10 resultados para Loss of Driving Control.

em Universidad Politécnica de Madrid


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Since the Three Mile Island accident, an important focus of pressurized water reactor (PWR) transient analyses has been a small-break loss-of-coolant accident (SBLOCA). In 2002, the discovery of thinning of the vessel head wall at the Davis Besse nuclear power plant reactor indicated the possibility of an SBLOCA in the upper head of the reactor vessel as a result of circumferential cracking of a control rod drive mechanism penetration nozzle - which has cast even greater importance on the study of SBLOCAs. Several experimental tests have been performed at the Large Scale Test Facility to simulate the behavior of a PWR during an upper-head SBLOCA. The last of these tests, Organisation for Economic Co-operation and Development Nuclear Energy Agency Rig of Safety Assessment (OECD/NEA ROSA) Test 6.1, was performed in 2005. This test was simulated with the TRACE 5.0 code, and good agreement with the experimental results was obtained. Additionally, a broad analysis of an upper-head SBLOCA with high-pressure safety injection failed in a Westinghouse PWR was performed taking into account different accident management actions and conditions in order to check their suitability. This issue has been analyzed also in the framework of the OECD/NEA ROSA project and the Code Applications and Maintenance Program (CAMP). The main conclusion is that the current emergency operating procedures for Westinghouse reactor design are adequate for these kinds of sequences, and they do not need to be modified.

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The main objective of this work is the design and implementation of the digital control stage of a 280W AC/DC industrial power supply in a single low-cost microcontroller to replace the analog control stage. The switch-mode power supply (SMPS) consists of a PFC boost converter with fixed frequency operation and a variable frequency LLC series resonant DC/DC converter. Input voltage range is 85VRMS-550VRMS and the output voltage range is 24V-28V. A digital controller is especially suitable for this kind of SMPS to implement its multiple functionalities and to keep the efficiency and the performance high over the wide range of input voltages. Additional advantages of the digital control are reliability and size. The optimized design and implementation of the digital control stage it is presented. Experimental results show the stable operation of the controlled system and an estimation of the cost reduction achieved with the digital control stage.

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This paper presents the main results of a study on the influence of driving style on fuel consumption and pollutant emissions of diesel passenger car in urban traffic. Driving styles (eco, normal or aggressive) patterns were based on the “eco-driving” criteria. The methodology is based on on-board emission measurements in real urban traffic in the city of Madrid. Five diesel passenger cars, have been tested. Through a statistical analysis, a Dynamic Performance Index was defined for diesel passenger cars. Likewise, the CO, NOX and HC emissions were compared for each driving style for the tested vehicles. Eco-driving reduces by 14% fuel consumption and CO2 emissions, but aggressive driving increase consumption by 40%. Aggressive driving increases NOX emission by more than 40%. CO and HC, show different trends, but being increased in eco-driving style.

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The deviation of calibration coefficients from five cup anemometer models over time was analyzed. The analysis was based on a series of laboratory calibrations between January 2001 and August 2010. The analysis was performed on two different groups of anemometers: (1) anemometers not used for any industrial purpose (that is, just stored); and (2) anemometers used in different industrial applications (mainly in the field—or outside—applications like wind farms). Results indicate a loss of performance of the studied anemometers over time. In the case of the unused anemometers the degradation shows a clear pattern. In the case of the anemometers used in the field, the data analyzed also suggest a loss of performance, yet the degradation does not show a clear trend. A recalibration schedule is proposed based on the observed performances variations

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In pressure irrigation-water distribution networks, pressure regulating devices for controlling the discharged flow rate by irrigation units are needed due to the variability of flow rate. In addition, applied water volume is used controlled operating the valve during a calculated time interval, and assuming constant flow rate. In general, a pressure regulating valve PRV is the commonly used pressure regulating device in a hydrant, which, also, executes the open and close function. A hydrant feeds several irrigation units, requiring a wide range in flow rate. In addition, some flow meters are also available, one as a component of the hydrant and the rest are placed downstream. Every land owner has one flow meter for each group of field plots downstream the hydrant. Its lecture could be used for refining the water balance but its accuracy must be taken into account. Ideal PRV performance would maintain a constant downstream pressure. However, the true performance depends on both upstream pressure and the discharged flow rate. The objective of this work is to asses the influence of the performance on the applied volume during the whole irrigation events in a year. The results of the study have been obtained introducing the flow rate into a PRV model. Variations on flow rate are simulated by taking into account the consequences of variations on climate conditions and also decisions in irrigation operation, such us duration and frequency application. The model comprises continuity, dynamic and energy equations of the components of the PRV.

