866 resultados para visual half-field
Resumo:
Autonomous landing is a challenging and important technology for both military and civilian applications of Unmanned Aerial Vehicles (UAVs). In this paper, we present a novel online adaptive visual tracking algorithm for UAVs to land on an arbitrary field (that can be used as the helipad) autonomously at real-time frame rates of more than twenty frames per second. The integration of low-dimensional subspace representation method, online incremental learning approach and hierarchical tracking strategy allows the autolanding task to overcome the problems generated by the challenging situations such as significant appearance change, variant surrounding illumination, partial helipad occlusion, rapid pose variation, onboard mechanical vibration (no video stabilization), low computational capacity and delayed information communication between UAV and Ground Control Station (GCS). The tracking performance of this presented algorithm is evaluated with aerial images from real autolanding flights using manually- labelled ground truth database. The evaluation results show that this new algorithm is highly robust to track the helipad and accurate enough for closing the vision-based control loop.
Resumo:
Autonomous landing is a challenging and important technology for both military and civilian applications of Unmanned Aerial Vehicles (UAVs). In this paper, we present a novel online adaptive visual tracking algorithm for UAVs to land on an arbitrary field (that can be used as the helipad) autonomously at real-time frame rates of more than twenty frames per second. The integration of low-dimensional subspace representation method, online incremental learning approach and hierarchical tracking strategy allows the autolanding task to overcome the problems generated by the challenging situations such as significant appearance change, variant surrounding illumination, partial helipad occlusion, rapid pose variation, onboard mechanical vibration (no video stabilization), low computational capacity and delayed information communication between UAV and Ground Control Station (GCS). The tracking performance of this presented algorithm is evaluated with aerial images from real autolanding flights using manually- labelled ground truth database. The evaluation results show that this new algorithm is highly robust to track the helipad and accurate enough for closing the vision-based control loop.
Resumo:
La presente Tesis constituye un avance en el conocimiento de los efectos de la variabilidad climática en los cultivos en la Península Ibérica (PI). Es bien conocido que la temperatura del océano, particularmente de la región tropical, es una de las variables más convenientes para ser utilizado como predictor climático. Los océanos son considerados como la principal fuente de almacenamiento de calor del planeta debido a la alta capacidad calorífica del agua. Cuando se libera esta energía, altera los regímenes globales de circulación atmosférica por mecanismos de teleconexión. Estos cambios en la circulación general de la atmósfera afectan a la temperatura, precipitación, humedad, viento, etc., a escala regional, los cuales afectan al crecimiento, desarrollo y rendimiento de los cultivos. Para el caso de Europa, esto implica que la variabilidad atmosférica en una región específica se asocia con la variabilidad de otras regiones adyacentes y/o remotas, como consecuencia Europa está siendo afectada por los patrones de circulaciones globales, que a su vez, se ven afectados por patrones oceánicos. El objetivo general de esta tesis es analizar la variabilidad del rendimiento de los cultivos y su relación con la variabilidad climática y teleconexiones, así como evaluar su predictibilidad. Además, esta Tesis tiene como objetivo establecer una metodología para estudiar la predictibilidad de las anomalías del rendimiento de los cultivos. El análisis se centra en trigo y maíz como referencia para otros cultivos de la PI, cultivos de invierno en secano y cultivos de verano en regadío respectivamente. Experimentos de simulación de cultivos utilizando una metodología en cadena de modelos (clima + cultivos) son diseñados para evaluar los impactos de los patrones de variabilidad climática en el rendimiento y su predictibilidad. La presente Tesis se estructura en dos partes: La primera se centra en el análisis de la variabilidad del clima y la segunda es una aplicación de predicción cuantitativa de cosechas. La primera parte está dividida en 3 capítulos y la segundo en un capitulo cubriendo los objetivos específicos del presente trabajo de investigación. Parte I. Análisis de variabilidad climática El primer capítulo muestra un análisis de la variabilidad del rendimiento potencial en una localidad como indicador bioclimático de las teleconexiones de El Niño con Europa, mostrando su importancia en la mejora de predictibilidad tanto en clima como en agricultura. Además, se presenta la metodología elegida para relacionar el rendimiento con las variables atmosféricas y oceánicas. El rendimiento de los cultivos es parcialmente determinado por la variabilidad climática atmosférica, que a su vez depende de los cambios en la temperatura de la superficie del mar (TSM). El Niño es el principal modo de variabilidad interanual de la TSM, y sus efectos se extienden en todo el mundo. Sin embargo, la predictibilidad de estos impactos es controversial, especialmente aquellos asociados con la variabilidad climática Europea, que se ha encontrado que es no estacionaria y no lineal. Este estudio mostró cómo el rendimiento potencial de los cultivos obtenidos a partir de datos de reanálisis y modelos de cultivos sirve como un índice alternativo y más eficaz de las teleconexiones de El Niño, ya que integra las no linealidades entre las variables climáticas en una única serie temporal. Las relaciones entre El Niño y las anomalías de rendimiento de los cultivos son más significativas que las contribuciones individuales de cada una de las variables atmosféricas utilizadas como entrada en el modelo de cultivo. Además, la no estacionariedad entre El Niño y la variabilidad climática europea se detectan con mayor claridad cuando se analiza la variabilidad de los rendimiento de los cultivos. La comprensión de esta relación permite una cierta predictibilidad hasta un año antes de la cosecha del cultivo. Esta predictibilidad no es constante, sino que depende tanto la modulación de la alta y baja frecuencia. En el segundo capítulo se identifica los patrones oceánicos y atmosféricos de variabilidad climática que afectan a los cultivos de verano en la PI. Además, se presentan hipótesis acerca del mecanismo eco-fisiológico a través del cual el cultivo responde. Este estudio se centra en el análisis de la variabilidad del rendimiento de maíz en la PI para todo el siglo veinte, usando un modelo de cultivo calibrado en 5 localidades españolas y datos climáticos de reanálisis para obtener series temporales largas de rendimiento potencial. Este estudio evalúa el uso de datos de reanálisis para obtener series de rendimiento de cultivos que dependen solo del clima, y utilizar estos rendimientos para analizar la influencia de los patrones oceánicos y atmosféricos. Los resultados muestran una gran fiabilidad de los datos de reanálisis. La distribución espacial asociada a la primera componente principal de la variabilidad del rendimiento muestra un comportamiento similar en todos los lugares estudiados de la PI. Se observa una alta correlación lineal entre el índice de El Niño y el rendimiento, pero no es estacionaria en el tiempo. Sin embargo, la relación entre la temperatura del aire y el rendimiento se mantiene constante a lo largo del tiempo, siendo los meses de mayor influencia durante el período de llenado del grano. En cuanto a los patrones atmosféricos, el patrón Escandinavia presentó una influencia significativa en