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This thesis explores a 3D object detection and pose estimation approach based on the point pair features method presented by Drost et. al. [Dro+10]. While pose estimation methods have shown good improvements, they still remain a crucial problem on the computer vision field. In this work, we implemented a program that takes point cloud scenes as input and returns the detected object with their estimated pose. The program fully covers an object detection pipeline by processing 3D models during an offline phase, extracting their point pair features and creating a global descriptor out of them. During an online phase, the same features are extracted from a point cloud scene and are matched to the model features. After the voting scheme, potential poses of the object are retrieved. The poses end being clustered together and post-processed to finally deliver a result. The program was tested using simulated and real data. We evaluate these tests and present the final results, by discussing the achieved accuracy of the detections and the estimated poses.
This thesis is about the design and the implementation of a virtual reality experience. The goal is to answer two questions: Is it possible to create an immersive virtual reality experience which is mainly using impulses and triggers to scare and frighten users? Secondly, is this immersion strong enough to create an illusion in which the user can't separate the real world from the virtual world? To realise this project the design program Unity3D as well as Visual Studios 2017 were used. Furthermore, in order to verify that the experience is indeed immersive for the user, an experiment with a sample size of seven people was created. Afterwards the candidates were interviewed via a questionnaire how they felt during the virtual reality application. As a result the study showed that the application has tendencies to be immersive but the users were still aware of the situation. It can be concluded that the immersion was not strong enough to fool users regarding the separation of virtual and real world.
Mit der rasant fortschreitenden Entwicklung von Informatiksystemen und Algorithmen ist die Erfassung und Verarbeitung von Daten in immer größeren Umfang möglich. Verschiedene Initiativen haben sich dadurch motiviert zur Aufgabe gemacht, über die daraus resultierenden Gefahren für die Persönlichkeitsrechte und die Meinungsfreiheit aufzuklären. Dies soll einen bewussteren Umgang mit personenbezogenen Daten zur Folge haben. Zum Schutz der Grundrechte bedarf es aufgeklärter und informierter Nutzer, diese Aufgabe können die Initiativen allerdings nicht alleine leisten. Die staatlichen Bildungseinrichtungen und besonders die Schulen, stehen hier in der Pflicht sich an der Lösung des Problems zu beteiligen. Um ihrem Bildungsauftrag im vollen Ausmaß gerecht zu werden, bedarf es struktureller Änderungen, wie der Änderung von Lehrplänen. Solange diese allerdings nicht erfolgt sind, muss in und mit den gegebenen Strukturen gearbeitet werden. Eine Plattform dafür bietet der schulische Informatikunterricht.
Die vorliegende Arbeit stellt eine Unterrichtsreihe zur Behandlung von Datenschutz und Datensicherheit vor. Es wurde dabei ein kontextorientierter Ansatz nach Vorbild von Informatik im Kontext gewählt. Die Reihe Smartphone-Applikationen beinhaltet über die genannten primären Themen der Unterrichtsreihe hinaus weitere Dimensionen, die bei der Nutzung von Smartphones auftreten. Durch den direkten Bezug zum Alltag der Schüler soll dabei eine möglichst hohe Betroffenheit erzeugt werden. Dadurch sollen die Schüler ihr bisheriges Nutzungsverhalten überdenken und im besten Fall ihren Altersgenossen als Vorbilder dienen. Die Prüfung der Durchführbarkeit der Reihe im Unterricht steht noch aus. Diese war im Rahmen dieser Arbeit, begründet durch die begrenzte Bearbeitungszeit, nicht zu leisten.
In this thesis criteria and requirements for a successful collaboration platform for the improvement of communication between scientific institutes of the railway industry distributed worldwide are developed and evaluated. First, an introduction to collaboration platforms and their current market situation and trends will be given. The result-ing knowledge will be used for a qualitative content analysis in the form of interviews with the target group of the planned collaboration platform. Based on the basic knowledge and the interviews carried out, hypotheses for communication in scientific institutes will then be formed. These hypotheses serve to create a questionnaire for a quantitative survey of the target group. The following analysis of general collaboration platforms and those of the railway industry provides further insights and describes requirements for a successful conception of a collaboration platform.
A subsequently planned conception of this platform cannot be carried out within the scope of this research work due to a lack of meaningful results and information. The planned quantitative content analysis was too complex for the chosen research context. In this research work, the quantitative questioning will be prepared for the following research work in this topic area. Further work results will be evaluated and made available for the following research work.
The mitral valve is one of four human heart valves. It is located in the left heart and acts as a unidirectional passageway for blood between the left atrium and the left ventricle. A correctly functioning mitral valve prevents a backflow of blood into the pulmonary circulation (lungs) and thus constitutes a vital part of the cardiac cycle. Pathologies of the mitral valve can manifest in a variety of symptoms with severity ranging from chest pain and fatigue to pulmonary edema (fluid accumulation in the tissue and air space of lungs), which may ultimately cause respiratory failure.