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A new 10 year surface mass balance (SMB) record of Hurd and Johnsons Glaciers, Livingston Island, Antarctica, is presented and compared with earlier estimates on the basis of local and regional meteorological conditions and trends.Since Johnsons is a tidewater glacier, we also include a calving flux calculation to estimate its total mass balance. The average annual SMB over the 10 year observation period 2002–11 is –0.15�0.10 m w.e. for Hurd Glacier and 0.05�0.10 m w.e. for Johnsons Glacier. Adding the calving losses to the latter results in a total mass balance of –0.09�0.10 m w.e. There has been a deceleration of the mass losses of these glaciers from 1957–2000 to 2002–11, which have nearly halved for both glaciers. We attribute this decrease in the mass losses to a combination of increased accumulation in the region and decreased melt. The increased accumulation is attributed to larger precipitation associated with the recent deepening of the circumpolar pressure trough, while the melt decrease is associated with lower summer surface temperatures during the past decade.

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High switching frequencies (several MHz) allow the integration of low power DC/DC converters. Although, in theory, a high switching frequency would make possible to implement a conventional Voltage Mode control (VMC) or Peak Current Mode control (PCMC) with very high bandwidth, in practice, parasitic effects and robustness limits the applicability of these control techniques. This paper compares VMC and CMC techniques with the V2IC control. This control is based on two loops. The fast internal loop has information of the output capacitor current and the error voltage, providing fast dynamic response under load and voltage reference steps, while the slow external voltage loop provides accurate steady state regulation. This paper shows the fast dynamic response of the V2IC control under load and output voltage reference steps and its robustness operating with additional output capacitors added by the customer.

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Dimensionality Reduction (DR) is attracting more attention these days as a result of the increasing need to handle huge amounts of data effectively. DR methods allow the number of initial features to be reduced considerably until a set of them is found that allows the original properties of the data to be kept. However, their use entails an inherent loss of quality that is likely to affect the understanding of the data, in terms of data analysis. This loss of quality could be determinant when selecting a DR method, because of the nature of each method. In this paper, we propose a methodology that allows different DR methods to be analyzed and compared as regards the loss of quality produced by them. This methodology makes use of the concept of preservation of geometry (quality assessment criteria) to assess the loss of quality. Experiments have been carried out by using the most well-known DR algorithms and quality assessment criteria, based on the literature. These experiments have been applied on 12 real-world datasets. Results obtained so far show that it is possible to establish a method to select the most appropriate DR method, in terms of minimum loss of quality. Experiments have also highlighted some interesting relationships between the quality assessment criteria. Finally, the methodology allows the appropriate choice of dimensionality for reducing data to be established, whilst giving rise to a minimum loss of quality.