el rendimiento en PI. En el tercer capítulo se identifica los patrones oceánicos y atmosféricos de variabilidad climática que afectan a los cultivos de invierno en la PI. Además, se presentan hipótesis acerca del mecanismo eco-fisiológico a través del cual el cultivo responde. Este estudio se centra en el análisis de la variabilidad del rendimiento de trigo en secano del Noreste (NE) de la PI. La variabilidad climática es el principal motor de los cambios en el crecimiento, desarrollo y rendimiento de los cultivos, especialmente en los sistemas de producción en secano. En la PI, los rendimientos de trigo son fuertemente dependientes de la cantidad de precipitación estacional y la distribución temporal de las mismas durante el periodo de crecimiento del cultivo. La principal fuente de variabilidad interanual de la precipitación en la PI es la Oscilación del Atlántico Norte (NAO), que se ha relacionado, en parte, con los cambios en la temperatura de la superficie del mar en el Pacífico Tropical (El Niño) y el Atlántico Tropical (TNA). La existencia de cierta predictibilidad nos ha animado a analizar la posible predicción de los rendimientos de trigo en la PI utilizando anomalías de TSM como predictor. Para ello, se ha utilizado un modelo de cultivo (calibrado en dos localidades del NE de la PI) y datos climáticos de reanálisis para obtener series temporales largas de rendimiento de trigo alcanzable y relacionar su variabilidad con anomalías de la TSM. Los resultados muestran que El Niño y la TNA influyen en el desarrollo y rendimiento del trigo en el NE de la PI, y estos impactos depende del estado concurrente de la NAO. Aunque la relación cultivo-TSM no es igual durante todo el periodo analizado, se puede explicar por un mecanismo eco-fisiológico estacionario. Durante la segunda mitad del siglo veinte, el calentamiento (enfriamiento) en la superficie del Atlántico tropical se asocia a una fase negativa (positiva) de la NAO, que ejerce una influencia positiva (negativa) en la temperatura mínima y precipitación durante el invierno y, por lo tanto, aumenta (disminuye) el rendimiento de trigo en la PI. En relación con El Niño, la correlación más alta se observó en el período 1981 -2001. En estas décadas, los altos (bajos) rendimientos se asocian con una transición El Niño - La Niña (La Niña - El Niño) o con eventos de El Niño (La Niña) que están finalizando. Para estos eventos, el patrón atmosférica asociada se asemeja a la NAO, que también influye directamente en la temperatura máxima y precipitación experimentadas por el cultivo durante la floración y llenado de grano. Los co- efectos de los dos patrones de teleconexión oceánicos ayudan a aumentar (disminuir) la precipitación y a disminuir (aumentar) la temperatura máxima en PI, por lo tanto el rendimiento de trigo aumenta (disminuye). Parte II. Predicción de cultivos. En el último capítulo se analiza los beneficios potenciales del uso de predicciones climáticas estacionales (por ejemplo de precipitación) en las predicciones de rendimientos de trigo y maíz, y explora métodos para aplicar dichos pronósticos climáticos en modelos de cultivo. Las predicciones climáticas estacionales tienen un gran potencial en las predicciones de cultivos, contribuyendo de esta manera a una mayor eficiencia de la gestión agrícola, seguridad alimentaria y de subsistencia. Los pronósticos climáticos se expresan en diferentes formas, sin embargo todos ellos son probabilísticos. Para ello, se evalúan y aplican dos métodos para desagregar las predicciones climáticas estacionales en datos diarios: 1) un generador climático estocástico condicionado (predictWTD) y 2) un simple re-muestreador basado en las probabilidades del pronóstico (FResampler1). Los dos métodos se evaluaron en un caso de estudio en el que se analizaron los impactos de tres escenarios de predicciones de precipitación estacional (predicción seco, medio y lluvioso) en el rendimiento de trigo en secano, sobre las necesidades de riego y rendimiento de maíz en la PI. Además, se estimó el margen bruto y los riesgos de la producción asociada con las predicciones de precipitación estacional extremas (seca y lluviosa). Los métodos predWTD y FResampler1 usados para desagregar los pronósticos de precipitación estacional en datos diarios, que serán usados como inputs en los modelos de cultivos, proporcionan una predicción comparable. Por lo tanto, ambos métodos parecen opciones factibles/viables para la vinculación de los pronósticos estacionales con modelos de simulación de cultivos para establecer predicciones de rendimiento o las necesidades de riego en el caso de maíz. El análisis del impacto en el margen bruto de los precios del grano de los dos cultivos (trigo y maíz) y el coste de riego (maíz) sugieren que la combinación de los precios de mercado previstos y la predicción climática estacional pueden ser una buena herramienta en la toma de decisiones de los agricultores, especialmente en predicciones secas y/o localidades con baja precipitación anual. Estos métodos permiten cuantificar los beneficios y riesgos de los agricultores ante una predicción climática estacional en la PI. Por lo tanto, seríamos capaces de establecer sistemas de alerta temprana y diseñar estrategias de adaptación del manejo del cultivo para aprovechar las condiciones favorables o reducir los efectos de condiciones adversas. La utilidad potencial de esta Tesis es la aplicación de las relaciones encontradas para predicción de cosechas de la próxima campaña agrícola. Una correcta predicción de los rendimientos podría ayudar a los agricultores a planear con antelación sus prácticas agronómicas y todos los demás aspectos relacionados con el manejo de los cultivos. Esta metodología se puede utilizar también para la predicción de las tendencias futuras de la variabilidad del rendimiento en la PI. Tanto los sectores públicos (mejora de la planificación agrícola) como privados (agricultores, compañías de seguros agrarios) pueden beneficiarse de esta mejora en la predicción de cosechas. ABSTRACT The present thesis constitutes a step forward in advancing of knowledge of the effects of climate variability on crops in the Iberian Peninsula (IP). It is well known that ocean temperature, particularly the tropical ocean, is one of the most convenient variables to be used as climate predictor. Oceans are considered as the principal heat storage of the planet due to the high heat capacity of water. When this energy is released, it alters the global atmospheric circulation regimes by teleconnection1 mechanisms. These changes in the general circulation of the atmosphere affect the regional temperature, precipitation, moisture, wind, etc., and those influence crop growth, development and yield. For the case of Europe, this implies that the atmospheric variability in a specific region is associated with the variability of others adjacent and/or remote regions as a consequence of Europe being affected by global circulations patterns which, in turn, are affected by oceanic patterns. The general objective of this Thesis is to analyze the variability of crop yields at climate time scales and its relation to the climate variability and teleconnections, as well as to evaluate their predictability. Moreover, this Thesis aims to establish a methodology to study the predictability of crop yield anomalies. The analysis focuses on wheat and maize as a reference crops for other field crops in the IP, for winter rainfed crops and summer irrigated crops respectively. Crop simulation experiments using a model chain methodology (climate + crop) are designed to evaluate the impacts of climate variability patterns on yield and its predictability. The present Thesis is structured in two parts. The first part is focused on the climate variability analyses, and the second part is an application of the quantitative crop forecasting for years that fulfill specific