13 resultados para Hybrid-game Strategies

em Universidad Politécnica de Madrid


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The proposal highlights certain design strategies and a case study that can link the material urban space to digital emerging realms. The composite nature of urban spaces ?material/ digital- is understood as an opportunity to reconfigure public urban spaces without high-cost, difficult to apply interventions and, furthermore, to reactivate them by inserting dynamic, interactive and playful conditions that engage people and re-establish their relations to the cities. The structuring of coexisting and interconnected material and digital aspects in public urban spaces is proposed through the implementation of hybridization processes. Hybrid spaces can fascinate and provoke the public and especially younger people to get involved and interact with physical aspects of urban public spaces as well as digital representations or interpretations of those. Digital game?s design in urban public spaces can be comprehended as a tool that allows architects to understand and to configure hybrids of material and digital conceptions and project all in one, as an inseparable totality. Digital technologies have for a long time now intervened in our perception of traditional dipoles such as subject - environment. Architects, especially in the past, have been responsible for material mediations and tangible interfaces that permit subjects to relate to their physical environments in a controlled and regulated manner; but, nowadays, architects are compelled to embody in design, the transition that is happening in all aspects of everyday life, that is, from material to digital realities. In addition, the disjunctive relation of material and digital realms is ceding and architects are now faced with the challenge that supposes the merging of both in a single, all-inclusive reality. The case study is a design project for a game implemented simultaneously in a specific urban space and on the internet. This project developed as the spring semester course New Media in Architecture at the Department of Architecture, Democritus University of Thrace, Greece is situated at the city of Xanthi. Composite cities can use design strategies and technological tools to configure augmented and appealing urban spaces that articulate and connect different realms in a single engaging reality.

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This report addresses speculative parallelism (the assignment of spare processing resources to tasks which are not known to be strictly required for the successful completion of a computation) at the user and application level. At this level, the execution of a program is seen as a (dynamic) tree —a graph, in general. A solution for a problem is a traversal of this graph from the initial state to a node known to be the answer. Speculative parallelism then represents the assignment of resources to múltiple branches of this graph even if they are not positively known to be on the path to a solution. In highly non-deterministic programs the branching factor can be very high and a naive assignment will very soon use up all the resources. This report presents work assignment strategies other than the usual depth-first and breadth-first. Instead, best-first strategies are used. Since their definition is application-dependent, the application language contains primitives that allow the user (or application programmer) to a) indícate when intelligent OR-parallelism should be used; b) provide the functions that define "best," and c) indícate when to use them. An abstract architecture enables those primitives to perform the search in a "speculative" way, using several processors, synchronizing them, killing the siblings of the path leading to the answer, etc. The user is freed from worrying about these interactions. Several search strategies are proposed and their implementation issues are addressed. "Armageddon," a global pruning method, is introduced, together with both a software and a hardware implementation for it. The concepts exposed are applicable to áreas of Artificial Intelligence such as extensive expert systems, planning, game playing, and in general to large search problems. The proposed strategies, although showing promise, have not been evaluated by simulation or experimentation.

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We present a technique to reconstruct the electromagnetic properties of a medium or a set of objects buried inside it from boundary measurements when applying electric currents through a set of electrodes. The electromagnetic parameters may be recovered by means of a gradient method without a priori information on the background. The shape, location and size of objects, when present, are determined by a topological derivative-based iterative procedure. The combination of both strategies allows improved reconstructions of the objects and their properties, assuming a known background.

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Wake effect represents one of the most important aspects to be analyzed at the engineering phase of every wind farm since it supposes an important power deficit and an increase of turbulence levels with the consequent decrease of the lifetime. It depends on the wind farm design, wind turbine type and the atmospheric conditions prevailing at the site. Traditionally industry has used analytical models, quick and robust, which allow carry out at the preliminary stages wind farm engineering in a flexible way. However, new models based on Computational Fluid Dynamics (CFD) are needed. These models must increase the accuracy of the output variables avoiding at the same time an increase in the computational time. Among them, the elliptic models based on the actuator disk technique have reached an extended use during the last years. These models present three important problems in case of being used by default for the solution of large wind farms: the estimation of the reference wind speed upstream of each rotor disk, turbulence modeling and computational time. In order to minimize the consequence of these problems, this PhD Thesis proposes solutions implemented under the open source CFD solver OpenFOAM and adapted for each type of site: a correction on the reference wind speed for the general elliptic models, the semi-parabollic model for large offshore wind farms and the hybrid model for wind farms in complex terrain. All the models are validated in terms of power ratios by means of experimental data derived from real operating wind farms.

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We investigate optimal strategies to defend valuable goods against the attacks of a thief. Given the value of the goods and the probability of success for the thief, we look for the strategy that assures the largest benefit to each player irrespective of the strategy of his opponent. Two complementary approaches are used: agent-based modeling and game theory. It is shown that the compromise between the value of the goods and the probability of success defines the mixed Nash equilibrium of the game, that is compared with the results of the agent-based simulations and discussed in terms of the system parameters.

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In this paper we propose an innovative method for the automatic detection and tracking of road traffic signs using an onboard stereo camera. It involves a combination of monocular and stereo analysis strategies to increase the reliability of the detections such that it can boost the performance of any traffic sign recognition scheme. Firstly, an adaptive color and appearance based detection is applied at single camera level to generate a set of traffic sign hypotheses. In turn, stereo information allows for sparse 3D reconstruction of potential traffic signs through a SURF-based matching strategy. Namely, the plane that best fits the cloud of 3D points traced back from feature matches is estimated using a RANSAC based approach to improve robustness to outliers. Temporal consistency of the 3D information is ensured through a Kalman-based tracking stage. This also allows for the generation of a predicted 3D traffic sign model, which is in turn used to enhance the previously mentioned color-based detector through a feedback loop, thus improving detection accuracy. The proposed solution has been tested with real sequences under several illumination conditions and in both urban areas and highways, achieving very high detection rates in challenging environments, including rapid motion and significant perspective distortion

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The paper examines the video game industry in the perspective of being the paradigm of innovation in digital media and content. In particular, it analyses the response to two main factors that have impacted this industry over the last decade. First, it tracks the evolution of its global market and its emerging geography with the rise of Asia. Second, within this global landscape the paper explores how the changes derived from mobile and on-line gaming enabled major transformations of this industry. From here, some conclusions on the lessons from the evolution of this sector for the whole media and content industries are presented.

