19 resultados para Interval time-varying delay

em Universidad Politécnica de Madrid


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In this paper, we propose a novel control scheme for bilateral teleoperation of n degree-of-freedom (DOF) nonlinear robotic systems with time-varying communication delay. We consider that the human operator contains a constant force on the local manipulator. The local and remote manipulators are coupled using state convergence control scheme. By choosing a Lyapunov-Krasovskii functional, we show that the local-remote teleoperation system is asymptotically stable. It is also shown that, in the case of reliable communication protocols, the proposed scheme guarantees that the remote manipulator tracks the delayed trajectory of the local manipulator. The time delay of communication channel is assumed to be unknown and randomly time varying, but the upper bounds of the delay interval and the derivative of the delay are assumed to be known.

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We propose a novel control scheme for bilateral teleoperation of n degree-of-freedom (DOF) nonlinear robotic systems with time-varying communication delay. A major contribution from this work lies in the demonstration that the structure of a state convergence algorithm can be also applied to nth-order nonlinear teleoperation systems. By choosing a Lyapunov Krasovskii functional, we show that the local-remote teleoperation system is asymptotically stable. The time delay of communication channel is assumed to be unknown and randomly time varying, but the upper bounds of the delay interval and the derivative of the delay are assumed to be known.

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This paper discusses the use of sound waves to illustrate multipath radio propagation concepts. Specifically, a procedure is presented to measure the time-varying frequency response of the channel. This helps demonstrate how a propagation channel can be characterized in time and frequency, and provides visualizations of the concepts of coherence time and coherence bandwidth. The measurements are very simple to carry out, and the required equipment is easily available. The proposed method can be useful for wireless or mobile communication courses.

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This research proposes a generic methodology for dimensionality reduction upon time-frequency representations applied to the classification of different types of biosignals. The methodology directly deals with the highly redundant and irrelevant data contained in these representations, combining a first stage of irrelevant data removal by variable selection, with a second stage of redundancy reduction using methods based on linear transformations. The study addresses two techniques that provided a similar performance: the first one is based on the selection of a set of the most relevant time?frequency points, whereas the second one selects the most relevant frequency bands. The first methodology needs a lower quantity of components, leading to a lower feature space; but the second improves the capture of the time-varying dynamics of the signal, and therefore provides a more stable performance. In order to evaluate the generalization capabilities of the methodology proposed it has been applied to two types of biosignals with different kinds of non-stationary behaviors: electroencephalographic and phonocardiographic biosignals. Even when these two databases contain samples with different degrees of complexity and a wide variety of characterizing patterns, the results demonstrate a good accuracy for the detection of pathologies, over 98%.The results open the possibility to extrapolate the methodology to the study of other biosignals.

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n this work, a mathematical unifying framework for designing new fault detection schemes in nonlinear stochastic continuous-time dynamical systems is developed. These schemes are based on a stochastic process, called the residual, which reflects the system behavior and whose changes are to be detected. A quickest detection scheme for the residual is proposed, which is based on the computed likelihood ratios for time-varying statistical changes in the Ornstein–Uhlenbeck process. Several expressions are provided, depending on a priori knowledge of the fault, which can be employed in a proposed CUSUM-type approximated scheme. This general setting gathers different existing fault detection schemes within a unifying framework, and allows for the definition of new ones. A comparative simulation example illustrates the behavior of the proposed schemes.

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The usage of HTTP adaptive streaming (HAS) has become widely spread in multimedia services. Because it allows the service providers to improve the network resource utilization and user׳s Quality of Experience (QoE). Using this technology, the video playback interruption is reduced since the network and server status in addition to capability of user device, all are taken into account by HAS client to adapt the quality to the current condition. Adaptation can be done using different strategies. In order to provide optimal QoE, the perceptual impact of adaptation strategies from point of view of the user should be studied. However, the time-varying video quality due to the adaptation which usually takes place in a long interval introduces a new type of impairment making the subjective evaluation of adaptive streaming system challenging. The contribution of this paper is two-fold: first, it investigates the testing methodology to evaluate HAS QoE by comparing the subjective experimental outcomes obtained from ACR standardized method and a semi-continuous method developed to evaluate the long sequences. In addition, influence of using audiovisual stimuli to evaluate the video-related impairment is inquired. Second, impact of some of the adaptation technical factors including the quality switching amplitude and chunk size in combination with high range of commercial content type is investigated. The results of this study provide a good insight toward achieving appropriate testing method to evaluate HAS QoE, in addition to designing switching strategies with optimal visual quality.

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The liberalization of electricity markets more than ten years ago in the vast majority of developed countries has introduced the need of modelling and forecasting electricity prices and volatilities, both in the short and long term. Thus, there is a need of providing methodology that is able to deal with the most important features of electricity price series, which are well known for presenting not only structure in conditional mean but also time-varying conditional variances. In this work we propose a new model, which allows to extract conditionally heteroskedastic common factors from the vector of electricity prices. These common factors are jointly estimated as well as their relationship with the original vector of series, and the dynamics affecting both their conditional mean and variance. The estimation of the model is carried out under the state-space formulation. The new model proposed is applied to extract seasonal common dynamic factors as well as common volatility factors for electricity prices and the estimation results are used to forecast electricity prices and their volatilities in the Spanish zone of the Iberian Market. Several simplified/alternative models are also considered as benchmarks to illustrate that the proposed approach is superior to all of them in terms of explanatory and predictive power.

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Abnormalities of the aortic arch, as the most proximal site of the cardiovascular system, are of great interest due to its major role in blood distribution to all downstream members. Wall dissection is one of the disorders that an aorta may suffer due to hypertension or degradation of aortic wall properties. A geometrical change of the aortic arch caused by the dissected wall, and consequently the blood flow path, makes the time-varying flow curves to be different in comparison to the healthy aortic arch. This phenomenon modifies wall shear stress (WSS) history during the cardiac cycle. In the current work, the pulsatile blood flow in a typical Stanford A (DeBakey II) dissected aorta is simulated by CFD technique, STAR-CCM+. The boundary conditions are calculated based on a combination of the impedance boundary condition and the auto-regulation concept in the cardiovascular system.

