3 resultados para Real-time data processing.

em Consorci de Serveis Universitaris de Catalunya (CSUC), Spain


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The automatic interpretation of conventional traffic signs is very complex and time consuming. The paper concerns an automatic warning system for driving assistance. It does not interpret the standard traffic signs on the roadside; the proposal is to incorporate into the existing signs another type of traffic sign whose information will be more easily interpreted by a processor. The type of information to be added is profuse and therefore the most important object is the robustness of the system. The basic proposal of this new philosophy is that the co-pilot system for automatic warning and driving assistance can interpret with greater ease the information contained in the new sign, whilst the human driver only has to interpret the "classic" sign. One of the codings that has been tested with good results and which seems to us easy to implement is that which has a rectangular shape and 4 vertical bars of different colours. The size of these signs is equivalent to the size of the conventional signs (approximately 0.4 m2). The colour information from the sign can be easily interpreted by the proposed processor and the interpretation is much easier and quicker than the information shown by the pictographs of the classic signs

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L’objectiu d’aquest PFC és desenvolupar un sistema de pluja per a videojocs i aplicacions de realitat virtual que sigui acurat, tant en el sentit del realisme visual com del seu comportament. El projecte permetrà al desenvolupador de videojocs incorporar a les seves aplicacions, zones de pluja amb diferents intensitats utilitzant el hardware gràfic més modern, per així evitar que aquesta pluja sigui processada per la CPU i per tant pugui alentir el videojoc que està creant. S’han desenvolupat dos sistemes, el sistema d’edició de pluja i el de visualització en temps real

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This work proposes a parallel architecture for a motion estimation algorithm. It is well known that image processing requires a huge amount of computation, mainly at low level processing where the algorithms are dealing with a great numbers of data-pixel. One of the solutions to estimate motions involves detection of the correspondences between two images. Due to its regular processing scheme, parallel implementation of correspondence problem can be an adequate approach to reduce the computation time. This work introduces parallel and real-time implementation of such low-level tasks to be carried out from the moment that the current image is acquired by the camera until the pairs of point-matchings are detected