conditions identified in the first part. This Thesis is divided into 4 chapters, covering the specific objectives of the present research work. Part I. Climate variability analyses The first chapter shows an analysis of potential yield variability in one location, as a bioclimatic indicator of the El Niño teleconnections with Europe, putting forward its importance for improving predictability in both climate and agriculture. It also presents the chosen methodology to relate yield with atmospheric and oceanic variables. Crop yield is partially determined by atmospheric climate variability, which in turn depends on changes in the sea surface temperature (SST). El Niño is the leading mode of SST interannual variability, and its impacts extend worldwide. Nevertheless, the predictability of these impacts is controversial, especially those associated with European climate variability, which have been found to be non-stationary and non-linear. The study showed how potential2 crop yield obtained from reanalysis data and crop models serves as an alternative and more effective index of El Niño teleconnections because it integrates the nonlinearities between the climate variables in a unique time series. The relationships between El Niño and crop yield anomalies are more significant than the individual contributions of each of the atmospheric variables used as input in the crop model. Additionally, the non-stationarities between El Niño and European climate variability are more clearly detected when analyzing crop-yield variability. The understanding of this relationship allows for some predictability up to one year before the crop is harvested. This predictability is not constant, but depends on both high and low frequency modulation. The second chapter identifies the oceanic and atmospheric patterns of climate variability affecting summer cropping systems in the IP. Moreover, hypotheses about the eco-physiological mechanism behind crop response are presented. It is focused on an analysis of maize yield variability in IP for the whole twenty century, using a calibrated crop model at five contrasting Spanish locations and reanalyses climate datasets to obtain long time series of potential yield. The study tests the use of reanalysis data for obtaining only climate dependent time series of simulated crop yield for the whole region, and to use these yield to analyze the influences of oceanic and atmospheric patterns. The results show a good reliability of reanalysis data. The spatial distribution of the leading principal component of yield variability shows a similar behaviour over all the studied locations in the IP. The strong linear correlation between El Niño index and yield is remarkable, being this relation non-stationary on time, although the air temperature-yield relationship remains on time, being the highest influences during grain filling period. Regarding atmospheric patterns, the summer Scandinavian pattern has significant influence on yield in IP. The third chapter identifies the oceanic and atmospheric patterns of climate variability affecting winter cropping systems in the IP. Also, hypotheses about the eco-physiological mechanism behind crop response are presented. It is focused on an analysis of rainfed wheat yield variability in IP. Climate variability is the main driver of changes in crop growth, development and yield, especially for rainfed production systems. In IP, wheat yields are strongly dependent on seasonal rainfall amount and temporal distribution of rainfall during the growing season. The major source of precipitation interannual variability in IP is the North Atlantic Oscillation (NAO) which has been related in part with changes in the Tropical Pacific (El Niño) and Atlantic (TNA) sea surface temperature (SST). The existence of some predictability has encouraged us to analyze the possible predictability of the wheat yield in the IP using SSTs anomalies as predictor. For this purpose, a crop model with a site specific calibration for the Northeast of IP and reanalysis climate datasets have been used to obtain long time series of attainable wheat yield and relate their variability with SST anomalies. The results show that El Niño and TNA influence rainfed wheat development and yield in IP and these impacts depend on the concurrent state of the NAO. Although crop-SST relationships do not equally hold on during the whole analyzed period, they can be explained by an understood and stationary ecophysiological mechanism. During the second half of the twenty century, the positive (negative) TNA index is associated to a negative (positive) phase of NAO, which exerts a positive (negative) influence on minimum temperatures (Tmin) and precipitation (Prec) during winter and, thus, yield increases (decreases) in IP. In relation to El Niño, the highest correlation takes place in the period 1981-2001. For these decades, high (low) yields are associated with an El Niño to La Niña (La Niña to El Niño) transitions or to El Niño events finishing. For these events, the regional associated atmospheric pattern resembles the NAO, which also influences directly on the maximum temperatures (Tmax) and precipitation experienced by the crop during flowering and grain filling. The co-effects of the two teleconnection patterns help to increase (decrease) the rainfall and decrease (increase) Tmax in IP, thus on increase (decrease) wheat yield. Part II. Crop forecasting The last chapter analyses the potential benefits for wheat and maize yields prediction from using seasonal climate forecasts (precipitation), and explores methods to apply such a climate forecast to crop models. Seasonal climate prediction has significant potential to contribute to the efficiency of agricultural management, and to food and livelihood security. Climate forecasts come in different forms, but probabilistic. For this purpose, two methods were evaluated and applied for disaggregating seasonal climate forecast into daily weather realizations: 1) a conditioned stochastic weather generator (predictWTD) and 2) a simple forecast probability resampler (FResampler1). The two methods were evaluated in a case study where the impacts of three scenarios of seasonal rainfall forecasts on rainfed wheat yield, on irrigation requirements and yields of maize in IP were analyzed. In addition, we estimated the economic margins and production risks associated with extreme scenarios of seasonal rainfall forecasts (dry and wet). The predWTD and FResampler1 methods used for disaggregating seasonal rainfall forecast into daily data needed by the crop simulation models provided comparable predictability. Therefore both methods seem feasible options for linking seasonal forecasts with crop simulation models for establishing yield forecasts or irrigation water requirements. The analysis of the impact on gross margin of grain prices for both crops and maize irrigation costs suggests the combination of market prices expected and the seasonal climate forecast can be a good tool in farmer’s decision-making, especially on dry forecast and/or in locations with low annual precipitation. These methodologies would allow quantifying the benefits and risks of a seasonal weather forecast to farmers in IP. Therefore, we would be able to establish early warning systems and to design crop management adaptation strategies that take advantage of favorable conditions or reduce the effect of adverse conditions. The potential usefulness of this Thesis is to apply the relationships found to crop forecasting on the next cropping season, suggesting opportunity time windows for the prediction. The methodology can be used as well for the prediction of future trends of IP yield variability. Both public (improvement of agricultural planning) and private (decision support to farmers, insurance companies) sectors may benefit from such an improvement of crop forecasting.
