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Forwarding loops
(2013)
Ein Werkzeug zur schnellen Erstellung individueller Schriftarten für die jeweiligen akuten Bedürfnisse wäre ein hilfreiches Instrument für Grafiker und Typographen. Die Anforderung für ein solches Instrument kann kaum sein, gute Schriftsätze zu erzeugen, dies liegt in den Händen des Gestalters, jedoch sollte sie jedem, der sich mit dem Thema befassen möchte, einen leichten Einstieg in die Gestaltung geben. Diese Arbeit versucht somit eine möglichst simple Lösung für das komplexe Thema der Schriftgestaltung zu liefern.
The annotation of digital media is no new area of research, instead it is widely investigated. There are many innovative ideas for creating the process of annotation. The most extensive segment of related work is about semi automatic annotation. One characteristic is common in the related work: None of them put the user in focus. If you want to build an interface, which is supporting and satsfying the user, you will have to do a user evaluation first. Whithin this thesis we want to analyze, which features an interface should or should not have to meet these requirements of support, user satisfaction and beeing intuitive. After collecting many ideas and arguing with a team of experts, we determined only a few of them. Different combination of these determined variables form the interfaces, we have to investigate in our usability study. The results of the usability leads to the assumption, that autocompletion and suggestion features supports the user. Furthermore coloring tags for grouping them into categories is not disturbing to the user, but has a tendency of being supportive. Same tendencies emerge for an interface consisting of two user interface elements. There is also an example given for the definition differences of being intuitive. This thesis leads to the concolusion that for reasons of user satisfaction and support it is allowed to differ from classical annotation interface features and to implement further usability studies in the section of annotation interfaces.
Das Lernen und Verstehen dynamischer Sachverhalte kann sowohl anhand von statischen Bildern als auch von Animationen erfolgen. Da die bisher vorliegenden Befunde keine eindeutige Überlegenheit der einen oder der anderen Repräsentationsform erkennen lassen, sind differenziertere Wirkungsanalysen erforderlich. Grundannahme der vorliegenden Dissertation war, dass beide Darstellungsformen unterschiedlich gut für den Aufbau dynamischer mentaler Modelle einerseits und den Aufbau dynamischer perzeptueller Repräsentationen andererseits geeignet sind. Es wurde erstens angenommen, dass dynamische mentale Modelle keine kontinuierlichen mentalen Simulationen ermöglichen, sondern aus einer Sequenz von diskreten prototypischen Prozess-Zuständen (sog. "key states") bestehen und deshalb besser anhand statischer Bilder dieser "key states" als anhand einer Animation konstruiert werden können. Zweitens wurde angenommen, dass perzeptuelle Repräsentationen dynamischer Sachverhalte aus dynamischen Schemata bestehen, die besser anhand einer Animation als anhand von statischen Bildern gebildet werden können. Als Indikator für die Qualität mentaler Modelle wurden Inferenzaufgaben verwendet, bei denen durch Manipulation dieser Modelle neue Informationen zu erschließen sind. Als Indikator für die Qualität dynamischer perzeptueller Repräsentationen wurden Leistungen bei der Kategorisierung von Bewegungsabläufen verwendet. Die erste Annahme wurde am Beispiel der synaptischen Informationsübertragung (nach einer Vorpilot- und Pilotstudie) in einer ersten Hauptstudie mit 61 Probanden überprüft.
Die Ergebnisse weisen darauf hin, dass die Hypothese eher bei Probanden mit höherem Vorwissen als bei solchen mit niedrigerem Vorwissen zutrifft. Die zweite Annahme wurde am Beispiel des Erkennens der Gangart von Pferden (nach einer Pilotstudie) in einer zweiten Hauptstudie mit 52 Probanden überprüft. Die Ergebnisse zeigten durchwegs Unterschiede in der erwarteten Richtung, die jedoch nicht oder nur marginal signifikant sind. Allerdings führten die Animationen zu einer hochsignifikant geringeren kognitiven Belastung als statische Bilder. Darüber hinaus zeigten sich signifikante Interaktionen mit den räumlichen Fähigkeiten: Probanden mit geringeren Fähigkeiten profitieren bei der Kategorisierung von Bewegungsabläufen bedeutsam mehr von Animationen als von statischen Bildern.