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Wireless sensor networks (WSNs) are one of the most important users of wireless communication technologies in the coming years and some challenges in this area must be addressed for their complete development. Energy consumption and spectrum availability are two of the most severe constraints of WSNs due to their intrinsic nature. The introduction of cognitive capabilities into these networks has arisen to face the issue of spectrum scarcity but could be used to face energy challenges too due to their new range of communication possibilities. In this paper a new strategy based on game theory for cognitive WSNs is discussed. The presented strategy improves energy consumption by taking advantage of the new change-communication-channel capability. Based on game theory, the strategy decides when to change the transmission channel depending on the behavior of the rest of the network nodes. The strategy presented is lightweight but still has higher energy saving rates as compared to noncognitive networks and even to other strategies based on scheduled spectrum sensing. Simulations are presented for several scenarios that demonstrate energy saving rates of around 65% as compared to WSNs without cognitive techniques.

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La Tesis decodifica una selección de veinte proyectos representativos de Sejima-SANAA, desde su primer proyecto construido, la Casa Platform I, 1987, hasta el Centro Rolex, 2010, año en que Sejima y Nishizawa –SANAA- reciben el Premio Pritzker. De los veinte proyectos once son de Sejima: Casa Platform I, Casa Platform II, Residencia de Mujeres, Casa N, Pachinco Parlor I, Villa en el Bosque, Comisaría en Chofu, Casa Y, Apartamentos en Gifu, Edificio de equipamientos en la Expo Tokio 96, Pachinko Parlor III; y nueve de SANAA: edificio Multimedia en Oogaki, estudio de viviendas metropolitanas,Park Café en Koga, De Kunstlinie en Almere, Museo de Kanazawa, Pabellón de Toledo, Escuela de Zollverein, Casa Flor y Centro Rolex. La decodificación lee la obra de Sejima-SANAA a la inversa para ‘reconstruir’, en un ejercicio de simulación ficticia, una versión verosímil y coherente de los que podrían haber sido sus procesos proyectuales; podrían, porque los verdaderos son imposibles de dilucidar. Los que se proponen se pretenden exclusivamente verosímiles y plausibles. Con ello se pretende contribuir al entendimiento y comprensión de la arquitectura de Sejima-SANAA y, tangencialmente y en menor medida, a la teoría sobre el ejercicio proyectual arquitectónico. La decodificación se centra en dos aspectos concretos: la forma arquitectónica y el papel proyectual de la estructura portante. Ambas decodificaciones se extienden inevitablemente a otros aspectos relacionados, como, por ejemplo, la naturaleza del espacio arquitectónico. El procedimiento de investigación partió de una descripción objetiva y pormenorizada de los significantes formales y estructurales de cada proyecto desde su propia configuración física y geométrica. Esa descripción ‘objetiva’, llevada al límite, permitió que afloraran estructuras conceptuales y lógicas subyacentes de cada proyecto. Unida a interpretación crítica, –mediante su relación y confrontación con otras arquitecturas y otros modos de hacer conocidos- permitió trazar la reconstitución ficticia que persigue la decodificación. Ese trabajo se materializó en veinte ensayos críticos y se acompañó de un conjunto de otros textos sobre temas sugeridos o reclamados por el proceso de investigación. El conjunto de todos esos textos constituye el material de trabajo de la tesis. A partir de ahí, con una visión de conjunto, la tesis identifica una trayectoria de estrategias formales y una trayectoria de estrategias proyectuales relacionadas con lo portante. Juntas conforman el grueso de la tesis que se expone en los cuatro capítulos centrales. Los precede un capítulo introductorio que expone el recorrido biográfico de K. Sejima y la trayectoria profesional de Sejima-SANAA; y los siguen de unos textos transversales sobre forma, lugar y espacio. La tesis termina con una síntesis de sus conclusiones. Las estrategias formales se exponen en tres capítulos. El primero, ‘Primeras estrategias formales’ agrupa proyectos de la primera etapa de Sejima. El segundo capítulo está dedicado enteramente al proyecto de los apartamentos en Gifu, 1994-98, que según esta tesis, supuso un importante punto de inflexión en la trayectoria de Sejima; tanto el tercer capítulo lleva por nombre ‘Estrategias formales después de Gifu’ y recoge los proyectos que le siguieron. Las ‘Primeras estrategias formales’, varias y balbucientes, se mueven en general en torno a dos modos o procedimientos de composición, bien conocidos: por partes y sistemático. Éste última inicia en la trayectoria de SANAA un aspecto que va a ser relevante de aquí en adelante: entender el proyecto como propuesta genérica en la que, más allá de su realidad específica y tangible, subyace una lógica, en cada proyecto la suya, extrapolable a otros lugares, otras dimensiones, incluso otros programas: cada proyecto podría dar lugar a otros proyectos de la misma familia. La composición sistemática incluye, entre otros, la Casa Platform II, basada en la definición de un elemento constructivo, y la formulación de unas leyes de repetición y de posibles modos de agrupación. Incluye también la Residencia de Mujeres Saishunkan Seiyaku- proyecto que lanzó a Sejima a la fama internacional-, que también sería un sistema, pero distinto: basado en la repetición regular de una serie de elementos a lo largo de una directriz generando un hipotético contenedor infinito del que el proyecto sería tan solo un fragmento. La estrategia formal del edificio de Gifu ahondaría en la voluntad genérica del proyecto, adoptando la lógica de un juego. El proyecto sería una partida del juego, pero no la única posible, podrían jugarse otras. Esta hipótesis del juego está verificada en ‘El Juego de Gifu’ que - tras formular el juego identificando sus elementos (tablero y fichas), reglas y procedimientos- juega una partida: la que habría dado lugar al edificio proyectado por Sejima. Gifu extiende el concepto de ‘repetir’ un elemento constructivo a la de repetir un patrón espacial, lo que conlleva: la desvinculación entre forma y función; y un nuevo concepto de flexibilidad, que deja de referirse al uso flexible del edificio construido para pertenecer al momento proyectual en que se asignan funciones específicas a los patrones espaciales. Esta tesis propone que esa asignación de funciones sería uno de los últimos eslabones del proceso proyectual, algo opuesto a la premisa moderna de “la forma sigue a la función”. Las estrategias formales ‘Después de Gifu’ tienen también lógicas de juego, pero cada estrategia responde a un juego distinto, como dejan entrever sus nombres: ‘Tableros de Juego’, que con distintos grados de madurez estaría presente en varios proyectos; ‘Elementos de Catálogo’ en el Museo de Kanazawa; ‘Forma apriorística’, en la Casa Flor y ‘Repetición de una situación topológica’, en el Centro Rolex. Todas esas estrategias, o juegos, mantienen aspectos comunes relativos a la forma arquitectónica, precisamente los aspectos Gifu: la repetición aplicada al patrón espacial, y lo que conlleva: desvinculación entre forma y función y la nueva acepción de flexibilidad. ‘Tableros de Juego’ consiste en configurar cada sistema de proyecto (estructura, cerramientos, particiones y mobiliario) eligiendo elementos ofrecidos por una geometría de base, en cada proyecto la suya, en general reticular: intersecciones, líneas, módulos. Cada sistema se configura, en principio, sin relación de subordinación con cualquiera de los demás; cuando esa subordinación es ineludible, el juego determina que el sistema portante no puede materializar el orden geométrico de base, lo que se traduce en que no ejerce el papel dominante. Por lo tanto, ‘Tableros de Juego’ transgrede la lógica de la planta libre moderna: la estructura ni refleja ni revela el orden de base y los sistemas no respetan las relaciones de