Resumo:
El entorno alpino de los Grisones ha sido un laboratorio donde experimentar un método arquitectónico procedente de diversas fuentes durante los años 70 en la ETHZ. Este método ha producido durante las últimas tres décadas un discurso teórico propiamente suizo alemán. La tradición continúa siendo un valor cultural para la comunidad alpina de los Grisones, que apuesta por seguir relacionando la arquitectura con su historia y su paisaje. La especificidad de cada entorno suizo alemán es un hecho obvio pero, por encima de sus rasgos característicos, hay un denominador común que les da unidad en silencio: se trata de una idea de la construcción. El fenómeno de los Grisones es territorial en su localización concreta, pero comparte el trasfondo teórico del resto de la arquitectura suizo alemana reciente. La tesis recorre transversalmente las condiciones que han dado lugar a esa trayectoria común hasta la actualidad, en que la arquitectura suizo alemana se halla precisamente en un momento de cambio generacional. La obra de Peter Märkli constituye en esta tesis un paradigma de la voluntad suizo alemana por formar parte de la continuidad cultural de la arquitectura, como una actitud de resistencia compartida frente al mundo globalizado. La tesis se articula a partir de ocho proyectos recientes, realizados por arquitectos suizo alemanes en el entorno del territorio alpino de los Grisones. Estos proyectos condensan la trayectoria arquitectónica suizo alemana durante el siglo XX, así como el fenómeno arquitectónico que ha tenido lugar en el entorno de los Grisones durante las últimas tres décadas. La tesis analiza a través de cada pareja de proyectos los episodios teóricos, artísticos y filosóficos más relevantes que se sintetizan en estas obras, así como sus referentes arquitectónicos y la dimensión trascendente de los materiales en los que la cultura suiza hunde sus raíces: la madera, la piedra y el hormigón. Las vanguardias pictóricas, el Movimiento Moderno y las corrientes humanistas y regionalistas que se fueron sucediendo durante el pasado siglo, configuran el escenario en el que tomó cuerpo la sensibilidad arquitectónica suizo alemana reciente, que emerge a través de la compleja red de relaciones establecidas entre el panorama suizo y el internacional. El mismo bagaje teórico subyace al territorio suizo alemán a nivel general, por lo que asociarlo a través de esta tesis a proyectos realizados en un entorno característico, permite acceder a una realización concreta de ese debate en un entorno tan particular como son los Grisones. La aproximación a los proyectos es de carácter fenomenológico: la experiencia directa de los mismos ha sido el sustrato fundamental del enfoque de la tesis. El trabajo de campo no se limitó a visitar los proyectos que vertebran la tesis, sino que trató de abarcar las obras más relevantes de la producción suizo alemana reciente en los Grisones, con el fin de adquirir cierto grado de sensibilidad perceptiva hacia la singularidad de su identidad territorial. La tesis hace especial hincapié en las obras de Peter Märkli y Peter Zumthor, representantes de los dos extremos del discurso suizo alemán reciente, respecto a la materialidad y al carácter de la secuencia espacial, sistemático o fluido respectivamente, pero que asimismo comparten el clasicismo formalista que subyace al fenómeno suizo alemán. Los dos proyectos que establecen el periodo 1992-2004 explorado por esta investigación constituyen dos hitos fundamentales. El Museo de La Congiunta en Giornico de Peter Märkli se construyó en 1992 y se erige a partir de entonces como un icono arquitectónico de la condensación típicamente suizo alemana de base reductiva. Este paradigma de síntesis conceptual y constructiva comenzó a forjarse en la década de 1930 de la mano del Konkrete Kunst formulado por Max Bill, que es la única manifestación artística genuinamente suiza del siglo XX y que desarrolló pictóricamente los valores de precisión, rigor, racionalismo y abstracción afines a la sensibilidad suizo alemana. En segundo lugar, el proyecto para la rehabilitación de la Villa Garbald y la construcción de la Torre Roccolo en Castasegna llevado a cabo por Miller & Maranta en 2004, supuso la consumación de la Analoge Architektur, que fue la primera corriente arquitectónica propiamente suiza, desarrollada durante la década de 1980 por Miroslav Sik. La Deutscher Tendenza es un periodo de la trayectoria suizo alemana reciente poco conocido, representado por una figura tan relevante como es Peter Zumthor. Las obras que proyectó Zumthor entre 1979 y 1985 forman parte de un periodo en que el arquitecto se encontraba profundamente influido por el neorracionalismo italiano, como ilustra la escuela de Churwalden de 1983. La arquitectura suizo alemana reciente exploró sistemáticamente los sistemas compositivos de las vanguardias pictóricas y del Movimiento Moderno, por encima de su formalismo concreto. La segunda fase de la obra de Zumthor entre 1985 y 1996 se caracteriza por la transfiguración del plano libre del sistema compositivo neoplasticista desarrollado por De Stijl, plano que adquirió grosor hasta convertirse en la caja articuladora de la fluidez de la secuencia espacial. El formalismo de Zumthor en esta fase implica la prioridad del esquema compositivo, compuesto por un perímetro regular en el que se reúnen las cajas que, como las superficies de color de las composiciones de Mondrian, articulan el espacio a su alrededor. La Residencia de Masans de Zumthor de 1993 es un proyecto canónico de este sistema compositivo, que culmina en el esquema radial de las Termas de Vals de 1996. La imagen poética se convirtió en el lenguaje propio del pensamiento de la arquitectura suizo alemana, que permitía una reflexión no verbal, a partir de unos pocos arquetipos fundamentales. Los arquitectos del Ticino buscaron en la Tendenza italiana durante la década de 1970 una alternativa al insostenible modelo territorial que estaba destruyendo su paisaje cultural. Algunos de estos arquitectos comenzaron a dar clase durante esa década en la ETHZ, por lo que transmitieron sus inquietudes al alumnado e introdujeron a Aldo Rossi en la facultad, que era uno de los máximos representantes de la Tendenza. El método analógico de Rossi, basado en la psicología analítica de Carl Jung, fue una influencia fundamental en la ETHZ durante los años 70. Rossi partía de una teoría afín al colectivo intelectual suizo que los arquitectos de la ETHZ pronto comprendieron que debían independizar del contexto italiano, desarrollando su propio método a partir de 1985 con la Analoge Architektur. El valor de la preexistencia de acuerdo a este método incipiente se hallaba en su papel articulador de la continuidad cultural de una comunidad, que