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El actual proyecto consiste en la creación de una interfaz gráfica de usuario (GUI) en entorno de MATLAB que realice una representación gráfica de la base de datos de HRTF (Head-Related Transfer Function). La función de transferencia de la cabeza es una herramienta muy útil en el estudio de la capacidad del ser humano para percibir su entorno sonoro, además de la habilidad de éste en la localización de fuentes sonoras en el espacio que le rodea. La HRTF biaural (terminología para referirse al conjunto de HRTF del oído izquierdo y del oído derecho) en sí misma, posee información de especial interés ya que las diferencias entre las HRTF de cada oído, conceden la información que nuestro sistema de audición utiliza en la percepción del campo sonoro. Por ello, la funcionalidad de la interfaz gráfica creada presenta gran provecho dentro del estudio de este campo. Las diferencias interaurales se caracterizan en amplitud y en tiempo, variando en función de la frecuencia. Mediante la transformada inversa de Fourier de la señal HRTF, se obtiene la repuesta al impulso de la cabeza, es decir, la HRIR (Head-Related Impulse Response). La cual, además de tener una gran utilidad en la creación de software o dispositivos de generación de sonido envolvente, se utiliza para obtener las diferencias ITD (Interaural Time Difference) e ILD (Interaural Time Difference), comúnmente denominados “parámetros de localización espacial”. La base de datos de HRTF contiene la información biaural de diferentes puntos de ubicación de la fuente sonora, formando una red de coordenadas esféricas que envuelve la cabeza del sujeto. Dicha red, según las medidas realizadas en la cámara anecoica de la EUITT (Escuela Universitaria de Ingeniería Técnica de Telecomunicación), presenta una precisión en elevación de 10º y en azimut de 5º. Los receptores son dos micrófonos alojados en el maniquí acústico llamado HATS (Hats and Torso Simulator) modelo 4100D de Brüel&Kjaer. Éste posee las características físicas que influyen en la percepción del entorno como son las formas del pabellón auditivo (pinna), de la cabeza, del cuello y del torso humano. Será necesario realizar los cálculos de interpolación para todos aquellos puntos no contenidos en la base de datos HRTF, este proceso es sumamente importante no solo para potenciar la capacidad de la misma sino por su utilidad para la comparación entre otras bases de datos existentes en el estudio de este ámbito. La interfaz gráfica de usuario está concebida para un manejo sencillo, claro y predecible, a la vez que interactivo. Desde el primer boceto del programa se ha tenido clara su filosofía, impuesta por las necesidades de un usuario que busca una herramienta práctica y de manejo intuitivo. Su diseño de una sola ventana reúne tanto los componentes de obtención de datos como los que hacen posible la representación gráfica de las HRTF, las HRIR y los parámetros de localización espacial, ITD e ILD. El usuario podrá ir alternando las representaciones gráficas a la vez que introduce las coordenadas de los puntos que desea visualizar, definidas por phi (elevación) y theta (azimut). Esta faceta de la interfaz es la que le otorga una gran facilidad de acceso y lectura de la información representada en ella. Además, el usuario puede introducir valores incluidos en la base de datos o valores intermedios a estos, de esta manera, se indica a la interfaz la necesidad de realizar la interpolación de los mismos. El método de interpolación escogido es el de la ponderación de la distancia inversa entre puntos. Dependiendo de los valores introducidos por el usuario se realizará una interpolación de dos o cuatro puntos, siendo éstos limítrofes al valor introducido, ya sea de phi o theta. Para añadir versatilidad a la interfaz gráfica de usuario, se ha añadido la opción de generar archivos de salida en forma de imagen de las gráficas representadas, de tal forma que el usuario pueda extraer los datos que le interese para cualquier valor de phi y theta. Se completa el presente proyecto fin de carrera con un trabajo de investigación y estudio comparativo de la función y la aplicación de las bases de datos de HRTF dentro del marco científico y de investigación. Esto ha hecho posible concentrar información relacionada a través de revistas científicas de investigación como la JAES (Journal of the Audio Engineering Society) o la ASA (Acoustical Society of America), además, del IEEE ( Institute of Electrical and Electronics Engineers) o la “Web of knowledge” entre otras. Además de realizar la búsqueda en estas fuentes, se ha optado por vías de información más comunes como Google Académico o el portal de acceso “Ingenio” a los todos los recursos electrónicos contenidos en la base de datos de la universidad. El estudio genera una ampliación en el conocimiento de la labor práctica de las HRTF. La mayoría de los estudios enfocan sus esfuerzos en mejorar la percepción del evento sonoro mediante su simulación en la escucha estéreo o multicanal. A partir de las HRTF, esto es posible mediante el análisis y el cálculo de datos como pueden ser las regresiones, siendo éstas muy útiles en la predicción de una medida basándose en la información de la actual. Otro campo de especial interés es el de la generación de sonido 3D. Mediante la base de datos HRTF es posible la simulación de una señal biaural. Se han diseñado algoritmos que son implementados en dispositivos DSP, de tal manera que por medio de retardos interaurales y de diferencias espectrales es posible llegar a un resultado óptimo de sonido envolvente, sin olvidar la importancia de los efectos de reverberación para conseguir un efecto creíble de sonido envolvente. Debido a la complejidad computacional que esto requiere, gran parte de los estudios coinciden en desarrollar sistemas más eficientes, llegando a objetivos tales como la generación de sonido 3D en tiempo real. ABSTRACT. This project involves the creation of a Graphic User Interface (GUI) in the Matlab environment which creates a graphic representation of the HRTF (Head-Related Transfer Function) database. The head transfer function is a very useful tool in the study of the capacity of human beings to perceive their sound environment, as well as their ability to localise sound sources in the area surrounding them. The binaural HRTF (terminology which refers to the HRTF group of the left and right ear) in itself possesses information of special interest seeing that the differences between the HRTF of each ear admits the information that our system of hearing uses in the perception of each sound field. For this reason, the functionality of the graphic interface created presents great benefits within the study of this field. The interaural differences are characterised in space and in time, varying depending on the frequency. By means of Fourier's transformed inverse of the HRTF signal, the response to the head impulse is obtained, in other words, the HRIR (Head-Related Impulse Response). This, as well as having a great use in the creation of software or surround sound generating devices, is used to obtain ITD differences (Interaural Time Difference) and ILD (Interaural Time Difference), commonly named “spatial localisation parameters”. The HRTF database contains the binaural information of different points of sound source location, forming a network of spherical coordinates which surround the subject's head. This network, according to the measures carried out in the anechoic chamber at the EUITT (School of Telecommunications Engineering) gives a precision in elevation of 10º and in azimuth of 5º. The receivers are two microphones placed on the acoustic mannequin called HATS (Hats and Torso Simulator) Brüel&Kjaer model 4100D. This has the physical characteristics which affect the perception of the surroundings which are the forms of the auricle (pinna), the head, neck and human torso. It will be necessary to make interpolation calculations for all those points which are not contained the HRTF database. This process is extremely important not only to strengthen the database's capacity but also for its usefulness in making comparisons with other databases that exist in the study of this field. The graphic user interface is conceived for a simple, clear and predictable use which is also interactive. Since the first outline of the program, its philosophy has been clear, based on the needs of a user who requires a practical tool with an intuitive use. Its design with only one window unites not only the components which obtain data but also those which make the graphic representation of the HRTFs possible, the hrir and the ITD and ILD spatial location parameters. The user will be able to alternate the graphic representations at the same time as entering the point coordinates that they wish to display, defined by phi (elevation) and theta (azimuth). The facet of the interface is what provides the great ease of access and reading of the information displayed on it. In addition, the user can enter values included in the database or values which are intermediate to these. It is, likewise, indicated to the interface the need to carry out the interpolation of these values. The interpolation method is the deliberation of the inverse distance between points. Depending on the values entered by the user, an interpolation of two or four points will be carried out, with these being adjacent to the entered value, whether that is phi or theta. To add versatility to the graphic user interface, the option of generating output files in the form of an image of the graphics displayed has been added. This is so that the user may extract the information that interests them for any phi and theta value. This final project is completed with a research and comparative study essay on the function and application of HRTF databases within the scientific and research framework. It has been possible to collate related information by means of scientific research magazines such as the JAES (Journal of the Audio Engineering Society), the ASA (Acoustical Society of America) as well as the IEEE (Institute of Electrical and Electronics Engineers) and the “Web of knowledge” amongst others. In addition to carrying out research with these sources, I also opted to use more common sources of information such as Academic Google and the “Ingenio” point of entry to all the electronic resources contained on the university databases. The study generates an expansion in the knowledge of the practical work of the HRTF. The majority of studies focus their efforts on improving the perception of the sound event by means of its simulation in stereo or multichannel listening. With the HRTFs, this is possible by means of analysis and calculation of data as can be the regressions. These are very useful in the prediction of a measure being based on the current information. Another field of special interest is that of the generation of 3D sound. Through HRTF databases it is possible to simulate the binaural signal. Algorithms have been designed which are implemented in DSP devices, in such a way that by means of interaural delays and wavelength differences it is possible to achieve an excellent result of surround sound, without forgetting the importance of the effects of reverberation to achieve a believable effect of surround sound. Due to the computational complexity that this requires, a great many studies agree on the development of more efficient systems which achieve objectives such as the generation of 3D sound in real time.