subordinación jerárquica y encadenada que aquella determinaba. Esta estrategia de ‘Tableros de juego’ deriva en soluciones y proyectos formales muy distintos: los proyectos de Oogaki y Park Café, que presentarían ‘Tableros de Juego’ incipientes; De Kunstlinie en Almere y la Escuela de Zollverein, que presentarían una consolidación de esta estrategia; y el Pabellón de Vidrio de Toledo que resultaría de la subversión de la estrategia. Este último proyecto, además, lleva el concepto de repetición más allá del elemento constructivo y del patrón espacial (que en este caso tiene forma de burbuja) parar acabar afectando a la propia experiencia del espectador, que esté donde esté, siempre tiene la sensación de estar en el mismo sitio. Esta tesis denomina a ese espacio repetitivo como ‘espacio mantra’. La estrategia ‘Elementos de Catálogo’ se ilustra con el Museo de Kanazawa. Su lógica parte de la definición de una serie de elementos, muy pocos, y se basa en el ingente número de posibles combinaciones entre sí. Gifu habría anunciado el catalogo de elementos en la caracterización de sus patrones espaciales. La estrategia ‘Forma Apriorística’ se ilustra con la Casa Flor. La decisión sobre el tipo de forma -en este caso la de una ameba- estaría al principio del proceso proyectual, lo que no quiere decir que sea una forma arbitraria: la forma de la ameba lleva implícita la repetición de un patrón espacial (el seudópodo) y una apoteosis del concepto de repetición que, alcanzando la experiencia espacial, da lugar a un espacio repetitivo o mantra. El ‘Espacio Mantra’ es uno de los leitmotivs, que se emplean como argumento en la última estrategia formal que la Tesis decodifica: el Centro Rolex. Con respecto a la estructura portante, la tesis identifica y traza una trayectoria de cinco estrategias proyectuales: preeminencia, ocultación, disolución, desaparición y desvirtuación. --Ocultación, reduce el papel dominante de la estructura. Al principio es una ocultación literal, casi un tapado de los elementos estructurales, como en Gifu; luego se hace más sofisticada, como la ocultación por camuflaje o la paradójica ocultación por multiplicación de Park Café. --La disolución merma la condición dominante de la estructura que en lugar de configurarse como sistema unitario u homogéneo se fragmenta en varios subsistemas. --La desaparición se refiere a estructuras que desaparecen como sistemas propios y autónomos, a proyectos en los que la función portante es desempeñada por otros sistemas como el de las particiones. La desaparición culmina con la Casa Flor, cuyo perímetro ejerce la función portante y además es transparente, está desmaterializado: la estructura se ha hecho invisible, ha desaparecido. --La desvirtuación se refiere a estructuras que sí se presentan como sistemas propios y autónomos, pero dejan de tener un papel preeminente por cuanto no materializan el orden de base: esta estrategia es correlativa a la estrategia formal ‘Tableros de juego’. Las conclusiones de la tesis están en la propia organización de la tesis: la identificación de las estrategias. Aún así, y como epílogos, se exponen seis. Las dos primeras subrayan el hilo conductor del trabajo realizado, que radica en la cualidad genérica de las estrategias proyectuales en Sejima-SANAA. Las cuatro siguientes dilucidan hasta qué punto hay, en sus proyectos, rasgos o significantes formales y/o estructurales que sean a su vez señales características del panorama arquitectónico contemporáneo; y plantean la pregunta estrella: ¿hay algunos que, apuntando más lejos, supongan aportaciones originales? --Como aportaciones originales la tesis destaca: la identificación entre el ideal genérico y proyecto concreto; y la propuesta de un espacio nuevo, híbrido, una suerte de estadio intermedio entre el espacio subdividido y compartimentado de la tradición y el continuo moderno. --Como síntomas de contemporaneidad se destacan: respecto de la forma, la traslación de la especificidad formal de la parte al conjunto; y respecto de la estructura, la tendencia contemporánea a hacer estructuras cada vez más ligeras y livianas, que tienden a lo evanescente. Ésta última, la tendencia al evanescencia estructural, podría tener la condición de aportación original, no en vano la desaparición de la estructura lleva la evanescencia hacia sus últimas consecuencias, y en el caso de estructuras con presencia física, hace que dejen de ser el sistema ordenador orquestador del proceso proyectual. ABSTRACT The Thesis decodes a selection of twenty representative Sejima-SANAA projects, from the first one built, the Platform I House in 1987, to the Rolex Center in 2010, year in which Sejima and Nishizawa –SANAA- received the Pritzker Prize. Eleven projects are from Sejima: Platform I, Platform II, Saishunkan Seiyaku Women´s Dormitory, N- House, Pachinco Parlor I, Villa in the Forest, Policy Box at Chofu Station, Y-House, Gifu Kitigata Apartment, World City Expo ´96 Facilities Building, Pachinko Parlor III; and nine from SANAA: Multimedia Workshop in Ogaki, Metropolitan Housing Studies, Park Café in Koga, De Kunstlinie in Almere, Kanazawa Museum, Glass Pavilion at the Toledo Museum of Art, Zollverein School, Flower House and the Rolex Center. This decoding reads the Sejima-SANAA’s projects inversely aiming ‘to reconstruct', in a fictitious simulation exercise, a likely and coherent version of what her/their projectual processes ‘could’ have been; ‘could’, because the true ones are impossible to explain. The ones proposed here pretend only to be likely and reasonable. By so doing the Thesis tries to contribute to the understanding and comprehension of Sejima-SANAA architecture and, tangentially and to a lesser extent, to the theory of architectural projects exercise. Decoding centers in two specific aspects: architectural form, and projectual role of the load bearing structure. Both decodes inevitably extend to other related aspects such as, for example, the nature of space. The research procedure begun by carrying out an objective and detailed description of the formal and structural signifiers of each project; looking at them from their physical and geometric configuration. Taken to the limit, the ‘objective’ descriptions allowed the conceptual structures and underlying logics of each project to arise. Together with critical interpretations, which related and confronted them with other architectures and well-known projectual working ways, it became possible to outline and trace the intended fictitious reconstruction decodes. The descriptive analytical work materialized in twenty critical essays, and was accompanied by a set of other essays on subjects suggested or demanded by the research process. Together, all those texts were the material basis on which thesis work was built. Looking at the whole and taking it from there, the thesis identifies two related projectual trajectories: a trajectory of formal strategies and a trajectory of strategies having to do with structural systems and components. Both, together, constitute the bulk of the thesis, as presented in the four central chapters. Preceding them there is an introductory chapter outlining the biographical path of Kazuyo Sejima and the professional trajectory of Sejima-SANAA. And following them there is another one containing transversal texts on form, place and space. The thesis ends with a synthesis on conclusions. The formal strategies are displayed in three chapters. The first one, `Early formal strategies' groups the first phase projects by Sejima. The second one, ‘Formal strategies of Gifu’s paradigm’, is entirely dedicated to the Gifu apartments project, 1994-98, which according to this thesis meant an important inflexion point in Sejima’s trajectory; so much so that the third chapter is named `Formal strategies after Gifu' and gathers the selected projects that followed it. The ‘Early formal strategies', diverse and tentative, move in general around two well-known projectual composition methods ‘composition by parts’, and ‘systematic composition’. This last one –systematic composition- begins and leads in SANAA’s trajectory an