The Microsoft Kinect is currently polular in many application areas because ofrnthe cheap price and good precission. But controlling the cursor is unapplicablerndue to jitter in the skeletton data. My approach will try to stabilisize the cursor position with common techniques from image processing. The input therefore will be the Kinect color camera. A final position will be calculated using the different positions of the tracking techniques. For controlling the cursor the right hand should be tracked. A simple click gesture will also be developed. The evaluation will show if this approach was succesfull.
Today you can find smartphones everywhere. This situation created a hype for Augmented Reality and AR Apps. The big question is: Do these applications provide a real added value? To make AR pratically it is important to add the computational power of a computer to the advantages of AR. An easy and fast way of interaction is essential.
A Poker-Assistance-Software is an ideal test area for an AR Application with real added value. The estimation of the winning probability and a fast automated tracking of the playing cards is the perfect field of investigation.
In this discussion it is interesting to evaluate the added value of AR Applications in common.
This bachelor thesis deals with the topic "user-friendly design of applications (apps)" on mobile devices, a subdomain of software-ergonomics. In the process, two applications are being analyzed with the aim of developing a solution on how support on a mobile device should be conducted. This study focuses primarily on appropriate gestures to coordinate the 'help function' on a mobile device. The study results show that the test persons request a customized help function, but reject an extensive help description, as this seems to be overwhelming for the user.
The conservation of groundwater ecosystems requires an assessment and evaluation scheme that shows the state of the ecosystem. Consequently, faunal and microbial criteria are required for groundwater monitoring, in addition to physico-chemical analyses. To proof the adequacy of the application of groundwater organisms for the biological assessment of groundwater quality, an extensive sampling collection of various groundwater systems was accomplished between 2002 and 2009 in Germany. Key aspects were the examination of the indicator potential of groundwater communities towards surface-groundwater interactions and anthropogenic impacts, as well as the analysis of stygofaunal distribution patterns, as a base and reference for a faunal assessment scheme of groundwater systems. The sampling design considered local, regional, and biogeographic conditions. To test the indicator potential of groundwater organisms on a local and regional scale, groundwater systems in Nordrhein-Westfalen (NRW) and Baden-Württemberg (BW) were examined. The faunal and microbial data from unconsolidated aquifers (Erftgebiet, NRW) show the sensitivity of groundwater organisms against land use effects, e.g. extensive agriculture. Data analyses revealed positive correlations of organic material (estimated amount of detritus, TOC) and nitrate with faunal abundance, species richness, diversity and the proportions of stygoxene species. Moreover, the bacterial abundance and diversity in the groundwater of the Erftgebiet was high compared to oligotrophic groundwater systems, indicating an effect of surface influence due to agricultural land use. The groundwater colonization in the Alb-Donau-Kreis (BW) was analyzed for regional effects (landscape, type of aquifer, hydrogeology) and local effects (comparing single wells). The results show that the fauna reflects the strength of the hydrological exchange on different spatial scales. Furthermore, the fauna reflects the interaction of regional and local conditions. Accordingly, the diversity and abundance of groundwater organisms was influenced by the high connectivity of the karst and unconsolidated alluvial aquifers, the type of land use, covering layers of soil, the age of groundwater, and the sampling depths. In general, faunal and microbial data of the Alb-Donau-Kreis are characteristic for oligotrophic, oligoalimonic groundwaters. The large scale analyses of stygofaunal distribution patterns revealed significant biogeographical differences of the communities. These community patterns of the groundwater fauna do not coincide with existing classification schemes defined for surface landscapes or freshwater systems. The largest differences between faunal surface and subsurface distribution patterns were found between the groundwater of northern and southern Germany and the foothills of the central mountain ranges - all of them regions shaped by the last ice ages.