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This article describes the design of a linear observer–linear controller-based robust output feedback scheme for output reference trajectory tracking tasks in the case of nonlinear, multivariable, nonholonomic underactuated mobile manipulators. The proposed linear feedback scheme is based on the use of a classical linear feedback controller and suitably extended, high-gain, linear Generalized Proportional Integral (GPI) observers, thus aiding the linear feedback controllers to provide an accurate simultaneous estimation of each flat output associated phase variables and of the exogenous and perturbation inputs. This information is used in the proposed feedback controller in (a) approximate, yet close, cancelations, as lumped unstructured time-varying terms, of the influence of the highly coupled nonlinearities, and (b) the devising of proper linear output feedback control laws based on the approximate estimates of the string of phase variables associated with the flat outputs simultaneously provided by the disturbance observers. Simulations reveal the effectiveness of the proposed approach.

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Four periodically time-varying methane–air laminar coflow jet diffusion flames, each forced by pulsating the fuel jet's exit velocity Uj sinusoidally with a different modulation frequency wj and with a 50% amplitude variation, have been computed. Combustion of methane has been modeled by using a chemical mechanism with 15 species and 42 reactions, and the solution of the unsteady Navier–Stokes equations has been obtained numerically by using a modified vorticity-velocity formulation in the limit of low Mach number. The effect of wj on temperature and chemistry has been studied in detail. Three different regimes are found depending on the flame's Strouhal number S=awj/Uj, with a denoting the fuel jet radius. For small Strouhal number (S=0.1), the modulation introduces a perturbation that travels very far downstream, and certain variables oscillate at the frequency imposed by the fuel jet modulation. As the Strouhal number grows, the nondimensional frequency approaches the natural frequency of oscillation of the flickering flame (S≃0.2). A coupling with the pulsation frequency enhances the effect of the imposed modulation and a vigorous pinch-off is observed for S=0.25 and S=0.5. Larger values of S confine the oscillation to the jet's near-exit region, and the effects of the pulsation are reduced to small wiggles in the temperature and concentration values. Temperature and species mass fractions change appreciably near the jet centerline, where variations of over 2% for the temperature and 15% and 40% for the CO and OH mass fractions, respectively, are found. Transverse to the jet movement, however, the variations almost disappear at radial distances on the order of the fuel jet radius, indicating a fast damping of the oscillation in the spanwise direction.