aspect which will remain relevant from here on: the understanding of the project as if it were an specific instance of a generic proposal in which -below and beyond the project tangible reality- there lays a logic that could be applicable at other places, for other dimensions, even with other programs; from each project, other projects of the same family could rise. The set of projects using this systematic composition method include, among others, the ‘Platform II House, based on the definition of a constructive element and of rules having to do with its replicas and their possible groupings. It also includes the Saishunkan Seiyaku Women Residence -project that launched Sejima to international fame- that could also be seen as a system, but of a different kind: a system based on the regular repetition of a series of elements along a directive line, thus generating a hypothetical infinite container of which the project would be only a fragment. The formal strategy of the Gifu apartments building would push further towards the generic project concept, adopting the logic of a game. The project would be a bout, a round, one play…, but not the only possible one; others could be played. The thesis confirms this game hypothesis -after having formulated `The Game of Gifu' and identified its elements (board, chips, rules and procedures)- playing the one play from which the building as projected by Sejima would have raised. Gifu extends the concept of ‘repeating a constructive element’ to that of ‘repeating a space pattern element’, and to what it implies: the decoupling of form and function, leading to a new concept of flexibility that no longer refers to the flexible use of the constructed building but to the projectual moment at which the specific functions are assigned to the space patterns. This thesis proposes that this allocation of functions would be one of the last steps in projectual process, quite opposite from the modern premise: “form follows function”. The Formal strategies after Gifu do also have a game logic; but, as their names reveal, each strategy responds to a different game: ‘Game Boards’, present with different maturity levels in several projects; ‘Elements from a Catalogue’, in the Kanazawa Museum; ‘Aprioristic Form’, in the Flower House; and ‘Repetition of a topologic situation', in the Rolex Center. All of these strategies, or games, maintain common aspects having to do with architectural form; aspects that were already present, precisely, in Gifu: repetition of space pattern units, uncoupling of form and function, and a new meaning of flexibility. -`Game Boards’ consists on setting up a base geometry -each project his, generally reticular- and give form to each project system (structure, closings, partitions and furniture) by choosing elements -intersections, lines, modules- it offers. Each project system is formed, in principle, with no subordinated relation with any of the others; when subordination is unavoidable, the game rules determine that the load bearing structural system may not be the one to materialize the base geometric order, which means that it does not exert the dominant role. Therefore, ‘Game Boards' transgresses the Modern logic, because the structure neither reflects nor reveals the base order, and because the systems do not respect any of the hierarchic and chained subordination relations that the ‘free plan’ called for. ‘Game Boards' leads to quite different solutions and formal projects: the Oogaki and Park Coffee projects show incipient Game Boards; The Almere Kunstlinie and the Zollverein School present consolidations of this strategy; and the Toledo’s Glass Pavilion results from subverting the strategy. In addition, the Toledo project takes the repetition concept beyond that of using a constructive element and a space pattern element (in this case with a bubble form) to end up affecting the personal experience of the spectator, who, wherever he is, feels to always be in the same place. This thesis denominates that repetitive space as ‘Mantra space '. -‘Elements from a Catalogue’ is shown with the Kanazawa Museum. Its logic starts from the definition of a series of elements, very few, and it is based on the huge number of possible combinations among them. The ‘Elements from a Catalogue’ approach was announced in the Gifu project when characterizing its space pattern elements. -Aprioristic Form' is illustrated by the Flower House. The decision on the type of form -in this case the form of an amoeba- would be the beginning of the projectual process, but it does not mean it is arbitrary form: the amoeba form implies repeating a space pattern (pseudopodia) and an apotheosis of the repetition concept: embracing the space experience, it gives rise to a repetitive or mantra space. ‘Mantra Space’ is one of leitmotivs used as an argument in the last formal strategy Thesis decodes: the Rolex Center. With respect to the ‘Projectual strategies of the load bearing structure’, the thesis finds and traces a trajectory of five projectual strategies: ‘preeminence, concealment, dissolution, disappearance and desvirtuación’. --Preeminence is present in Sejima’s first works in which she resorts to structures which have a dominant preeminent role in the project in so far as they impersonate the greater scale and/or materialize the base geometric order. In later works that preeminence will be inverted, the projects aiming towards its opposite: lighter, slighter, smaller structures. -Concealment reduces the dominant role of the structure. At the outset concealment is literal, almost hiding the structural elements, as in Gifu; soon it will become more sophisticated, such as the concealment by camouflage or the paradoxical concealment by multiplication in the Koga Park Café. -Dissolution diminishes the dominant condition of the structure: instead of its’ being configured as unitary or homogenous system is fragmented in several subsystems. -Disappearance talks about structures that fade away as self referred and independent systems; projects in which the load bearing function is carried out by other systems such as the set of partitions. Disappearance reaches its zenith at the Flower House, whose perimeter functions structurally being, in addition, transparent, immaterial: its structure has become invisible, has disappeared. -Desvirtuación talks about structures that do appear like independent self-systems, but which that do not longer have a preeminent paper, inasmuch as they do not materialize the base order. This strategy correlates with the ‘Game Boards’ formal strategy. The thesis conclusions are show by the organization of the thesis itself: its identification of the different strategies. Even so, as epilogues, the thesis exposes six ‘Conclusions’. The first two emphasize the leading thread of the work done, rooted in the generic quality of the Sejima-SANAA projectual strategies. The following four expound to what extent their projects show features, or formal and/or structural signifiers, which also are or can be read as characteristic signals of the contemporary architectonic panorama, and raise the key question: aiming farther, may some of them be taken as original contributions? -As original contributions the conclusions highlight: the identification between the generic ideal and the concrete project; and the proposal of a new, hybrid space, kind of an intermediate stage between the traditional subdivided compartmented space and the continuous modern. -As symptoms of contemporaneousness: in relation to the form it highlights the transferring of the formal specificity from the part to the whole; and in relation to the structure, it underscore the contemporary tendency towards lighter and growingly slimmer structures, tending to the evanescent. This last one, the tendency towards structural evanescence, could have condition of being an original contribution, not in vain it carries the structural disappearance towards its last consequences; and in the case of structures with physical presence, it makes them to cease being the ordering system orchestrating the projectual process.