Miroslav Sik definió a partir de su concepto de Altneue (literalmente, lo Nuevo-Viejo). La fusión entre lo nuevo y lo viejo era la base de la espontaneidad con la que habían crecido los asentamientos históricamente. Sik consideraba que la continuidad dependía de la comprensión de los patrones preexistentes, con el objeto de mantener su vigencia mediante la incorporación de estrategias contemporáneas, que renovarían su significado sin perder su esencia. La Casa Gugalun en Versam de Zumthor de 1994 supone una aproximación a escala doméstica a este planteamiento. La arquitectura suizo alemana reciente a menudo busca en sus referentes plásticos una manera de explorar ámbitos poco accesibles para la disciplina arquitectónica. El pensamiento arquitectónico basado en la imagen poética se implementa a partir de la tectónica de la construcción, que es el medio para comunicar una idea vertebradora del proyecto de principio a fin. La construcción como medio introduce el concepto clave de la apariencia de la arquitectura, estrechamente relacionado con la filosofía idealista de Friedrich Schiller. La apariencia debe expresar el sentido conceptual de la obra, que los arquitectos suizo alemanes denominan idea, por lo que la construcción no tiene un valor por sí misma, sino en cuanto a la apariencia. La Capilla de Oberrealta de Christian Kerez de 1993 puede ser considerada una obra escultórica en el paisaje, más próxima a las artes plásticas que a la arquitectura. La tensión que surge entre la figura ideal y la pieza sometida a una sutil deformación confiere un carácter dinámico a la composición, que intensifica el efecto perceptivo, de acuerdo a la teoría del pensamiento visual de Rudolph Arnheim. La deformación al servicio de la psicología de la percepción es un fenómeno que caracteriza la arquitectura suizo alemana reciente. El concepto de Forme Forte (forma fuerte) fue introducido por Martin Steinmann para caracterizar el objeto arquitectónico denominado internacionalmente Swiss Box. Este concepto se caracteriza por una predilección por lo monolítico, lo unitario y lo arquetípico. La condición más sustancial de una Forme Forte es, sin embargo, la de configurar un elemento estructurador del entorno. Tanto la base morfológica de una Forme Forte, como su capacidad para estructurar el lugar, se corresponden con los conceptos de arquetipo y monumento de la teoría de Rossi. La tesis explora el sentido de la deformación en la producción suizo alemana reciente, a partir de la Escuela de Paspels de Valerio Olgiati de 1998 y la Torre Roccolo de Villa Garbald de Miller&Maranta de 1998. La teoría tectónica de Gottfried Semper y la razón de la forma de Adolf Loos constituyen el sustrato teórico, que relaciona la actividad existencial de habitar con la materialidad de la arquitectura suizo alemana reciente. La teoría tectónica de Semper fundamenta las revisiones posteriores de los sistemas constructivos tradicionales suizo alemanes. Esta influencia sirvió como base a la vanguardia suiza de la Neues Bauen, que desarrolló un racionalismo funcionalista durante las décadas de 1920 y 1930, que constituye una gramática de base no simbólica. Esta gramática constituye el fundamento de la transición del orden clásico a la materialidad como instrumento compositivo durante la segunda mitad del siglo XX, consolidando el concepto de la base material de la forma. La revisión de la tradición regionalista y racionalista llevada a cabo por la generación de arquitectos suizo alemanes de la década de 1950 y 1960, constituyó una investigación lingüística sustancial. Rudolph Olgiati es la figura determinante de este periodo. La revisión de esta investigación se codificó en clave estructuralista durante los años 70 en la ETHZ, influenciada por la presencia de Roland Barthes como profesor invitado. Esta revisión constituyó la base de la articulación tectónica propiamente suizo alemana todavía vigente, como ilustra expresamente la obra de Burkhalter&Sumi en esta tesis. La obra de Gion Caminada en Vrin entre 1995 y 2002 aporta una intensa investigación sobre el Strickbau, que implementa una y otra vez variaciones sobre un sistema tradicional, ilustrando las infinitas posibilidades que ofrece un lenguaje, paradójicamente limitado por los medios disponibles en un entorno alpino aislado. Para terminar Jürg Conzett es el ingeniero con el que han desarrollado sus proyectos la mayoría de los arquitectos en el entorno de los Grisones, formado durante 8 años con Zumthor y colaborador habitual de Caminada entre otros. Conzett es el referente que relaciona la ingeniería con la arquitectura en el ámbito de esta tesis, imprescindible en el contexto de esta investigación. ABSTRACT The Alpine setting of Grisons has been a laboratory for architectural experimentation with an approach forged in the 1970s from various sources in the Swiss Federal Institute of Technology in Zurich (ETHZ). This method has produced a uniquely German-Swiss theoretical discourse over the past three decades. Tradition continues to be a cultural value for Grisons, a region committed to continue linking its architecture with the region’s history and landscape. The specificity of the German-Swiss environment is obvious, but beyond its characteristic features, there is a common denominator that gives these settings a silent unity: it is an idea of building. The phenomenon of Grisons is geographic in its specific location, but it shares the theoretical basis of the rest of the new German-Swiss architecture. This thesis transversely delves into the conditions that have shaped this common path up to the present, just as German-Swiss architecture is going through a time of generational change. In this thesis, Märkli Peter's work constitutes a paradigm of the German-Swiss will to uphold the cultural and architectural continuity of the region, exemplifying an attitude of shared resistance to the globalized world. The thesis is structured around eight recent projects carried out by German-Swiss architects in the Alpine region of Grisons. These projects represent the trajectory of twentieth century German-Swiss architectural history, as well as the architectural phenomenon that has taken place in the environs of Grisons over the past three decades. Through these projects the thesis analyzes the most relevant theoretical, artistic and philosophical references that are synthesized in the works, as well as their architectural references and the transcendental dimension of the materials in which Swiss culture is rooted: wood, stone and concrete. The artistic avant-garde, together with Modernism and the humanistic and regional movements that occurred during the last century, set the stage for present-day German-Swiss architectural sensitivity, which emerges from a