larger amount of drugs to take a smaller one. To perform this comparison 15 requirements for the dispensers were found. The requirements "organization", "remind" and "ergonomics" are assigned to the taking-easement. "Compliance", "adaptability", "selectivity", "persistence", "functionality", "correctness" and "specificity / sensitivity" belong to the compliance, which is therapy loyalty. With it this category makes most demands. The category storage collects "hygiene", "pharmaceutical forms" and "robustness". Finally, the requirements "clarity" and "data protection" were assigned to other requirements. After this, different dispenser-concepts were first introduced and analyzed on the fulfillment of the requirements. The following concepts were analyzed: pillbox, oneweek-dispenser, Blister, tubular bag, MEMS, OtCM, electronic Dispenser, smartphone application. According to the analysis the dispensers could be compared with each other. It turned out that all concepts show deficits. Hence the author developed an own concept which fulfils all requirements except for two from well to very well. It represents the mightiest concept.
This bachelor thesis’s objective is to offer the reader insight into the discrete Fourier transform, the discrete cosine transform and the discrete Hadamard-Walsh transform in the context of image processing, and also to compare these transformations under various aspects. For this purpose the term of transformation, originated in linear algebra, will be explained and applied to image processing. Subsequently, the understanding of the Fourier transform will successively be built up and connected to the two remaining transforms. Finally, the transformations will be compared and their usefulness in relation to image processing will be explained.
Für die Entwicklung sicherer Softwaresysteme erweitert UMLsec die UML durch die Definition von Sicherheitsanforderungen, die erfüllt sein müssen. In Klassendiagrammen können Attribute und Methoden von Klassen Sicherheitseigenschaften wie secrecy oder integrity haben, auf die nicht authorisierte Klassen keinen Zugriff haben sollten. Vererbungen zwischen Klassen erzeugen eine Komplexität und werfen die Frage auf, wie man mit der Vererbung von Sicherheitseigenschaften umgehen sollte. Neben der Option in sicherheitskritischen Fällen auf Vererbungen zu verzichten, gibt es im Gebiet der objektorientierten Datenbanken bereits viele allgemeine Recherchen über die Auswirkungen von Vererbung auf die Sicherheit. Das Ziel dieser Arbeit ist es, Ähnlichkeiten und Unterschiede von der Datenbankseite und den Klassendiagrammen zu identifizieren und diese Lösungsansätze zu übertragen und zu formalisieren. Eine Implementierung des Modells evaluiert, ob die Lösungen in der Praxis anwendbar sind.
Das Zeitfenster ab 1964 bis heute verzeichnet einen Geburtenrückgang. Diese Tatsache hat insofern negative Auswirkung, als dass es für die sozialen Sicherungen Gefahren birgt, nicht mehr finanziert werden zu können. Des Weiteren ist über einen langen Zeitraum mit einem Fachkräftemangel zu rechnen, sollte sich der Geburtenrückgang weiterhin fortsetzen.
In dieser Ausarbeitung wird der Zusammenhang zwischen dem Bildungsgrad der Frau und dem Anteil kindeloser Frauen und der Anzahl an Kindern untersucht. Sollte dabei ein Zusammenhang bestehen, so müssten vor allem Akademikerinnen den höchsten Anteil an Kinderlosigkeit und die niedrigste Kinderzahl je Frau aufweisen. Im Umkehrschluss müssten Frauen mit Hauptschulabschluss oder Frauen ohne Schulabschluss die niedrigsten Anteile an Frauen ohne Kinder und die höchsten Zahlen an Kindern je Frau vermelden.
Das Ziel dieser Bachelorarbeit ist es ein Schätzkonzept zu validieren, das im Rahmen eines Projektes auf der Universität Koblenz-Landau entwickelt wurde, um den Anteil kinderloser Frauen und die Anzahl an Kindern je Frau zu schätzen
In the "Institut MTI Mittelrhein" the impact of training and experience on motion and motion planning in sports is examined. As a part of these investigations, the motion behaviour of a sports climber is analyzed on a sports climbing wall. The aim of this thesis is the segmentation and marker-based detection of the movement of a climber in video recordings. The segmented markers from each image are tracked by a tracking procedure over time. The motion tracks will be exported to the motion analysis software Simi Motion in a format suitable for further analysis.
Global-Illumination is an important part of the rendering of realistic images. However, the computational complexity of an accurate simulation of these effects is too high for the use in real time applications. In this paper Light-Propagation-Volumes, Screen-Space-Reflections and multiple variants of Screen-Space-Ambient-Occlusion are investigated as a solution for real time rendering. It is shown that they are fast enough for the use in real time applications. The various techniques approximate only a few aspects of the light transport, but complement each other.
How does gameplay influence the fun in video games? This article will search for an answer to this question by using a self-made video game created from scratch. This video game will be programmed in two versions with differences only in gameplay. Several test persons are then to play this game. A survey will be answered afterwards. In order to gain values that are merely influenced by gameplay changes, thoughts on the game design and conception were made. Results suggest that gameplay has a big impact on fun in video games. But gameplay isn't the only responsible factor that makes a video game amusing. Psychological aspects are present when the gameplay of a video game changes.
There are a few systems high and low-cost ones for gaze tracking. Normally low-cost systems go in hand with low-resolution cameras. Here the image quality is poor, so the algorithms for detecting the gaze have to work more precisely. But how to test and analyse them correctly, when there is a bad image quality and no reference point known? The idea of this work is, to generate synthetic eye images, where the reference points are known, because they are mainly manually set and then to test and analyse the algorithms with these synthetic images. By switching on features like gaussian noise or a second glint-like reflection point, it is possible to stepwise approximate the synthetic images close to reality. In fact the experiments will lead to an improvement of the algorithms used in a low-resolution system environment.