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El consumo energético de las Redes de Sensores Inalámbricas (WSNs por sus siglas en inglés) es un problema histórico que ha sido abordado desde diferentes niveles y visiones, ya que no solo afecta a la propia supervivencia de la red sino que el creciente uso de dispositivos inteligentes y el nuevo paradigma del Internet de las Cosas hace que las WSNs tengan cada vez una mayor influencia en la huella energética. Debido a la tendencia al alza en el uso de estas redes se añade un nuevo problema, la saturación espectral. Las WSNs operan habitualmente en bandas sin licencia como son las bandas Industrial, Científica y Médica (ISM por sus siglas en inglés). Estas bandas se comparten con otro tipo de redes como Wi-Fi o Bluetooth cuyo uso ha crecido exponencialmente en los últimos años. Para abordar este problema aparece el paradigma de la Radio Cognitiva (CR), una tecnología que permite el acceso oportunista al espectro. La introducción de capacidades cognitivas en las WSNs no solo permite optimizar su eficiencia espectral sino que también tiene un impacto positivo en parámetros como la calidad de servicio, la seguridad o el consumo energético. Sin embargo, por otra parte, este nuevo paradigma plantea algunos retos relacionados con el consumo energético. Concretamente, el sensado del espectro, la colaboración entre los nodos (que requiere comunicación adicional) y el cambio en los parámetros de transmisión aumentan el consumo respecto a las WSN clásicas. Teniendo en cuenta que la investigación en el campo del consumo energético ha sido ampliamente abordada puesto que se trata de una de sus principales limitaciones, asumimos que las nuevas estrategias deben surgir de las nuevas capacidades añadidas por las redes cognitivas. Por otro lado, a la hora de diseñar estrategias de optimización para CWSN hay que tener muy presentes las limitaciones de recursos de estas redes en cuanto a memoria, computación y consumo energético de los nodos. En esta tesis doctoral proponemos dos estrategias de reducción de consumo energético en CWSNs basadas en tres pilares fundamentales. El primero son las capacidades cognitivas añadidas a las WSNs que proporcionan la posibilidad de adaptar los parámetros de transmisión en función del espectro disponible. La segunda es la colaboración, como característica intrínseca de las CWSNs. Finalmente, el tercer pilar de este trabajo es teoría de juegos como algoritmo de soporte a la decisión, ampliamente utilizado en WSNs debido a su simplicidad. Como primer aporte de la tesis se presenta un análisis completo de las posibilidades introducidas por la radio cognitiva en materia de reducción de consumo para WSNs. Gracias a las conclusiones extraídas de este análisis, se han planteado las hipótesis de esta tesis relacionadas con la validez de usar capacidades cognitivas como herramienta para la reducción de consumo en CWSNs. Una vez presentada las hipótesis, pasamos a desarrollar las principales contribuciones de la tesis: las dos estrategias diseñadas para reducción de consumo basadas en teoría de juegos y CR. La primera de ellas hace uso de un juego no cooperativo que se juega mediante pares de jugadores. En la segunda estrategia, aunque el juego continúa siendo no cooperativo, se añade el concepto de colaboración. Para cada una de las estrategias se presenta el modelo del juego, el análisis formal de equilibrios y óptimos y la descripción de la estrategia completa donde se incluye la interacción entre nodos. Con el propósito de probar las estrategias mediante simulación e implementación en dispositivos reales hemos desarrollado un marco de pruebas compuesto por un simulador cognitivo y un banco de pruebas formado por nodos cognitivos capaces de comunicarse en tres bandas ISM desarrollados en el B105 Lab. Este marco de pruebas constituye otra de las aportaciones de la tesis que permitirá el avance en la investigación en el área de las CWSNs. Finalmente, se presentan y discuten los resultados derivados de la prueba de las estrategias desarrolladas. La primera estrategia proporciona ahorros de energía mayores al 65% comparados con una WSN sin capacidades cognitivas y alrededor del 25% si la comparamos con una estrategia cognitiva basada en el sensado periódico del espectro para el cambio de canal de acuerdo a un nivel de ruido fijado. Este algoritmo se comporta de forma similar independientemente del nivel de ruido siempre que éste sea espacialmente uniformemente. Esta estrategia, a pesar de su sencillez, nos asegura el comportamiento óptimo en cuanto a consumo energético debido a la utilización de teoría de juegos en la fase de diseño del comportamiento de los nodos. La estrategia colaborativa presenta mejoras respecto a la anterior en términos de protección frente al ruido en escenarios de ruido más complejos donde aporta una mejora del 50% comparada con la estrategia anterior. ABSTRACT Energy consumption in Wireless Sensor Networks (WSNs) is a known historical problem that has been addressed from different areas and on many levels. But this problem should not only be approached from the point of view of their own efficiency for survival. A major portion of communication traffic has migrated to mobile networks and systems. The increased use of smart devices and the introduction of the Internet of Things (IoT) give WSNs a great influence on the carbon footprint. Thus, optimizing the energy consumption of wireless networks could reduce their environmental impact considerably. In recent years, another problem has been added to the equation: spectrum saturation. Wireless Sensor Networks usually operate in unlicensed spectrum bands such as Industrial, Scientific, and Medical (ISM) bands shared with other networks (mainly Wi-Fi and Bluetooth). To address the efficient spectrum utilization problem, Cognitive Radio (CR) has emerged as the key technology that enables opportunistic access to the spectrum. Therefore, the introduction of cognitive capabilities to WSNs allows optimizing their spectral occupation. Cognitive Wireless Sensor Networks (CWSNs) do not only increase the reliability of communications, but they also have a positive impact on parameters such as the Quality of Service (QoS), network security, or energy consumption. These new opportunities introduced by CWSNs unveil a wide field in the energy consumption research area. However, this also implies some challenges. Specifically, the spectrum sensing stage, collaboration among devices (which requires extra communication), and changes in the transmission parameters increase the total energy consumption of the network. When designing CWSN optimization strategies, the fact that WSN nodes are very limited in terms of memory, computational power, or energy consumption has to be considered. Thus, light strategies that require a low computing capacity must be found. Since the field of energy conservation in WSNs has been widely explored, we assume that new strategies could emerge from the new opportunities presented by cognitive networks. In this PhD Thesis, we present two strategies for energy consumption reduction in CWSNs supported by three main pillars. The first pillar is that cognitive capabilities added to the WSN provide the ability to change the transmission parameters according to the spectrum. The second pillar is that the ability to collaborate is a basic characteristic of CWSNs. Finally, the third pillar for this work is the game theory as a decision-making algorithm, which has been widely used in WSNs due to its lightness and simplicity that make it valid to operate in CWSNs. For the development of these strategies, a complete analysis of the possibilities is first carried out by incorporating the cognitive abilities into the network. Once this analysis has been performed, we expose the hypotheses of this thesis related to the use of cognitive capabilities as a useful tool to reduce energy consumption in CWSNs. Once the analyses are exposed, we present the main contribution of this thesis: the two designed strategies for energy consumption reduction based on game theory and cognitive capabilities. The first one is based on a non-cooperative game played between two players in a simple and selfish way. In the second strategy, the concept of collaboration is introduced. Despite the fact that the game used is also a non-cooperative game, the decisions are taken through collaboration. For each strategy, we present the modeled game, the formal analysis of equilibrium and optimum, and the complete strategy describing the interaction between nodes. In order to test the strategies through simulation and implementation in real devices, we have developed a CWSN framework composed by a CWSN simulator based on Castalia and a testbed based on CWSN nodes able to communicate in three different ISM bands. We present and discuss the results derived by the energy optimization strategies. The first strategy brings energy improvement rates of over 65% compared to WSN without cognitive techniques. It also brings energy improvement rates of over 25% compared with sensing strategies for changing channels based on a decision threshold. We have also seen that the algorithm behaves similarly even with significant variations in the level of noise while working in a uniform noise scenario. The collaborative strategy presents improvements respecting the previous strategy in terms of noise protection when the noise scheme is more complex where this strategy shows improvement rates of over 50%.