Malfunctioning mitral valves can be restored through complex surgical interventions, which greatly benefit from intensive planning and pre-operative analysis. Visualization techniques provide a possibility to enhance such preparation processes and can also facilitate post-operative evaluation. The work at hand extends current research in this field, building upon patient-specific mitral valve segmentations developed at the German Cancer Research Center, which result in triangulated 3D models of the valve surface. The core of this work will be the construction of a 2D-view of these models through global parameterization, a method that can be used to establish a bijective mapping between a planar parameter domain and a surface embedded in higher dimensions.
A flat representation of the mitral valve provides physicians with a view of the whole surface at once, similar to a map. This allows assessment of the valve's area and shape without the need for different viewing angles. Parts of the valve that are occluded by geometry in 3D become visible in 2D.
An additional contribution of this work will be the exploration of different visualizations of the 3D and 2D mitral valve representations. Features of the valve can be highlighted by associating them with specified colors, which can for instance directly convey pathology indicators.
Quality and effectiveness of the proposed methods were evaluated through a survey conducted at the Heidelberg University Hospital.
This Bachelor thesis illustrates the connection between the technologies Augmented and Virtual Reality and creates an expedient interdependency of the two forms of presentation. For this purpose, an application in the area of interior design has been implemented, where designing a room can be made more intuitive by using Augmented Reality, as it provides a realistic impression of the planned apartment with a Virtual Reality simulation. Based on the relevant knowledge, a project-concept has been drafted and realized by using several development systems. During a series of tests this implementation has been evaluated and subsequently optimized. The result confirms the assumption, that Augmented and Virtual Reality with their strengths can be combined to an evident solution. This thesis is relevant for computer science students as well as for people interested in innovative solutions.
In this bachelor thesis a code for astrophysical self-gravitating fluid
simulation is developed. The code runs mainly on the GPU. Minimal
simplifications of the physical model and some parameters for accuracy
and tuning allow simulations to be performed at interactive framerates
on most modern consumer grade computers that feature a dedicated
graphics card. It is used to simulate the birth of stars from a turbulent
molecular cloud. Multiple features of star formation, like accretion
discs and fragmentation, can be observed in the simulation, even when
low particle counts are used.
During the last couple of years the extension of the internet into the real world, also referred to as the Internet of Things (IoT), was positively affected by an ongoing digitalization (Mattern and Floerkemeier, 2010; Evans, 2013). Furthermore, one of the most active IoT domains is the personal health ecosystem (Steele and Clarke, 2013). However, this thesis proposes a gamification framework which is supported and enabled by IoT to bring personal health and IoT together in the context of health-insurances. By examining gamification approaches and identifying the role of IoT in such, a conceptual model of a gamification approach was created which indicates where and how IoT is ap-plicable to it. Hence, IoT acts as enabler and furthermore as enhancer of gamified activities. Especial-ly the necessity of wearable devices was highlighted. A stakeholder analysis shed light on respective benefits which concluded in the outcome, that IoT enabled two paradigm shifts for both, the insur-ance and their customer. While taking the results of the examination and the stakeholder analysis as input, the previously made insights were used to develop an IoT supported gamification framework. The framework includes a multi-level structure which is meant to guide through the process of creat-ing an approach but also to analyze already existing approaches. Additionally, the developed frame-work was instantiated based on the application Pokémon Go to identify occurring issues and explain why it failed to retain their customer in the long term. The thesis provides a foundation on which fur-ther context related research can be orientated.
In der Computergrafik stellte das echtzeitfähige
Rendern von Haaren und Fell ein Problem dar. Die
Berechnung der Beleuchtung, Schattierung und
Transparenz erfordert einen hohen Rechenaufwand,
welcher sich negativ auf die Performanz auswirkt.
Doch durch verbesserte Hardware und neue Verfahren
ist es möglich, solch komplexe Effekte in Echtzeit
zu simulieren. In folgender Arbeit werden die
Grundlagen des Renderings von Haaren erläutert.
Außerdem wurde im Rahmen der Arbeit eine
echtzeitfähige Demo implementiert, deren zugrunde
liegende Verfahren und Funktionalitäten beschrieben
werden. Um die Demo zu evaluieren wurde die mögliche
Anzahl an Bildern pro Sekunde bei Modellen
unterschiedlicher Komplexität gemessen. Schließlich
wurden die Ergebnisse mit Bildern von echten Haaren
verglichen.
The present thesis describes the development of an OpenGL-based tool visualizing cavities of proteins, which can be observed during a static docking simulation. The goal is to achieve knowledge about interactions between proteins and ligands based on information about distances between them. At first chemical basics, which motivate the topic and are important for understanding the topic and the used algorithms, are presented. Furthermore existing software, which deals with similar issues, is described. Next the prerequisites for the development of the program are presented and the tool is described in detail. Concluding the tool is evaluated concerning performance and usage and a summarizing conclusion is given. The program turns out as a helpful tool for current research and a good base for further and deeper research projects.