complex web of relationships established between the Swiss and international panorama. This same theoretical background and experience underlies all of the German-Swiss territory in general, so associating it through this thesis to a particular context allows the description of a specific embodiment of this debate, within the unique environment of Grisons. The methodological approach to analyzing the projects was phenomenological: direct experience is the main substrate underpinning the focus of the thesis. Field work was not limited to visiting the projects featured in the thesis, but rather encompassed the most important works of recent German-Swiss construction in the Grisons in order to gain some degree of perceptual sensitivity to the uniqueness of its territorial identity. The present paper puts special emphasis on the works of Peter Märkli and Peter Zumthor, who share the formal classicist perspective of the German-Swiss context but stand on opposite sides of the philosophical spectrum with regard to the notion of materiality and the nature of space, which they conceive as systematic or fluid, respectively. The two projects that establish the boundaries of the time period 1992–2004 explored by this research represent two key milestones. The Museum La Congiunta in Giornico, by Peter Märkli, was built in 1992 and quickly established itself as an architectural icon of German-Swiss reductionism. This paradigm of conceptual and constructive synthesis began to take shape in the 1930s under the banner of Konkrete Kunst (Concrete Art), led by Max Bill. The only genuinely Swiss artistic movement of the twentieth century, Konkrete Kunst was characterized by the artistic values of precision, rigor, rationalism and abstraction, sentiments that were very close to the German-Swiss tradition. Secondly, the project for the rehabilitation of Villa Garbald and the construction of the Roccolo Tower in Castasegna, conducted by Miller&Maranta in 2004, represented the consummation of the Analoge Architektur, which was the first truly Swiss architectural movement, spearheaded in the 1980s by Miroslav Sik. The Deutscher Tendenza is a little-known period of recent German-Swiss history, represented by the important figure of Peter Zumthor. The projects that Zumthor led between 1979 and 1985 are part of a period when Italian Neo-Rationalism exercised a profound influence on the architect, as illustrated by the Churwalden School, circa 1983. Recent German-Swiss architecture systematically explored the compositional systems of the artistic avant-garde and Modernism, beyond its specific formal aspects. The second phase of Zumthor's work, between 1985 and 1996, is characterized by the transfiguration of the free plane, neoplastic compositional system developed by De Stijl, a plane that thickened until it became the box articulating fluidity from the spatial sequence. Zumthor's formalism in this phase prioritizes the compositional scheme, consisting of a regular perimeter in which the boxes that -like Mondrian’s colored surfaces- arrange the space around it. Zumthor’s Masans Residence, circa 1993, is a canonical project of this compositional system, which culminates in the radial pattern of the Therme Vals, circa 1996. The poetic image became the appropriate language of thought for German-Swiss architecture, which invited a nonverbal reflection inspired by a few fundamental archetypes. The architects of Ticino sought, through the Italian Tendenza of the 1970s, an alternative to the unsustainable territorial model that was destroying their cultural landscape. Some of these architects began to teach during that decade at ETHZ, and naturally they transmitted their unease to their students. These architects also introduced Aldo Rossi, one of the leading representatives of the Tendenza, to the school. Rossi’s analogue method, based on the analytical psychology of Carl Jung, was a major influence on the ETHZ during the 1970s. Rossi’s theoretical grounding was very much in tune with Swiss intellectualism, and it did not take long for architects from ETHZ to realize that they should break away from the Italian context, developing their own method from 1985 on with the Analoge Architektur. The value of the pre-existing conformity of this emerging method, stemmed from its role in facilitating the cultural continuity of a community, which Miroslav Sik defined in his concept of Altneue (literally, Old-new). This fusion of old and new was the basis for the spontaneity with which settlements had historically grown. Sik considered that continuity depended on understanding the existing patterns and sustaining their relevance through the incorporation of contemporary strategies, which would renew their meaning without losing their essence. Zumthor’s Gugalun House in Versam, circa 1994, is a domestic-scale approach to this philosophy. Modern German-Swiss architecture often looks to its references in visual art for a way to explore areas that are normally inaccessible to the architectural discipline. Architectural thinking based on the poetic image is achieved through a building’s tectonics, which communicate the core idea of a project from start to finish. The understanding of construction as a medium introduces the key concept of the appearance in architecture, closely related to the idealistic philosophy of Friedrich Schiller. The appearance should express the conceptual meaning of the work, which German-Swiss architects call the idea, so that the building does not have value in and of itself, but only in terms of its appearance. The Oberrealta Chapel by Christian Kerez, circa 1993, can be considered a sculpture in the landscape, closer to the visual arts than to architecture. The tension that arises between the ideal figure and the piece subjected to a subtle deformation confers a dynamic character onto the composition, intensifying the perceptual effect, according to Rudolf Arnheim’s theory of visual thought. The deformation in the service of the psychology of perception is a phenomenon that characterizes recent German-Swiss architecture. Martin Steinmann introduced the Forme Forte (Strong Form) concept to describe the architectural object known internationally as the Swiss Box. This concept is characterized by a predilection for all things monolithic, unitary and archetypal. The most substantial condition of a Forme Forte, however, is the configuration of a structuring element in the environment. Both the morphological basis of a Forme Forte and its ability to frame the place, correspond to the concepts of archetype and monument put forward by Rossi’s theory. The present thesis explores the sense of deformation in recent German-Swiss production, based on the School of Paspels by Valerio Olgiati, circa 