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La región del espectro electromagnético comprendida entre 100 GHz y 10 THz alberga una gran variedad de aplicaciones en campos tan dispares como la radioastronomía, espectroscopíamolecular, medicina, seguridad, radar, etc. Los principales inconvenientes en el desarrollo de estas aplicaciones son los altos costes de producción de los sistemas trabajando a estas frecuencias, su costoso mantenimiento, gran volumen y baja fiabilidad. Entre las diferentes tecnologías a frecuencias de THz, la tecnología de los diodos Schottky juega un importante papel debido a su madurez y a la sencillez de estos dispositivos. Además, los diodos Schottky pueden operar tanto a temperatura ambiente como a temperaturas criogénicas, con altas eficiencias cuando se usan como multiplicadores y con moderadas temperaturas de ruido en mezcladores. El principal objetivo de esta tesis doctoral es analizar los fenómenos físicos responsables de las características eléctricas y del ruido en los diodos Schottky, así como analizar y diseñar circuitos multiplicadores y mezcladores en bandas milimétricas y submilimétricas. La primera parte de la tesis presenta un análisis de los fenómenos físicos que limitan el comportamiento de los diodos Schottky de GaAs y GaN y de las características del espectro de ruido de estos dispositivos. Para llevar a cabo este análisis, un modelo del diodo basado en la técnica de Monte Carlo se ha considerado como referencia debido a la elevada precisión y fiabilidad de este modelo. Además, el modelo de Monte Carlo permite calcular directamente el espectro de ruido de los diodos sin necesidad de utilizar ningún modelo analítico o empírico. Se han analizado fenómenos físicos como saturación de la velocidad, inercia de los portadores, dependencia de la movilidad electrónica con la longitud de la epicapa, resonancias del plasma y efectos no locales y no estacionarios. También se ha presentado un completo análisis del espectro de ruido para diodos Schottky de GaAs y GaN operando tanto en condiciones estáticas como variables con el tiempo. Los resultados obtenidos en esta parte de la tesis contribuyen a mejorar la comprensión de la respuesta eléctrica y del ruido de los diodos Schottky en condiciones de altas frecuencias y/o altos campos eléctricos. También, estos resultados han ayudado a determinar las limitaciones de modelos numéricos y analíticos usados en el análisis de la respuesta eléctrica y del ruido electrónico en los diodos Schottky. La segunda parte de la tesis está dedicada al análisis de multiplicadores y mezcladores mediante una herramienta de simulación de circuitos basada en la técnica de balance armónico. Diferentes modelos basados en circuitos equivalentes del dispositivo, en las ecuaciones de arrastre-difusión y en la técnica de Monte Carlo se han considerado en este análisis. El modelo de Monte Carlo acoplado a la técnica de balance armónico se ha usado como referencia para evaluar las limitaciones y el rango de validez de modelos basados en circuitos equivalentes y en las ecuaciones de arrastredifusión para el diseño de circuitos multiplicadores y mezcladores. Una notable característica de esta herramienta de simulación es que permite diseñar circuitos Schottky teniendo en cuenta tanto la respuesta eléctrica como el ruido generado en los dispositivos. Los resultados de las simulaciones presentados en esta parte de la tesis, tanto paramultiplicadores comomezcladores, se han comparado con resultados experimentales publicados en la literatura. El simulador que integra el modelo de Monte Carlo con la técnica de balance armónico permite analizar y diseñar circuitos a frecuencias superiores a 1 THz. ABSTRACT The terahertz region of the electromagnetic spectrum(100 GHz-10 THz) presents a wide range of applications such as radio-astronomy, molecular spectroscopy, medicine, security and radar, among others. The main obstacles for the development of these applications are the high production cost of the systems working at these frequencies, highmaintenance, high volume and low reliability. Among the different THz technologies, Schottky technology plays an important rule due to its maturity and the inherent simplicity of these devices. Besides, Schottky diodes can operate at both room and cryogenic temperatures, with high efficiency in multipliers and moderate noise temperature in mixers. This PhD. thesis is mainly concerned with the analysis of the physical processes responsible for the characteristics of the electrical response and noise of Schottky diodes, as well as the analysis and design of frequency multipliers and mixers at millimeter and submillimeter wavelengths. The first part of the thesis deals with the analysis of the physical phenomena limiting the electrical performance of GaAs and GaN Schottky diodes and their noise performance. To carry out this analysis, a Monte Carlo model of the diode has been used as a reference due to the high accuracy and reliability of this diode model at millimeter and submillimter wavelengths. Besides, the Monte Carlo model provides a direct description of the noise spectra of the devices without the necessity of any additional analytical or empirical model. Physical phenomena like velocity saturation, carrier inertia, dependence of the electron mobility on the epilayer length, plasma resonance and nonlocal effects in time and space have been analysed. Also, a complete analysis of the current noise spectra of GaAs and GaN Schottky diodes operating under static and time varying conditions is presented in this part of the thesis. The obtained results provide a better understanding of the electrical and the noise responses of Schottky diodes under high frequency and/or high electric field conditions. Also these results have helped to determine the limitations of numerical and analytical models used in the analysis of the electrical and the noise responses of these devices. The second part of the thesis is devoted to the analysis of frequency multipliers and mixers by means of an in-house circuit simulation tool based on the harmonic balance technique. Different lumped equivalent circuits, drift-diffusion and Monte Carlo models have been considered in this analysis. The Monte Carlo model coupled to the harmonic balance technique has been used as a reference to evaluate the limitations and range of validity of lumped equivalent circuit and driftdiffusion models for the design of frequency multipliers and mixers. A remarkable feature of this reference simulation tool is that it enables the design of Schottky circuits from both electrical and noise considerations. The simulation results presented in this part of the thesis for both multipliers and mixers have been compared with measured results available in the literature. In addition, the Monte Carlo simulation tool allows the analysis and design of circuits above 1 THz.

