36 resultados para Projection Mapping, Augmented Reality, OpenFrameworks


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This proposal aims to explore the use of available technologies for video representation of sets and performers in order to serve as support for composition processes and artistic performer rehearsals, while focusing in representing the performer’s body and its movements, and its relation with objects belonging to the three-dimensional space of their performances. This project’s main goal is to design and develop a system that can spatially represent the performer and its movements, by means of capturing processes and reconstruction using a camera device, as well as enhance the three-dimensional space where the performance occurs by allowing interaction with virtual objects and by adding a video component, either for documentary purposes, or for live performances effects (for example, using video mapping video techniques in captured video or projection during a performance).

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In this thesis we propose to examine the first half of the Phaedrus (sc. until the end of the palinode) in light of the opposition between the notions of μανία and φρονεῖν, as they are explicitly and implicitly presented in the erotic speeches. These are read in dialogue with what we have designated as the “implicit speech” or “speeches”, i.e., the plurality of conceptions regarding ἔρως, μανία and φρονεῖν that were part of Ancient Greek culture. Our reading of the two speeches against ἔρως, Lysias’ and Socrates’ first speech, engages with this cultural background, and extracts a conception of μανία and φρονεῖν with which the palinode will primarily confront. Our reading of the palinode divides it into two sections: the first, the presentation of the first three kinds of beneficial μανία; the second, the mythical narrative that deals with erotic μανία. We emphasise the existence of a wide gulf between these two moments in terms of their ontological, theological and anthropological conceptions. The second section of the palinode is revolutionary not only in contrast with the “implicit speech” and the speeches against ἔρως, but also in contrast with the very beginning of the palinode – which preserves many of the conceptions and assumptions found in the previous speeches and in the cultural tradition. It is in order to explain the foundation, meaning and significance of this gulf that we explore and discuss the notion of ὑπόθεσις and its role as an implicit operator in the Phaedrus. From our reading of the second part of the palinode, it is clear how the introduction of the ὑπερουράνιος τόπος brings about a radical revision of the perspectives on the nature of reality and on human nature and condition that were implicit in the previous speeches and in the first part of the palinode. We show that the ὑπερουράνιος τόπος corresponds to the projection of a multiplicity of cognitive and desiderative requirements that our normal perspective demands, but cannot possibly satisfy. In other words, our perspective is shown to be living beyond its means, yearning for something that by far exceeds what it can get in its de facto condition: the superlative. This results in a major revision of the understanding of φρονεῖν and μανία – a revision that challenges the traditional understanding of these two notions as binary opposites, thereby revealing a much more complex landscape.

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Many municipal activities require updated large-scale maps that include both topographic and thematic information. For this purpose, the efficient use of very high spatial resolution (VHR) satellite imagery suggests the development of approaches that enable a timely discrimination, counting and delineation of urban elements according to legal technical specifications and quality standards. Therefore, the nature of this data source and expanding range of applications calls for objective methods and quantitative metrics to assess the quality of the extracted information which go beyond traditional thematic accuracy alone. The present work concerns the development and testing of a new approach for using technical mapping standards in the quality assessment of buildings automatically extracted from VHR satellite imagery. Feature extraction software was employed to map buildings present in a pansharpened QuickBird image of Lisbon. Quality assessment was exhaustive and involved comparisons of extracted features against a reference data set, introducing cartographic constraints from scales 1:1000, 1:5000, and 1:10,000. The spatial data quality elements subject to evaluation were: thematic (attribute) accuracy, completeness, and geometric quality assessed based on planimetric deviation from the reference map. Tests were developed and metrics analyzed considering thresholds and standards for the large mapping scales most frequently used by municipalities. Results show that values for completeness varied with mapping scales and were only slightly superior for scale 1:10,000. Concerning the geometric quality, a large percentage of extracted features met the strict topographic standards of planimetric deviation for scale 1:10,000, while no buildings were compliant with the specification for scale 1:1000.

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Grasslands in semi-arid regions, like Mongolian steppes, are facing desertification and degradation processes, due to climate change. Mongolia’s main economic activity consists on an extensive livestock production and, therefore, it is a concerning matter for the decision makers. Remote sensing and Geographic Information Systems provide the tools for advanced ecosystem management and have been widely used for monitoring and management of pasture resources. This study investigates which is the higher thematic detail that is possible to achieve through remote sensing, to map the steppe vegetation, using medium resolution earth observation imagery in three districts (soums) of Mongolia: Dzag, Buutsagaan and Khureemaral. After considering different thematic levels of detail for classifying the steppe vegetation, the existent pasture types within the steppe were chosen to be mapped. In order to investigate which combination of data sets yields the best results and which classification algorithm is more suitable for incorporating these data sets, a comparison between different classification methods were tested for the study area. Sixteen classifications were performed using different combinations of estimators, Landsat-8 (spectral bands and Landsat-8 NDVI-derived) and geophysical data (elevation, mean annual precipitation and mean annual temperature) using two classification algorithms, maximum likelihood and decision tree. Results showed that the best performing model was the one that incorporated Landsat-8 bands with mean annual precipitation and mean annual temperature (Model 13), using the decision tree. For maximum likelihood, the model that incorporated Landsat-8 bands with mean annual precipitation (Model 5) and the one that incorporated Landsat-8 bands with mean annual precipitation and mean annual temperature (Model 13), achieved the higher accuracies for this algorithm. The decision tree models consistently outperformed the maximum likelihood ones.