1998 and the Roccolo Tower in Villa Garbald, by Miller&Maranta, circa 1998. Gottfried Semper’s tectonic theory and Adolf Loos’s reason for form constitute the theoretical foundation that links the existential activity of dwelling to the materiality of recent German-Swiss architecture. Semper’s tectonic theory laid the foundation for subsequent revisions of the German-Swiss traditional building systems. This influence was the basis for the Swiss avant-garde of Neues Bauen, which developed a functional rationalism during the 1920s and 30s that served as a non-symbolic grammatical foundation for the transition from classical order to materiality as a compositional tool. During the second half of the twentieth century, this architectural grammar helped consolidate the concept of the material base of the form. The revision of the regionalist and rationalist tradition, carried out by the generation of German-Swiss architects of the 1950s and 60s, constituted a substantial linguistic investigation. Rudolph Olgiati is the key figure of this period. The research was codified in terms of structuralism in the 1970s in ETHZ and influenced by the presence of Roland Barthes as a visiting professor. This revision was the basis of the uniquely German-Swiss tectonic design still in use today, as specifically illustrated by the work of Burkhalter & Sumi in this thesis. Gion Caminada's work in Vrin between 1995 and 2002 offers an extensive study on the Strickbau, which implements variations on a traditional system again and again, illustrating the endless possibilities of a language that paradoxically seems limited by the available resources in a remote Alpine setting. Finally, Jürg Conzett is the engineer with whom most architects in the Grisons region have developed their projects. Trained under Zumthor for 8 years, and a regular collaborator of Caminada, among others, Conzett is the reference point linking engineering with architecture in this thesis, essential in the context of this research.
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This paper discusses the target localization problem in wireless visual sensor networks. Additive noises and measurement errors will affect the accuracy of target localization when the visual nodes are equipped with low-resolution cameras. In the goal of improving the accuracy of target localization without prior knowledge of the target, each node extracts multiple feature points from images to represent the target at the sensor node level. A statistical method is presented to match the most correlated feature point pair for merging the position information of different sensor nodes at the base station. Besides, in the case that more than one target exists in the field of interest, a scheme for locating multiple targets is provided. Simulation results show that, our proposed method has desirable performance in improving the accuracy of locating single target or multiple targets. Results also show that the proposed method has a better trade-off between camera node usage and localization accuracy.
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The perceived speed of motion in one part of the visual field is influenced by the speed of motion in its surrounding fields. Little is known about the cellular mechanisms causing this phenomenon. Recordings from mammalian visual cortex revealed that speed preference of the cortical cells could be changed by displaying a contrast speed in the field surrounding the cell’s classical receptive field. The neuron’s selectivity shifted to prefer faster speed if the contextual surround motion was set at a relatively lower speed, and vice versa. These specific center–surround interactions may underlie the perceptual enhancement of speed contrast between adjacent fields.
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At early stages in visual processing cells respond to local stimuli with specific features such as orientation and spatial frequency. Although the receptive fields of these cells have been thought to be local and independent, recent physiological and psychophysical evidence has accumulated, indicating that the cells participate in a rich network of local connections. Thus, these local processing units can integrate information over much larger parts of the visual field; the pattern of their response to a stimulus apparently depends on the context presented. To explore the pattern of lateral interactions in human visual cortex under different context conditions we used a novel chain lateral masking detection paradigm, in which human observers performed a detection task in the presence of different length chains of high-contrast-flanked Gabor signals. The results indicated a nonmonotonic relation of the detection threshold with the number of flankers. Remote flankers had a stronger effect on target detection when the space between them was filled with other flankers, indicating that the detection threshold is caused by dynamics of large neuronal populations in the neocortex, with a major interplay between excitation and inhibition. We considered a model of the primary visual cortex as a network consisting of excitatory and inhibitory cell populations, with both short- and long-range interactions. The model exhibited a behavior similar to the experimental results throughout a range of parameters. Experimental and modeling results indicated that long-range connections play an important role in visual perception, possibly mediating the effects of context.
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Cortical spreading depression (CSD) has been suggested to underlie migraine visual aura. However, it has been challenging to test this hypothesis in human cerebral cortex. Using high-field functional MRI with near-continuous recording during visual aura in three subjects, we observed blood oxygenation level-dependent (BOLD) signal changes that demonstrated at least eight characteristics of CSD, time-locked to percept/onset of the aura. Initially, a focal increase in BOLD signal (possibly reflecting vasodilation), developed within extrastriate cortex (area V3A). This BOLD change progressed contiguously and slowly (3.5 ± 1.1 mm/min) over occipital cortex, congruent with the retinotopy of the visual percept. Following the same retinotopic progression, the BOLD signal then diminished (possibly reflecting vasoconstriction after the initial vasodilation), as did the BOLD response to visual activation. During periods with no visual stimulation, but while the subject was experiencing scintillations, BOLD signal followed the retinotopic progression of the visual percept. These data strongly suggest that an electrophysiological event such as CSD generates the aura in human visual cortex.