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There exist different ways for defining a welfare function. Traditionally, welfare economic theory foundation is based on the Net Present Value (NPV) calculation where the time dependent preferences of considered agents are taken into account. However, the time preferences, remains a controversial subject. Currently, the traditional approach employs a unique discount rate for various agents. Nevertheless, this way of discounting appears inconsistent with sustainable development. New research work suggests that the discount rate may not be a homogeneous value. The discount rates may change following the individual’s preferences. A significant body of evidence suggests that people do not behave following a constant discount rate. In fact, UK Government has quickly recognized the power of the arguments for time-varying rates, as it has done in its official guidance to Ministries on the appraisal of investments and policies. Other authors deal with not just time preference but with uncertainty about future income (precautionary saving). In a situation in which economic growth rates are similar across time periods, the rationale for declining social optimal discount rates is driven by the preferences of the individuals in the economy, rather than expectations of growth. However, these approaches have been mainly focused on long-term policies where intergenerational risks may appear. The traditional cost-benefit analysis (CBA) uses a unique discount rate derived from market interest rates or investment rates of return for discounting the costs and benefits of all social agents included in the CBA. However, recent literature showed that a more adequate measure of social benefit is possible by using different discount rates including inter-temporal preferences rate of users, private investment discount rate and intertemporal preferences rate of government. Actually, the costs of opportunity may differ amongst individuals, firms, governments, or society in general, as do the returns on savings. In general, the firms or operators require an investment rate linked to the current return on savings, while the discount rate of consumers-users depends on their time preferences with respect of the current and the future consumption, as well as society can take into account the intergenerational well-being, adopting a lower discount rate for today’s generation. Time discount rate of social actors (users, operators, government and society) places a lower value in a future gain, but the uncertainty about future income strongly determines the individual preferences. These time and uncertainty depends on preferences and should be integrated into a transport policy formulation that may have significant social impacts. The discount rate of a user cannot be the same than the operator’s discount rate. The preferences of both are different. In addition, another school of thought suggests that people, such as a social group, may have different attitudes towards future costs and benefits. Particularly, the users have different discount rates related to their income. Some research work tried to modify user discount rates using a compensating weight which represents the inverse of household income level. The inter-temporal preferences are a proxy of the willingness to pay during the time. Its consideration is important in order to make acceptable or not a policy or investment