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La perdiz roja es la especie cinegética por excelencia en la península ibérica, cuya cría en cautividad y suelta controlada comenzó a regularse en los años 70 con la aparición del ICONA. La incubación controlada de huevos de perdiz es imprescindible, con fines cinegéticos y de preservación de la especie, y se desarrolla con incubadoras comerciales de pequeña y mediana escala, distribuidas en zonas rurales con acceso limitado y/o deficiente al suministro eléctrico. En nuestras latitudes el aporte de energía solar térmica se perfila como una posibilidad de mejorar la eficiencia energética de éstas y otras instalaciones y de reducir la dependencia energética exterior. Hay diversos factores físico-químicos que influyen en la calidad de la incubación: temperatura, humedad relativa, y concentración de gases, de los cuales sólo los dos primeros son habitualmente supervisados y controlados en este tipo de incubadoras. Esta Tesis surge en el marco de dos proyectos de cooperación con la AECID, y tiene como objetivos: la caracterización espacial de variables relevantes (temperatura (T), humedad relativa (HR)) en la incubadora comercial durante el proceso de incubación, la determinación de la relación existente entre la evolución de variables ambientales durante el proceso de incubación y la tasa de nacimientos (35-77%), así como el diseño y evaluación del sistema de apoyo solar térmico para determinar su potencial de utilización durante las incubaciones comerciales. La instalación de un número limitado de sensores permite la monitorización precisa del proceso de incubación de los huevos. Los resultados más relevantes indican que en incubaciones comerciales los gradientes de T y HR han sido despreciables (1ºC de diferencia entre las posiciones con mayor y menor T media y un 4,5% de diferencia entre las posiciones con mayor y menor HR), mientras que el seguimiento y ajuste (mediante modelos de crecimiento) de la concentración de CO2 (r2 entre 0,948 y 0,987 en las 5 incubaciones, para un total de 43315 huevos) permite valorar la actividad fisiológica de los huevos e incluso predecir la tasa de éxito (nacimientos), basándose en la concentración de CO2 estimada mediante modelos de crecimiento en el día 20 de incubación (r2 entre 0,997 y 0,994 según el modelo de estimación empleado). El sistema ha sido valorado muy positivamente por los productores (Finca Cinegética Dehesa Vieja de Galapagar). El aporte térmico se ha diseñado (con mínima intrusión en el sistema comercial) sobre la base de un sistema de enfriamiento de emergencia original de la incubadora, al que se han incorporado un colector solar, un depósito, un sistema de electroválvulas, una bomba de circulación y sensores de T en distintos puntos del sistema, y cuyo control ha sido automatizado. En esta Tesis se muestra que la contribución solar puede aportar hasta un 42% de las demandas de energía en nuestras condiciones geográficas para una temperatura de consigna dentro de la incubadora de 36.8ºC, sin afectar a la estabilidad de la temperatura. Además, el rendimiento del colector solar se ha acotado entre un 44% y un 85%, de acuerdo con los cálculos termodinámicos; valores que se mantienen dentro del rango aportado por el fabricante (61%). En el futuro se plantea evaluar el efecto de distintas estrategias de control, tales como controladores difusos, que incorporan el conocimiento experto al control automático. ABSTRACT The partridge is the quintessential game species in the Iberian Peninsula, which controlled breeding and release, began to be regulated in the 70s with the emergence of ICONA. The controlled incubation of eggs is essential, and takes place in commercial incubators of small and medium scale, distributed in rural areas with limited and/or inadequate access to power. In our latitudes the contribution of solar thermal energy is emerging as a possibility to improve the energy efficiency of the facilities and to reduce external energy dependence. There are various physicochemical factors influencing the quality of incubation: temperature, relative humidity and concentration of gases, of which only the first two are typically monitored and controlled in such incubators. This PhD comes within the framework of two cooperation projects with AECID and aims: the spatial characterization of relevant variables in a commercial incubator (temperature (T), and relative humidity (HR)), determining the relationships in the changes in environmental variables during incubation and birth rates (35-77%) as well as the design and evaluation of solar thermal support system to determine its potential use during commercial incubations; the installation of a limited number of sensors has allowed accurate monitoring of incubation of eggs. The most relevant results indicate that in commercial incubations, the gradients in T and HR have been negligible (1°C difference between the highest and lowest positions T and average 4.5% difference between the highest and lowest positions HR), while monitoring and fit using growth models of the concentration of CO2 (r2 between 0.948 and 0.987 in 5 incubations, for a total amount of 43,315 eggs) allows assessing the physiological activity of the eggs and even predict the success rate (hatchability), based on the estimated concentration of CO2 by using growth models on day 20 of incubation (r2 between 0.997 and 0.994 depending on the fit model).The system has been highly valued by producers (Finca Cinegética Dehesa Vieja de Galapagar). The hybrid heat system is designed (with minimal intrusion into the commercial system) based on an emergency cooling device, original in the incubator. New elements have been incorporated: a solar collector, a tank, a system of solenoid valves, a circulating pump and T sensors at various points of the system, whose control has been automated. This PhD shows that the solar contribution is responsible for up to 42% of energy demands in our geographical conditions for a setpoint temperature inside the incubator of 36.8ºC, without questioning the stability of the temperature. Furthermore, the efficiency of the solar collector has been bounded between 44% and 85%, according to thermodynamic calculations; values remain within the range provided by the manufacturer (61%). In the future it is proposed to evaluate the effect of different control strategies, such as fuzzy controllers, which incorporate the expertise to automated control.