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Whenever we open our eyes, we are confronted with an overwhelming amount of visual information. Covert attention allows us to select visual information at a cued location, without eye movements, and to grant such information priority in processing. Covert attention can be voluntarily allocated, to a given location according to goals, or involuntarily allocated, in a reflexive manner, to a cue that appears suddenly in the visual field. Covert attention improves discriminability in a wide variety of visual tasks. An important unresolved issue is whether covert attention can also speed the rate at which information is processed. To address this issue, it is necessary to obtain conjoint measures of the effects of covert attention on discriminability and rate of information processing. We used the response-signal speed-accuracy tradeoff (SAT) procedure to derive measures of how cueing a target location affects speed and accuracy in a visual search task. Here, we show that covert attention not only improves discriminability but also accelerates the rate of information processing.
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Recent studies show that neuronal mechanisms for learning and memory both dynamically modulate and permanently alter the representations of visual stimuli in the adult monkey cortex. Three commonly observed neuronal effects in memory-demanding tasks are repetition suppression, enhancement, and delay activity. In repetition suppression, repeated experience with the same visual stimulus leads to both short- and long-term suppression of neuronal responses in subpopulations of visual neurons. Enhancement works in an opposite fashion, in that neuronal responses are enhanced for objects with learned behavioral relevance. Delay activity is found in tasks in which animals are required to actively hold specific information “on-line” for short periods. Repetition suppression appears to be an intrinsic property of visual cortical areas such as inferior temporal cortex and is thought to be important for perceptual learning and priming. By contrast, enhancement and delay activity may depend on feedback to temporal cortex from prefrontal cortex and are thought to be important for working memory. All of these mnemonic effects on neuronal responses bias the competitive interactions that take place between stimulus representations in the cortex when there is more than one stimulus in the visual field. As a result, memory will often determine the winner of these competitions and, thus, will determine which stimulus is attended.
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Neurons in primary visual cortex (area 17) respond vigorously to oriented stimuli within their receptive fields; however, stimuli presented outside the suprathreshold receptive field can also influence their responses. Here we describe a fundamental feature of the spatial interaction between suprathreshold center and subthreshold surround. By optical imaging of intrinsic signals in area 17 in response to a stimulus border, we show that a given stimulus generates activity primarily in iso-orientation domains, which extend for several millimeters across the cortical surface in a manner consistent with the architecture of long-range horizontal connections in area 17. By mapping the receptive fields of single neurons and imaging responses from the same cortex to stimuli that include or exclude the aggregate suprathreshold receptive field, we show that intrinsic signals strongly reveal the subthreshold surround contribution. Optical imaging and single-unit recording both demonstrate that the relative contrast of center and surround stimuli regulates whether surround interactions are facilitative or suppressive: the same surround stimulus facilitates responses when center contrast is low, but suppresses responses when center contrast is high. Such spatial interactions in area 17 are ideally suited to contribute to phenomena commonly regarded as part of "higher-level" visual processing, such as perceptual "popout" and "filling-in."
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Interactions between stimulus-induced oscillations (35-80 Hz) and stimulus-locked nonoscillatory responses were investigated in the visual cortex areas 17 and 18 of anaesthetized cats. A single square-wave luminance grating was used as a visual stimulus during simultaneous recordings from up to seven electrodes. The stimulus movement consisted of a superposition of a smooth movement with a sequence of dynamically changing accelerations. Responses of local groups of neurons at each electrode were studied on the basis of multiple unit activity and local slow field potentials (13-120 Hz). Oscillatory and stimulus-locked components were extracted from multiple unit activity and local slow field potentials and quantified by a combination of temporal and spectral correlation methods. We found fast stimulus-locked components primarily evoked by sudden stimulus accelerations, whereas oscillatory components (35-80 Hz) were induced during slow smooth movements. Oscillations were gradually reduced in amplitude and finally fully suppressed with increasing amplitudes of fast stimulus-locked components. It is argued that suppression of oscillations is necessary to prevent confusion during sequential processing of stationary and fast changing retinal images.
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When respiring rat liver mitochondria are incubated in the presence of Fe(III) gluconate, their DNA (mtDNA) relaxes from the supercoiled to the open circular form dependent on the iron dose. Anaerobiosis or antioxidants fail to completely inhibit the unwinding. High-resolution field-emission in-lens scanning electron microscopy imaging, in concert with backscattered electron detection, pinpoints nanometer-range iron colloids bound to mtDNA isolated from iron-exposed mitochondria. High-resolution field-emission in-lens scanning electron microscopy with backscattered electron detection imaging permits simultaneous detailed visual analysis of DNA topology, iron dose-dependent mtDNA unwinding, and assessment of iron colloid formation on mtDNA strands.
Resumo:
Functional magnetic resonance imaging (fMRI) was used to identify and map the representation of the visual field in seven areas of human cerebral cortex and to identify at least two additional visually responsive regions. The cortical locations of neurons responding to stimulation along the vertical or horizontal visual field meridia were charted on three-dimensional models of the cortex and on unfolded maps of the cortical surface. These maps were used to identify the borders among areas that would be topographically homologous to areas V1, V2, V3, VP, and parts of V3A and V4 of the macaque monkey. Visually responsive areas homologous to the middle temporal/medial superior temporal area complex and unidentified parietal visual areas were also observed. The topography of the visual areas identified thus far is consistent with the organization in macaque monkeys. However, these and other findings suggest that human and simian cortical organization may begin to differ in extrastriate cortex at, or beyond, V3A and V4.
Resumo:
Binocular disparity, the differential angular separation between pairs of image points in the two eyes, is the well-recognized basis for binocular distance perception. Without denying disparity's role in perceiving depth, we describe two perceptual phenomena, which indicate that a wider view of binocular vision is warranted. First, we show that disparity can play a critical role in two-dimensional perception by determining whether separate image fragments should be grouped as part of a single surface or segregated as parts of separate surfaces. Second, we show that stereoscopic vision is not limited to the registration and interpretation of binocular disparity but that it relies on half-occluded points, visible to one eye and not the other, to determine the layout and transparency of surfaces. Because these half-visible points are coded by neurons carrying eye-of-origin information, we suggest that the perception of these surface properties depends on neural activity available at visual cortical area V1.