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La tesis analiza los antecedentes y el contexto arquitectónico de aquellas obras que se pueden enmarcar dentro del concepto de lo Grande. Arrancando en los movimientos utópicos, megaestructuralistas o radicales de los años sesenta, nos conduce hasta conceptos, proyectos y teorías contemporáneos. Para ello es preciso, definir lo Grande no solo a través de cuestiones dimensionales, sino también de cambio de dimensión espacial y conceptual. Se estudian arquitecturas, que, una vez superado un cierto volumen, magnitud o grado de complejidad, se convierten en un ‘edificio grande’, adquiriendo propiedades de otra naturaleza, generando un cambio o salto entre escalas, o un desplazamiento entre campos, rompiendo los límites habituales de la escala, el tamaño u otras codificaciones con las que se categorizan los proyectos entre la ‘arquitectura’ y la ‘ciudad’. El cuerpo de tesis principal se estructura en dos secciones, ‘Genealogías y asociaciones’ y ‘Desplazamiento de conceptos’, y una Conclusión, que trata de compilar las consideraciones o conclusiones extraídas de lo anterior, construyendo así la propia teoría de lo Grande. Genealogías y asociaciones revisa las formas de conocimiento que contextualizan lo Grande, haciendo un barrido de las estructuras sociales, económicas y políticas, desde una perspectiva y un marco con influencia directa en la arquitectura. Recorre teorías, tesis y proyectos que reflexionan o trabajan en lo Grande y en los límites entre las escalas desde la década de los sesenta hasta hoy día. En ese barrido examina conceptos y condiciones capaces de abrir nuevos paradigmas y escenarios arquitectónicos. El contexto sociocultural que lo enmarca resulta crucial para definir posteriormente conceptos, en un barrido desde la cultura de masas a la sociedad de la información, repasando la influencia y repercusión que ha tenido la tecnología y la globalización en el desarrollo de la arquitectura. Por último, se estudian conceptos entre el espacio y a la política, mediante una análisis que enmarque las posiciones de apoyo, refuerzo o rechazo en la relación de la obra de arquitectura y la naturaleza política que esta adquiere por la mera condición de ser Grande. Desplazamiento de conceptos, ofrece condiciones y ejemplos que permiten definir las ‘propiedades’ de lo Grande, a través de una investigación teórica y analítica de las herramientas y estrategias que operan en estas escalas, para confirmar cómo, desarrollos aparentemente cuantitativos, pueden dar lugar a avances cualitativos o a mutaciones que permitan superar los paradigmas anteriores. El objetivo es la definición del conjunto de instrumentos, estrategias y operaciones que sintetizan los valores de cada concepto, con las que construir una ‘cosmogonía’ sobre el tema, apoyándose para ello en textos de referencia, proyectos paradigmáticos y conceptos derivados de los análisis. Los conceptos a estudio devienen directamente de ciertos atributos y características detectadas en las genealogías de lo Grande. Así, consideramos Grande a aquella arquitectura cuya escala y tamaño ha experimentado lo que definiremos como ‘cambio de dimensiones’, no solo a nivel dimensional, sino también perceptivo, técnico y contextual; su tamaño no solo depende de sus magnitudes sino también de la cantidad de materia que contiene el sistema o que circula por él; que tiene trazas, dotes y propiedades de infraestructura; que está instalada, y por tanto, es reactiva con el medio; por ello, es al mismo tiempo autónoma respecto al todo, aunque relacionada con él; un espacio capaz de aceptar la indeterminación de ciertas partes frente a la especificidad de otras, como forma de admitir la pérdida del control total y el detalle; por tanto, que ha desplazado la planificación y el diseño por la investigación programática y la estrategia operativa. En definitiva una arquitectura que desplaza o muta conceptos, atributos y estrategias de otras disciplinas, de los saltos entre escalas y de los nuevos programas. ABSTRACT The thesis will analyze the architectural background and context of those works which can be framed within the concept of Bigness. From the utopian, megastructuralism and radical movements of the sixties, it will lead to contemporary concepts, projects and theories, and ultimately define a theory of Bigness. It will be necessary to define Bigness or the Large, not only in terms of size, but also considering change in spatial and conceptual dimensions. Its case studies are architectures which, surpassing a certain volume, magnitude or degree of complexity, become a ‘large building’ and acquire characteristics of another nature. This generates a change or ‘leap’ in scale, or a displacement in fields, breaking the conventional limits of scale, size and other codes used to categorise projects within ‘architecture’ or the ‘city’. The main body of the thesis is structured into two sections, Genealogies and Associations and Displacement of Concepts, and the Conclusion, which will compile the considerations and conclusions extracted from the previous parts, building the actual theory of Bigness. The first section, Genealogies and Associations, will review the forms of knowledge which contextualize the Large, covering a spectrum of social, economic and political structures from the framework and perspective of their direct influence on architecture. It will account theories, thesis and projects which reflect or work on Bigness and on the limits between scales from the sixties to today, examining those concepts and conditions which may be useful to unfold new settings and paradigms. As the sociocultural context will also prove crucial in order to later define concepts, a broad sweep will cover from the mass society to the information society, revising the influence and repercussions of technology and globalization on the development of architecture. Lastly, it will study concepts in-between space and politics, by means of a study framing positions of support, assistance or rejection towards the work of architecture, and the political nature the work is given only due to its condition of being Big. The following section, Displacement of Concepts, provides conditions and examples which allow the definition of the ‘characteristics’ of Bigness by means of a theoretical and analytical investigation of the tools and strategies which operate on these scales. This is in order to confirm how apparently quantitative developments can lead to qualitative advances or to mutations that enable the overcoming of previous paradigms. The objective is to define the set of strategies, operations and tools, which synthesize the values of each concept; the grounding for a “cosmogony” of the subject, underpinned by relevant reference texts, paradigmatic projects and concepts stemming from the analyses. The concepts of study arise directly from certain attributes and characteristics detected in Bigness. For this purpose, it is that architecture whose dimensions and size have experienced what we will define as a ‘change of dimensions’, not only of size, but also perceptual, technical and contextual;its size depends not only on its magnitude but also the amount of material that contains or flows through system; which possesses traits, faculties and features of an infrastructure; which is installed, and is therefore reactive with its surroundings; due to this, it will be autonomous with respect to the whole and yet related to it; a space which can accept the undetermined nature of some of its parts as well as the specificity of other parts, acknowledging the loss of total control and detail; and thus, which has displaced planning and design with operational strategies. In conclusion, an architecture that displaces or mutates concepts, attributes and strategies stemming from other disciplines, from the jumps between scales, and from the new programs.

