64 resultados para Química aplicada a las artes
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Presentación oral SPIE Photonics Europe, Brussels, 16-19 April 2012.
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Analysis of vibrations and displacements is a hot topic in structural engineering. Although there is a wide variety of methods for vibration analysis, direct measurement of displacements in the mid and high frequency range is not well solved and accurate devices tend to be very expensive. Low-cost systems can be achieved by applying adequate image processing algorithms. In this paper, we propose the use of a commercial pocket digital camera, which is able to register more than 420 frames per second (fps) at low resolution, for accurate measuring of small vibrations and displacements. The method is based on tracking elliptical targets with sub-pixel accuracy. Our proposal is demonstrated at a 10 m distance with a spatial resolution of 0.15 mm. A practical application over a simple structure is given, and the main parameters of an attenuated movement of a steel column after an impulsive impact are determined with a spatial accuracy of 4 µm.
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Resumen de la presentación oral en el 6th EOS Topical Meeting on Visual and Physiological Optics (EMVPO 2012), Dublín, 20-22 Agosto 2012.
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Presentación oral realizada en el 6th EOS Topical Meeting on Visual and Physiological Optics (EMVPO 2012), Dublín, 20-22 Agosto 2012.
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Subpixel methods increase the accuracy and efficiency of image detectors, processing units, and algorithms and provide very cost-effective systems for object tracking. Published methods achieve resolution increases up to three orders of magnitude. In this Letter, we demonstrate that this limit can be theoretically improved by several orders of magnitude, permitting micropixel and submicropixel accuracies. The necessary condition for movement detection is that one single pixel changes its status. We show that an appropriate target design increases the probability of a pixel change for arbitrarily small shifts, thus increasing the detection accuracy of a tracking system. The proposal does not impose severe restriction on the target nor on the sensor, thus allowing easy experimental implementation.
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Al descomprimir el archivo *.zip se tendrán dos archivos. Un manual (*.pdf), con las instrucciones de instalación y uso del programa, y un ejecutable (*.exe)
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Retinal image quality is commonly analyzed through parameters inherited from instrumental optics. These parameters are defined for ‘good optics’ so they are hard to translate into visual quality metrics. Instead of using point or artificial functions, we propose a quality index that takes into account properties of natural images. These images usually show strong local correlations that help to interpret the image. Our aim is to derive an objective index that quantifies the quality of vision by taking into account the local structure of the scene, instead of focusing on a particular aberration. As we show, this index highly correlates with visual acuity and allows inter-comparison of natural images around the retina. The usefulness of the index is proven through the analysis of real eyes before and after undergoing corneal surgery, which usually are hard to analyze with standard metrics.
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Behaviour analysis of construction safety systems is of fundamental importance to avoid accidental injuries. Traditionally, measurements of dynamic actions in Civil Engineering have been done through accelerometers, but high-speed cameras and image processing techniques can play an important role in this area. Here, we propose using morphological image filtering and Hough transform on high-speed video sequence as tools for dynamic measurements on that field. The presented method is applied to obtain the trajectory and acceleration of a cylindrical ballast falling from a building and trapped by a thread net. Results show that safety recommendations given in construction codes can be potentially dangerous for workers.
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Grabaciones mediante cámara y micrófono de un altavoz emitiendo un sonido formado por 2 funciones sinusoidales de frecuencias 317 Hz y 412 Hz.
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Vídeo del experimento realizado para medir la frecuencia de vibración de un diapasón.
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En este trabajo se exponen los resultados obtenidos por la red de docencia universitario con título “Incorporación de las tecnologías en “la nube” y las redes sociales en la docencia del Máster Universitario en Ingeniería de Telecomunicación”. Esta red surge a partir del carácter interdisciplinar de los alumnos matriculados al máster, así como de la problemática a la hora de compaginar su horario laboral con sus estudios. Esta nueva casuística ha implicado utilizar nuevas técnicas de comunicación que les permita estar actualizados y en contacto directo con sus compañeros, así como con el propio profesorado. Las nuevas tecnologías y el papel de la nube en la sociedad son cada vez más importantes y relevantes, por ello, los autores han concentrado sus esfuerzos en aplicar estas herramientas en la docencia universitaria. Además, se han intensificado esfuerzos en unificar la plataforma on-line de Google Docs de una manera más transparente para el alumnado. Los resultados de estas tentativas, así como los derivados de la implantación de estas nuevas estrategias docentes se recogen y comentan en este trabajo pudiéndose extraer conclusiones positivas sobre el enfoque y la metodología utilizada.
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In this paper, we demonstrate the use of a video camera for measuring the frequency of small-amplitude vibration movements. The method is based on image acquisition and multilevel thresholding and it only requires a video camera with high enough acquisition rate, not being necessary the use of targets or auxiliary laser beams. Our proposal is accurate and robust. We demonstrate the technique with a pocket camera recording low-resolution videos with AVI-JPEG compression and measuring different objects that vibrate in parallel or perpendicular direction to the optical sensor. Despite the low resolution and the noise, we are able to measure the main vibration modes of a tuning fork, a loudspeaker and a bridge. Results are successfully compared with design parameters and measurements with alternative devices.