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En las últimas décadas, ha aumentado el interés de la investigación sobre el desarrollo de la coordinación motriz en la adolescencia por ser una etapa sensible, crítica y crucial para la adquisición de hábitos y conductas saludables de vida. Estos estudios han mostrado que la adquisición de unos niveles óptimos de coordinación y competencia motriz van a ser determinantes para el bienestar del adolescente y van a estar relacionados e influidos por otras dimensiones del desarrollo de la persona. Recientes investigaciones han sacado a la luz datos alarmantes sobre el aumento de problemas de coordinación motriz en la población infantil y adolescente (Cantell, Smyth y Ahonen, 1994; Gómez, 2004; Ruiz, Graupera, Gutiérrez y Miyahara, 2003; Sudgen y Chambers, 2005) donde abrocharse los botones de una camisa o correr de forma armónica puede ser todo un mundo lleno de dificultades y consecuencias sobre otras dimensiones del desarrollo (Ramón-Otero y Ruiz, 2015). Estos problemas han sido tratados por investigadores como una “dificultad oculta” (Gómez, Ruiz y Mata, 2006), cuya manifestación está presente en las actividades de la vida cotidiana, en contextos deportivos, en juegos y/o en la clase de Educación Física (Ruiz, 2004). La preocupación por estas dificultades se ha extendido a nivel internacional, creando todo un campo de investigación que estudia el diagnóstico de éstos problemas, conocido bajo las siglas DCD (Developmental Coordination Disorder). El presente estudio se centra en la etapa adolescente, periodo de transición entre la etapa infantil y adulta, caracterizada por numerosos cambios biológicos, cognitivos y socioemocionales (Santrock, 2005), que van a determinar la adaptación con el entorno (Gallahue, Ozmun y Goodway, 2011; Gómez, Ruiz, y Mata, 2006). El propósito principal del estudio es analizar el desarrollo de la coordinación motriz en la etapa adolescente investigando las diferencias de género y de edad en relación con variables psicosociales, los hábitos de práctica y las variables antropométricas. El diseño de la investigación se estructura en dos estudios. El primero de ellos, de carácter transversal, analizó una muestra representativa de 1.966 adolescentes de 1º a 4º de la ESO. El segundo, de naturaleza longitudinal, utilizó un grupo de 89 adolescentes del estudio transversal los cuales fueron estudiados durante 4 años, desde los 12 a los 15 años. Los mismos instrumentos fueron utilizados en ambos estudios: el Test Sportcomp para la evaluación de la coordinación motriz, el test AMPET4 para valorar la motivación de logro para el aprendizaje en Educación Física, el inventario HBSC para conocer los hábitos saludables sobre la práctica de actividad física y, por ultimo, se utilizó un estadiómetro para obtener el peso y la altura y así calcular el índice de masa corporal (IMC). La toma de datos del Estudio Transversal se realizó en 2 cursos académicos (2011/12 - 2012/13), en la cual se requirieron 3 sesiones coincidiendo con la clase de Educación Física. En la primera sesión, se evaluó la coordinación motriz. En la segunda se aplicaron los cuestionarios (AMPET4 y HBSC) y, en la última sesión se midió el peso y la altura en un espacio reservado al estadiómetro. El análisis de datos fue descriptivo y diferencial de cada una de las variables estudiadas: motoras, psicosociales, de hábitos de práctica de actividad física y antropométricas. Asimismo, se llevaron a cabo pruebas de análisis univariante y multivariante, calculando el valor-p y las pruebas de efecto. Respecto al Estudio Longitudinal, la toma de datos se llevó cabo durante 4 años desde el 2011 al 2014. La evaluación de la coordinación motriz se realizó en cada uno de los 4 años. Sin embargo, los 2 cuestionarios y las medidas antropométricas fueron evaluadas en el primer y cuarto año. Los análisis de datos fueron descriptivos y comparativos entre las variables analizadas. En el caso de la coordinación motriz, se realizaron las pruebas de medidas repetidas y, en el caso de las demás variables analizadas, se realizaron Prueba T para muestras relacionadas. Los resultados globales mostraron que el índice motor en el Estudio Transversal fue progresivo en el conjunto de chicos. Sin embargo, en las chicas, el rendimiento se estabiliza a partir de los 13 años. En el caso del Estudio Longitudinal, este índice se estabiliza en los 3 primeros años y a la edad de los 14, es cuando comienzan a acusarse las diferencias de género. En el caso de los hombres el rendimiento mejora y, por el contrario, en las mujeres empeora. En el Estudio Transversal, el análisis de varianza mostraron diferencias en función de la edad [F(7, 1958) = 220.70, p < .001; η2 = .101], del género [F(7, 1958) = 29.76, p < .001; η2 = .044], así como en la interacción entre ambos [F(7, 1958)= 11.90, p < .001; η2 = .018]. Únicamente aparecieron diferencias significativas con la edad en todos los grupos de hombres, excepto entre 14 y 15 años. En el Longitudinal, los contrastes multivariados mostraron que no hubo diferencias sgnificativas en el tiempo [F(3,85) = .05, p = .987, η2= .002] mostrando un nivel de coordinación estable a lo largo de los años, aunque existieron diferencias entre chicos y chicas [F(3,85) = 4.64 p = .005] con un tamaño de efecto destacable (η2 = .141). En cuanto a la motivación de logro para prender en Educación Física, en ambos estudios, los chicos fueron los que obtuvieron puntuaciones más elevadas en todas las dimensiones positivas del test (compromiso de aprendizaje, competencia autopercibida y comparada). Sin embargo, en la dimensión negativa del test, la referida a la ansiedad y al agobio ante el fracaso, fueron las chicas las que puntuaron más alto. En el Estudio Transversal, los resultados mostraron diferencias significativas en todas las dimensiones del AMPET4 en función del nivel de coordinación motriz: compromiso con el aprendizaje [F(2, 1644) = 8.66, p < .001; η2 = .010], competencia autopercibida [F(2, 1644) = 50.94, p < .001; η2 = .048], competencia comparada [F(2, 1644) = 41.56, p < .001, η2 = .020] y ansiedad [F(2, 1644) = 16.67, p < .001, η2 = .058]. En este sentido, los grupos de mejor nivel de coordinación motriz, fueron los que mayor puntuación obtuvieron en las dimensiones positivas y los que menor, en la negativa. En el Estudio Longitudinal, también se encontraron diferencias entre el primer y cuarto año de estudio en todas las dimensiones, excepto en competencia motriz autopercibida. Estas diferencias se tradujeron en una disminución en las 3 variables significativas del primer al cuarto año. Respecto al inventario HBSC, en el Estudio Longitudinal, la prueba T mostró únicamente la existencia de diferencias significativas entre el primer y cuarto año en 2 de los 11 ítems: percepción de la forma física (p = .006) y percepción de la salud (p = .047), los cuales disminuyeron en el intervalo de tiempo del estudio. En el Transversal, las diferencias se observaron en función del género (p < .001) y de la edad (p < .001). Asimismo, se mostraron diferencias significativas en todos los ítems respecto al nivel de coordinación motriz, excepto en 2 de ellos: frecuencia tiempo libre con los amigos fuera del colegio (p = .580) y facilidad para hacer amigos en el centro escolar (p = .098). Por último, en las variables antropométricas, los resultados del Estudio Transversal y Longitudinal coinciden tanto en la estatura como en el peso, apuntando, que en ambos estudios, se produce un aumento progresivo tanto en chicos como en chicas a medida que se avanza en edad. Concretamente en el Transversal, estas diferencias en la edad se encuentran en todos los grupos en ambos géneros, excepto en el conjunto de chicas entre los 14 y los 15 años. Asimismo, ambos estudios coincidieron en que tanto las ganancias en cm y kg, como las puntuaciones medias, fueron mayores en los chicos que en las chicas. Respecto al IMC, los 2 estudios coincidieron en que la evolución es paralela, y tal y como apuntan los resultados del Transversal, no se encontraron diferencias ni en la edad (p = 792) ni en el género (p = 284). No obstante, el Longitudinal apuntó únicamente diferencias significativas entre el primer y cuarto año en el conjunto de los hombres [t(41) = -4.01, p < .001]. Finalmente, y en relación con los niveles de coordinación motriz, hubo diferencias significativas en relación con el IMC (p = .012), mostrando como el grupo de peso normal coincide con puntuaciones óptimas de coordinación motriz. A modo de conclusiones, el presente estudio revela cómo la adquisición de un nivel de coordinación óptimo va a ser fundamental para