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In recent decades, full electric and hybrid electric vehicles have emerged as an alternative to conventional cars due to a range of factors, including environmental and economic aspects. These vehicles are the result of considerable efforts to seek ways of reducing the use of fossil fuel for vehicle propulsion. Sophisticated technologies such as hybrid and electric powertrains require careful study and optimization. Mathematical models play a key role at this point. Currently, many advanced mathematical analysis tools, as well as computer applications have been built for vehicle simulation purposes. Given the great interest of hybrid and electric powertrains, along with the increasing importance of reliable computer-based models, the author decided to integrate both aspects in the research purpose of this work. Furthermore, this is one of the first final degree projects held at the ETSII (Higher Technical School of Industrial Engineers) that covers the study of hybrid and electric propulsion systems. The present project is based on MBS3D 2.0, a specialized software for the dynamic simulation of multibody systems developed at the UPM Institute of Automobile Research (INSIA). Automobiles are a clear example of complex multibody systems, which are present in nearly every field of engineering. The work presented here benefits from the availability of MBS3D software. This program has proven to be a very efficient tool, with a highly developed underlying mathematical formulation. On this basis, the focus of this project is the extension of MBS3D features in order to be able to perform dynamic simulations of hybrid and electric vehicle models. This requires the joint simulation of the mechanical model of the vehicle, together with the model of the hybrid or electric powertrain. These sub-models belong to completely different physical domains. In fact the powertrain consists of energy storage systems, electrical machines and power electronics, connected to purely mechanical components (wheels, suspension, transmission, clutch…). The challenge today is to create a global vehicle model that is valid for computer simulation. Therefore, the main goal of this project is to apply co-simulation methodologies to a comprehensive model of an electric vehicle, where sub-models from different areas of engineering are coupled. The created electric vehicle (EV) model consists of a separately excited DC electric motor, a Li-ion battery pack, a DC/DC chopper converter and a multibody vehicle model. Co-simulation techniques allow car designers to simulate complex vehicle architectures and behaviors, which are usually difficult to implement in a real environment due to safety and/or economic reasons. In addition, multi-domain computational models help to detect the effects of different driving patterns and parameters and improve the models in a fast and effective way. Automotive designers can greatly benefit from a multidisciplinary approach of new hybrid and electric vehicles. In this case, the global electric vehicle model includes an electrical subsystem and a mechanical subsystem. The electrical subsystem consists of three basic components: electric motor, battery pack and power converter. A modular representation is used for building the dynamic model of the vehicle drivetrain. This means that every component of the drivetrain (submodule) is modeled separately and has its own general dynamic model, with clearly defined inputs and outputs. Then, all the particular submodules are assembled according to the drivetrain configuration and, in this way, the power flow across the components is completely determined. Dynamic models of electrical components are often based on equivalent circuits, where Kirchhoff’s voltage and current laws are applied to draw the algebraic and differential equations. Here, Randles circuit is used for dynamic modeling of the battery and the electric motor is modeled through the analysis of the equivalent circuit of a separately excited DC motor, where the power converter is included. The mechanical subsystem is defined by MBS3D equations. These equations consider the position, velocity and acceleration of all the bodies comprising the vehicle multibody system. MBS3D 2.0 is entirely written in MATLAB and the structure of the program has been thoroughly studied and understood by the author. MBS3D software is adapted according to the requirements of the applied co-simulation method. Some of the core functions are modified, such as integrator and graphics, and several auxiliary functions are added in order to compute the mathematical model of the electrical components. By coupling and co-simulating both subsystems, it is possible to evaluate the dynamic interaction among all the components of the drivetrain. ‘Tight-coupling’ method is used to cosimulate the sub-models. This approach integrates all subsystems simultaneously and the results of the integration are exchanged by function-call. This means that the integration is done jointly for the mechanical and the electrical subsystem, under a single integrator and then, the speed of integration is determined by the slower subsystem. Simulations are then used to show the performance of the developed EV model. However, this project focuses more on the validation of the computational and mathematical tool for electric and hybrid vehicle simulation. For this purpose, a detailed study and comparison of different integrators within the MATLAB environment is done. Consequently, the main efforts are directed towards the implementation of co-simulation techniques in MBS3D software. In this regard, it is not intended to create an extremely precise EV model in terms of real vehicle performance, although an acceptable level of accuracy is achieved. The gap between the EV model and the real system is filled, in a way, by introducing the gas and brake pedals input, which reflects the actual driver behavior. This input is included directly in the differential equations of the model, and determines the amount of current provided to the electric motor. For a separately excited DC motor, the rotor current is proportional to the traction torque delivered to the car wheels. Therefore, as it occurs in the case of real vehicle models, the propulsion torque in the mathematical model is controlled through acceleration and brake pedal commands. The designed transmission system also includes a reduction gear that adapts the torque coming for the motor drive and transfers it. The main contribution of this project is, therefore, the implementation of a new calculation path for the wheel torques, based on performance characteristics and outputs of the electric powertrain model. Originally, the wheel traction and braking torques were input to MBS3D through a vector directly computed by the user in a MATLAB script. Now, they are calculated as a function of the motor current which, in turn, depends on the current provided by the battery pack across the DC/DC chopper converter. The motor and battery currents and voltages are the solutions of the electrical ODE (Ordinary Differential Equation) system coupled to the multibody system. Simultaneously, the outputs of MBS3D model are the position, velocity and acceleration of the vehicle at all times. The motor shaft speed is computed from the output vehicle speed considering the wheel radius, the gear reduction ratio and the transmission efficiency. This motor shaft speed, somehow available from MBS3D model, is then introduced in the differential equations corresponding to the electrical subsystem. In this way, MBS3D and the electrical powertrain model are interconnected and both subsystems exchange values resulting as expected with tight-coupling approach.When programming mathematical models of complex systems, code optimization is a key step in the process. A way to improve the overall performance of the integration, making use of C/C++ as an alternative programming language, is described and implemented. Although this entails a higher computational burden, it leads to important advantages regarding cosimulation speed and stability. In order to do this, it is necessary to integrate MATLAB with another integrated development environment (IDE), where C/C++ code can be generated and executed. In this project, C/C++ files are programmed in Microsoft Visual Studio and the interface between both IDEs is created by building C/C++ MEX file functions. These programs contain functions or subroutines that can be dynamically linked and executed from MATLAB. This process achieves reductions in simulation time up to two orders of magnitude. The tests performed with different integrators, also reveal the stiff character of the differential equations corresponding to the electrical subsystem, and allow the improvement of the cosimulation process. When varying the parameters of the integration and/or the initial conditions of the problem, the solutions of the system of equations show better dynamic response and stability, depending on the integrator used. Several integrators, with variable and non-variable step-size, and for stiff and non-stiff problems are applied to the coupled ODE system. Then, the results are analyzed, compared and discussed. From all the above, the project can be divided into four main parts: 1. Creation of the equation-based electric vehicle model; 2. Programming, simulation and adjustment of the electric vehicle model; 3. Application of co-simulation methodologies to MBS3D and the electric powertrain subsystem; and 4. Code optimization and study of different integrators. Additionally, in order to deeply understand the context of the project, the first chapters include an introduction to basic vehicle dynamics, current classification of hybrid and electric vehicles and an explanation of the involved technologies such as brake energy regeneration, electric and non-electric propulsion systems for EVs and HEVs (hybrid electric vehicles) and their control strategies. Later, the problem of dynamic modeling of hybrid and electric vehicles is discussed. The integrated development environment and the simulation tool are also briefly described. The core chapters include an explanation of the major co-simulation methodologies and how they have been programmed and applied to the electric powertrain model together with the multibody system dynamic model. Finally, the last chapters summarize the main results and conclusions of the project and propose further research topics. In conclusion, co-simulation methodologies are applicable within the integrated development environments MATLAB and Visual Studio, and the simulation tool MBS3D 2.0, where equation-based models of multidisciplinary subsystems, consisting of mechanical and electrical components, are coupled and integrated in a very efficient way.