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Hybrid Stepper Motors are widely used in open-loop position applications. They are the choice of actuation for the collimators in the Large Hadron Collider, the largest particle accelerator at CERN. In this case the positioning requirements and the highly radioactive operating environment are unique. The latter forces both the use of long cables to connect the motors to the drives which act as transmission lines and also prevents the use of standard position sensors. However, reliable and precise operation of the collimators is critical for the machine, requiring the prevention of step loss in the motors and maintenance to be foreseen in case of mechanical degradation. In order to make the above possible, an approach is proposed for the application of an Extended Kalman Filter to a sensorless stepper motor drive, when the motor is separated from its drive by long cables. When the long cables and high frequency pulse width modulated control voltage signals are used together, the electrical signals difer greatly between the motor and drive-side of the cable. Since in the considered case only drive-side data is available, it is therefore necessary to estimate the motor-side signals. Modelling the entire cable and motor system in an Extended Kalman Filter is too computationally intensive for standard embedded real-time platforms. It is, in consequence, proposed to divide the problem into an Extended Kalman Filter, based only on the motor model, and separated motor-side signal estimators, the combination of which is less demanding computationally. The efectiveness of this approach is shown in simulation. Then its validity is experimentally demonstrated via implementation in a DSP based drive. A testbench to test its performance when driving an axis of a Large Hadron Collider collimator is presented along with the results achieved. It is shown that the proposed method is capable of achieving position and load torque estimates which allow step loss to be detected and mechanical degradation to be evaluated without the need for physical sensors. These estimation algorithms often require a precise model of the motor, but the standard electrical model used for hybrid stepper motors is limited when currents, which are high enough to produce saturation of the magnetic circuit, are present. New model extensions are proposed in order to have a more precise model of the motor independently of the current level, whilst maintaining a low computational cost. It is shown that a significant improvement in the model It is achieved with these extensions, and their computational performance is compared to study the cost of model improvement versus computation cost. The applicability of the proposed model extensions is demonstrated via their use in an Extended Kalman Filter running in real-time for closed-loop current control and mechanical state estimation. An additional problem arises from the use of stepper motors. The mechanics of the collimators can wear due to the abrupt motion and torque profiles that are applied by them when used in the standard way, i.e. stepping in open-loop. Closed-loop position control, more specifically Field Oriented Control, would allow smoother profiles, more respectful to the mechanics, to be applied but requires position feedback. As mentioned already, the use of sensors in radioactive environments is very limited for reliability reasons. Sensorless control is a known option but when the speed is very low or zero, as is the case most of the time for the motors used in the LHC collimator, the loss of observability prevents its use. In order to allow the use of position sensors without reducing the long term reliability of the whole system, the possibility to switch from closed to open loop is proposed and validated, allowing the use of closed-loop control when the position sensors function correctly and open-loop when there is a sensor failure. A different approach to deal with the switched drive working with long cables is also presented. Switched mode stepper motor drives tend to have poor performance or even fail completely when the motor is fed through a long cable due to the high oscillations in the drive-side current. The design of a stepper motor output fillter which solves this problem is thus proposed. A two stage filter, one devoted to dealing with the diferential mode and the other with the common mode, is designed and validated experimentally. With this ?lter the drive performance is greatly improved, achieving a positioning repeatability even better than with the drive working without a long cable, the radiated emissions are reduced and the overvoltages at the motor terminals are eliminated.