el desarrollo psicosocial, para el desarrollo de hábitos saludables de práctica y para mantener un IMC dentro de la normalidad para el género y la edad. De esta manera, el desarrollo de la coordinación motriz será un aspecto fundamental para lograr un estado de bienestar físico y mental, y unos hábitos favorables para la práctica de actividad física. ABSTRACT In the past couple of decades, adolescence stage in motor coordination gained significant interest in research especially due to its sensitive and critical importance to achieving a healthy life style. These studies observed how to acquire optimum levels of coordination and motor competence, which proved crucial to the quality of the adolescent stage in addition to being influenced by other dimensions of development for each individual. Recent research shed light to an alarming set of data, which showed increased motor coordination problems in children and adolescents (Cantell, Smyth & Ahonen, 1994; Gómez, 2004; Ruiz, Graupera, Gutierrez & Miyahara, 2003; Sugden & Chambers, 2005). For instance, even to the extent that buttoning a shirt or running in a harmonic form can lead to a whole set of consequences and difficulties on the development stage. Researchers have addressed such problems in various studies such as “dificultad oculta” (Gomez, Ruiz & Mata, 2006), which literally translates as “hidden trouble”. The studies are evidently present in the activities of daily life, sporting contexts, games and/or Physical Education (Ruiz, 2004). Concern about these difficulties spread internationally, creating a whole framework research studying the diagnosis of these problems, known under the acronym DCD (Developmental Coordination Disorder). The study focuses on the adolescent stage, transition period between childhood and adulthood characterized by numerous biological, cognitive and socio-emotional changes (Santrock, 2005), which interestingly determines an individual´s adaptation to the environment (Gallahue, Ozmun & Goodway, 2011; Gomez, Ruiz & Mata, 2006). The main purpose of the study is to analyse the development of motor coordination in the adolescent stage investigating gender differences and age in relation to psychological variables, physical activity habits and anthropometric variables. The research design is structured in two studies. The first (transversal nature), analyses a representative sample of 1,966 adolescents from 1st to 4th of Secondary Education School. The second (longitudinal nature) used a group of 89 teenagers from cross-sectional study, which were studied for four years, from 12 to 15 years. The same instruments were used in both studies, namely; “Sportcomp Test” used to evaluate of motor coordination; “AMPET4 Test” which assesses the motivational achievement of learning Physical Education; “HBSC Inventory” to find out the healthy habits gained from physical activities; And finally a “stadiometer” was used to obtain the weight and height and thus calculate the body mass index (BMI). The data collection of the cross-sectional Study was conducted in two academic years (2011/12 - 2012/13), in which 3 sessions coinciding with the Physical Education level are required. In the first session, motor coordination was evaluated; questionnaires were applied in the second session (AMPET4 and HBSC); and in the last session the weight and height were measured in a reserved space for the “stadiometer”. Notably, data analysis was descriptive and differential in each of the variable studies: motor, psychological, practical and anthropometric habits of physical activity. Thus the tests were conducted in a univariate and multivariate analysis, calculating the p-value and effect tests. Regarding the Longitudinal Study, data collection was carried out during four years from 2011 to 2014 inclusively. The assessment of motor coordination was performed on each of the four years, however, the 2 questionnaires and anthropometric measures were evaluated in the first and fourth year. Data analyses were also descriptive and comparative among the variables that were put to the test. In the case of motor coordination tests, they were done on repeated measures, whilst, in the case of other variables analysed, they were accomplished through T Tests under comparable samples. The overall results showed that the engine Motor Index in Study 1 was progressive in all male gender studies, however in the females the performance remained constant after reaching 13 years of age. For the Longitudinal Study, this index is stabilized in the first 3 years and at the age of 14 is when the gender differences take place. In the case of males, the performance improves, however, in females worsens. The cross-sectional Study, analysis of variance showed differences in terms of age [F(7, 1958) = 220.70, p < .001; η2 = .101], gender [F(7, 1958) = 29.76, p <.001; η2 = .044], as well as their interaction [F(7, 1958) = 11.90, p <.001; η2 = .018]. They only show significant differences in respect to age in the male set sample, in all groups except between 14 and 15 years old. In the Longitudinal, the multivariate contrasts showed no significant differences in time [F(3,85) = 0.05, p = 0.987, η2 = 0.002] showing a stable level of coordination over the years, but if there were differences between both genders [F(3,85) = 4.64, p = .005] it took place with a noteworthy effect size (η2 = .141). In regards, to the Motivational Achievement for learning Physical Education, in both studies the male sample administered obtained higher scores on all the positive dimensions of the test (commitment to learning, self-assessed competence, and comparable competence). However, on the negative assessment side, namely, anxiety and fear of failure, the female sample scored higher than the male one. In Study 1, the multivariate analysis showed significant differences between the psychosocial dimensions and levels of motor coordination with moderate to significant effect [Lambada de Wilks = .931, F(8, 3282) = 14.99; p = <0.001; η2 = .035]. By the same token, the groups with the best level of motor coordination were the highest scoring ones in the positive dimensions, whilst the lower performing ones, performed better in the negative dimension. In the longitudinal study, there is also differences were also found between the first and fourth years of study in all dimensions, except in self-perceived motor competition. These differences resulted in a significant decrease in the 3 variables from first to fourth year. Regarding, the “HBSC Inventory”, the T test in the longitudinal study showed uniquely the existence of significant differences between the first and fourth year in 2 of the 11 items: perception of physical fitness (p = .006) and perceived health (p = 047), which diminished in the interval time of the study. In the Cross-sectional study, the se differences were also observed in gender (p < .001) and age (p < .001). Similarly, they showed significant differences in all items in respect to the motor coordination level, except in 2 of them; frequency of free time with friends outside of school (p = .580) and the ease to make friends at the educational centre (p = 098). And last but not least, the anthropometric variables, both the results of the Transversal and Longitudinal Study matched both height and weight, pointing out that in both studies a gradual increase in both genders, as they grow older. Notably in the Cross-sectional, these differences in age are found in all groups in both genders, except for the set of girls between 14 and 15 years. Thus both studies concluded that both gains in cm and kg and the mean scores were higher amongst males compared to females. Regarding BMI, the 2 studies concluded that the evolution is parallel, and as pointed cross-sectional study there isn’t differences found in age (p = 792) or in gender (p = 284). However, the Longitudinal study uniquely shows significant difference between the first and fourth year for male set sample [t (41) = -4.01, p < .001]. Finally, in relation to levels of motor coordination, there were significant differences in relation to BMI (p = .012), showing how the “normal weight group” matches the optimal scores of motor coordination. In conclusion, this study reveals how the acquisition of an optimal level of coordination is vital for psychological development, to develop and practice healthy habits, and to maintain a BMI within the normal range for age and gender. Therefore, the development of motor coordination is fundamental to achieving a state of physical and mental wellbeing, and preferable habits to pursuing physical activity.