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El sistema de energía eólica-diesel híbrido tiene un gran potencial en la prestación de suministro de energía a comunidades remotas. En comparación con los sistemas tradicionales de diesel, las plantas de energía híbridas ofrecen grandes ventajas tales como el suministro de capacidad de energía extra para "microgrids", reducción de los contaminantes y emisiones de gases de efecto invernadero, y la cobertura del riesgo de aumento inesperado del precio del combustible. El principal objetivo de la presente tesis es proporcionar nuevos conocimientos para la evaluación y optimización de los sistemas de energía híbrido eólico-diesel considerando las incertidumbres. Dado que la energía eólica es una variable estocástica, ésta no puede ser controlada ni predecirse con exactitud. La naturaleza incierta del viento como fuente de energía produce serios problemas tanto para la operación como para la evaluación del valor del sistema de energía eólica-diesel híbrido. Por un lado, la regulación de la potencia inyectada desde las turbinas de viento es una difícil tarea cuando opera el sistema híbrido. Por otro lado, el bene.cio económico de un sistema eólico-diesel híbrido se logra directamente a través de la energía entregada a la red de alimentación de la energía eólica. Consecuentemente, la incertidumbre de los recursos eólicos incrementa la dificultad de estimar los beneficios globales en la etapa de planificación. La principal preocupación del modelo tradicional determinista es no tener en cuenta la incertidumbre futura a la hora de tomar la decisión de operación. Con lo cual, no se prevé las acciones operativas flexibles en respuesta a los escenarios futuros. El análisis del rendimiento y simulación por ordenador en el Proyecto Eólico San Cristóbal demuestra que la incertidumbre sobre la energía eólica, las estrategias de control, almacenamiento de energía, y la curva de potencia de aerogeneradores tienen un impacto significativo sobre el rendimiento del sistema. En la presente tesis, se analiza la relación entre la teoría de valoración de opciones y el proceso de toma de decisiones. La opción real se desarrolla con un modelo y se presenta a través de ejemplos prácticos para evaluar el valor de los sistemas de energía eólica-diesel híbridos. Los resultados muestran que las opciones operacionales pueden aportar un valor adicional para el sistema de energía híbrida, cuando esta flexibilidad operativa se utiliza correctamente. Este marco se puede aplicar en la optimización de la operación a corto plazo teniendo en cuenta la naturaleza dependiente de la trayectoria de la política óptima de despacho, dadas las plausibles futuras realizaciones de la producción de energía eólica. En comparación con los métodos de valoración y optimización existentes, el resultado del caso de estudio numérico muestra que la política de operación resultante del modelo de optimización propuesto presenta una notable actuación en la reducción del con- sumo total de combustible del sistema eólico-diesel. Con el .n de tomar decisiones óptimas, los operadores de plantas de energía y los gestores de éstas no deben centrarse sólo en el resultado directo de cada acción operativa, tampoco deberían tomar decisiones deterministas. La forma correcta es gestionar dinámicamente el sistema de energía teniendo en cuenta el valor futuro condicionado en cada opción frente a la incertidumbre. ABSTRACT Hybrid wind-diesel power systems have a great potential in providing energy supply to remote communities. Compared with the traditional diesel systems, hybrid power plants are providing many advantages such as providing extra energy capacity to the micro-grid, reducing pollution and greenhouse-gas emissions, and hedging the risk of unexpected fuel price increases. This dissertation aims at providing novel insights for assessing and optimizing hybrid wind-diesel power systems considering the related uncertainties. Since wind power can neither be controlled nor accurately predicted, the energy harvested from a wind turbine may be considered a stochastic variable. This uncertain nature of wind energy source results in serious problems for both the operation and value assessment of the hybrid wind-diesel power system. On the one hand, regulating the uncertain power injected from wind turbines is a difficult task when operating the hybrid system. On the other hand, the economic profit of a hybrid wind-diesel system is achieved directly through the energy delivered to the power grid from the wind energy. Therefore, the uncertainty of wind resources has increased the difficulty in estimating the total benefits in the planning stage. The main concern of the traditional deterministic model is that it does not consider the future uncertainty when making the dispatch decision. Thus, it does not provide flexible operational actions in response to the uncertain future scenarios. Performance analysis and computer simulation on the San Cristobal Wind Project demonstrate that the wind power uncertainty, control strategies, energy storage, and the wind turbine power curve have a significant impact on the performance of the system. In this dissertation, the relationship between option pricing theory and decision making process is discussed. A real option model is developed and presented through practical examples for assessing the value of hybrid wind-diesel power systems. Results show that operational options can provide additional value to the hybrid power system when this operational flexibility is correctly utilized. This framework can be applied in optimizing short term dispatch decisions considering the path-dependent nature of the optimal dispatch policy, given the plausible future realizations of the wind power production. Comparing with the existing valuation and optimization methods, result from numerical example shows that the dispatch policy resulting from the proposed optimization model exhibits a remarkable performance in minimizing the total fuel consumption of the wind-diesel system. In order to make optimal decisions, power plant operators and managers should not just focus on the direct outcome of each operational action; neither should they make deterministic decisions. The correct way is to dynamically manage the power system by taking into consideration the conditional future value in each option in response to the uncertainty.