In accordance with the faunal data assessed in groundwater, four different stygoregions were defined that are populated by distinct faunal assemblages. These are 1) the "Northern lowlands", 2) the "Central mountain ranges", 3) the "South-western mountain ranges", and 4) the "Southern mountain ranges and northern alps". The study corroborates that stygofaunal and microbial communities are an adequate tool for the qualitative assessment and monitoring of groundwater ecosystems. The best indicators to detect anthropogenic impacts on groundwater ecosystems are the faunal diversity, abundance, the proportions of stygobitic (obligate groundwater species) and stygoxene species (species not obligate for groundwater), and the bacterial abundance. The development of an ecologically based groundwater assessment and management, is crucial for the conservation of our groundwater ecosystems and thus, healthy drinking water. The defintion of "stygoregions" is an important base for the development of an assessment and reference scheme for groundwater ecosystems. The assessment of the ecological state of groundwater systems must be conducted on local scale, because the strength of the local hydrological influence determines the amount of food and oxygen as well as stygoxene animals within the aquifer, and thus shapes the local groundwater communities. Nevertheless, information of the biogeographic and regional conditions is needed as a reference for the type of species and abundances that potentially can occur in certain groundwater systems.
In dieser Studienarbeit sollen verschiedene Routing-Lookup Algorithmen aufgelistet und verglichen werden, mit denen eine Routing-Tabelle erstellt und angepasst werden kann. Dazu werden hier nur dynamische Verfahren in Betracht gezogen. Allgemein wird die Funktionsweise einer Routing-Tabelle erklärt und drei Verfahren bzw. Algorithmen analysiert und bewertet. Die Algorithmen werden anhand von Beispielen erläutert und in einem abschließenden Kapitel gegenüber gestellt. Dabei werden die Vor- und Nachteile der einzelnen Verfahren aufgelistet.
Augmented Reality (AR) is getting more and more popular. To augment information into the field of vision of the user using HMDs, e.g. front shields of a car, glasses, displays of a smartphone or tablets are the main use of AR technology. It is necessary to get the position and orientation (pose) of the camera in space to augment correctly.
Nowadays, this is solved with artificial markers. These known markers are placed in the room and the system is taught to this set up. The next step is to get rid of these artificial markers. If we are calculating the pose without such markers we are talking about marker-less tracking. Instead of artificial markers we will use natural objects in the real world as reference points to calculate the pose. Thus, this approach can be used flexibly and dynamically. We are no longer dependent on artificial markers but we need much more knowledge about the scenery to find the pose. This is compensated by technical actions and/or the user himself. However, both solutions are neither comfortable nor efficient for the usage of such a system. This is why marker-less 3D tracking is still a big field of research.
This sets the starting point for the bachelor thesis. In this thesis an approach is proposed that needs only a quantity of 2D Feature from a given camera image and a quantity of 3D Feature of an object to find the initial Pose. With this approach, we got rid of the technical and user assistance. 2D and 3D Features can be detected in any way you like.
The main idea of this approach is to build six correspondences between these quantities. With those we are able to estimate the pose. Each 3D Feature is mapped with the estimated pose onto image coordinates, whereby the estimated pose can be evaluated. Each distance is measured between the mapped 3D Feature and the associated 2D Feature. Each correspondency is evaluated and the results are summed up to evaluate the whole pose. The lower this summed up value is, the better the pose. It has been shown to have a correct pose with a value around ten pixels.
Due to lots of possibilities to build six correspondences between the quantities, it is necessary to optimize the building process. For the optimization we will use a genetic algorithm.
During the test case the system worked quite reliably. The hit rate was around 90% with a runtime of approximately twelve minutes. Without optimization it can take easily some years.