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El actual contexto de fabricación, con incrementos en los precios de la energía, una creciente preocupación medioambiental y cambios continuos en los comportamientos de los consumidores, fomenta que los responsables prioricen la fabricación respetuosa con el medioambiente. El paradigma del Internet de las Cosas (IoT) promete incrementar la visibilidad y la atención prestada al consumo de energía gracias tanto a sensores como a medidores inteligentes en los niveles de máquina y de línea de producción. En consecuencia es posible y sencillo obtener datos de consumo de energía en tiempo real proveniente de los procesos de fabricación, pero además es posible analizarlos para incrementar su importancia en la toma de decisiones. Esta tesis pretende investigar cómo utilizar la adopción del Internet de las Cosas en el nivel de planta de producción, en procesos discretos, para incrementar la capacidad de uso de la información proveniente tanto de la energía como de la eficiencia energética. Para alcanzar este objetivo general, la investigación se ha dividido en cuatro sub-objetivos y la misma se ha desarrollado a lo largo de cuatro fases principales (en adelante estudios). El primer estudio de esta tesis, que se apoya sobre una revisión bibliográfica comprehensiva y sobre las aportaciones de expertos, define prácticas de gestión de la producción que son energéticamente eficientes y que se apoyan de un modo preeminente en la tecnología IoT. Este primer estudio también detalla los beneficios esperables al adoptar estas prácticas de gestión. Además, propugna un marco de referencia para permitir la integración de los datos que sobre el consumo energético se obtienen en el marco de las plataformas y sistemas de información de la compañía. Esto se lleva a cabo con el objetivo último de remarcar cómo estos datos pueden ser utilizados para apalancar decisiones en los niveles de procesos tanto tácticos como operativos. Segundo, considerando los precios de la energía como variables en el mercado intradiario y la disponibilidad de información detallada sobre el estado de las máquinas desde el punto de vista de consumo energético, el segundo estudio propone un modelo matemático para minimizar los costes del consumo de energía para la programación de asignaciones de una única máquina que deba atender a varios procesos de producción. Este modelo permite la toma de decisiones en el nivel de máquina para determinar los instantes de lanzamiento de cada trabajo de producción, los tiempos muertos, cuándo la máquina debe ser puesta en un estado de apagada, el momento adecuado para rearrancar, y para pararse, etc. Así, este modelo habilita al responsable de producción de implementar el esquema de producción menos costoso para cada turno de producción. En el tercer estudio esta investigación proporciona una metodología para ayudar a los responsables a implementar IoT en el nivel de los sistemas productivos. Se incluye un análisis del estado en que se encuentran los sistemas de gestión de energía y de producción en la factoría, así como también se proporcionan recomendaciones sobre procedimientos para implementar IoT para capturar y analizar los datos de consumo. Esta metodología ha sido validada en un estudio piloto, donde algunos indicadores clave de rendimiento (KPIs) han sido empleados para determinar la eficiencia energética. En el cuarto estudio el objetivo es introducir una vía para obtener visibilidad y relevancia a diferentes niveles de la energía consumida en los procesos de producción. El método propuesto permite que las factorías con procesos de producción discretos puedan determinar la energía consumida, el CO2 emitido o el coste de la energía consumida ya sea en cualquiera de los niveles: operación, producto o la orden de fabricación completa, siempre considerando las diferentes fuentes de energía y las fluctuaciones en los precios de la misma. Los resultados muestran que decisiones y prácticas de gestión para conseguir sistemas de producción energéticamente eficientes son posibles en virtud del Internet de las Cosas. También, con los resultados de esta tesis los responsables de la gestión energética en las compañías pueden plantearse una aproximación a la utilización del IoT desde un punto de vista de la obtención de beneficios, abordando aquellas prácticas de gestión energética que se encuentran más próximas al nivel de madurez de la factoría, a sus objetivos, al tipo de producción que desarrolla, etc. Así mismo esta tesis muestra que es posible obtener reducciones significativas de coste simplemente evitando los períodos de pico diario en el precio de la misma. Además la tesis permite identificar cómo el nivel de monitorización del consumo energético (es decir al nivel de máquina), el intervalo temporal, y el nivel del análisis de los datos son factores determinantes a la hora de localizar oportunidades para mejorar la eficiencia energética. Adicionalmente, la integración de datos de consumo energético en tiempo real con datos de producción (cuando existen altos niveles de estandarización en los procesos productivos y sus datos) es esencial para permitir que las factorías detallen la energía efectivamente consumida, su coste y CO2 emitido durante la producción de un producto o componente. Esto permite obtener una valiosa información a los gestores en el nivel decisor de la factoría así como a los consumidores y reguladores. ABSTRACT In today‘s manufacturing scenario, rising energy prices, increasing ecological awareness, and changing consumer behaviors are driving decision makers to prioritize green manufacturing. The Internet of Things (IoT) paradigm promises to increase the visibility and awareness of energy consumption, thanks to smart sensors and smart meters at the machine and production line level. Consequently, real-time energy consumption data from the manufacturing processes can be easily collected and then analyzed, to improve energy-aware decision-making. This thesis aims to investigate how to utilize the adoption of the Internet of Things at shop floor level to increase energy–awareness and the energy efficiency of discrete production processes. In order to achieve the main research goal, the research is divided into four sub-objectives, and is accomplished during four main phases (i.e., studies). In the first study, by relying on a comprehensive literature review and on experts‘ insights, the thesis defines energy-efficient production management practices that are enhanced and enabled by IoT technology. The first study also explains the benefits that can be obtained by adopting such management practices. Furthermore, it presents a framework to support the integration of gathered energy data into a company‘s information technology tools and platforms, which is done with the ultimate goal of highlighting how operational and tactical decision-making processes could leverage such data in order to improve energy efficiency. Considering the variable energy prices in one day, along with the availability of detailed machine status energy data, the second study proposes a mathematical model to minimize energy consumption costs for single machine production scheduling during production processes. This model works by making decisions at the machine level to determine the launch times for job processing, idle time, when the machine must be shut down, ―turning on‖ time, and ―turning off‖ time. This model enables the operations manager to implement the least expensive production schedule during a production shift. In the third study, the research provides a methodology to help managers implement the IoT at the production system level; it includes an analysis of current energy management and production systems at the factory, and recommends procedures for implementing the IoT to collect and analyze energy data. The methodology has been validated by a pilot study, where energy KPIs have been used to evaluate energy efficiency. In the fourth study, the goal is to introduce a way to achieve multi-level awareness of the energy consumed during production processes. The proposed method enables discrete factories to specify energy consumption, CO2 emissions, and the cost of the energy consumed at operation, production and order levels, while considering energy sources and fluctuations in energy prices. The results show that energy-efficient production management practices and decisions can be enhanced and enabled by the IoT. With the outcomes of the thesis, energy managers can approach the IoT adoption in a benefit-driven way, by addressing energy management practices that are close to the maturity level of the factory, target, production type, etc. The thesis also shows that significant reductions in energy costs can be achieved by avoiding high-energy price periods in a day. Furthermore, the thesis determines the level of monitoring energy consumption (i.e., machine level), the interval time, and the level of energy data analysis, which are all important factors involved in finding opportunities to improve energy efficiency. Eventually, integrating real-time energy data with production data (when there are high levels of production process standardization data) is essential to enable factories to specify the amount and cost of energy consumed, as well as the CO2 emitted while producing a product, providing valuable information to decision makers at the factory level as well as to consumers and regulators.