3 resultados para Illinois. Military and Naval Department.
em Universidad Politécnica de Madrid
Resumo:
El motivo de abordar esta Tesis responde al hecho personal de haber vivido históricamente momentos cumbre de la Construcción Naval en España y no dejar de plantearme, a pesar de mi distancia del sector desde el punto de vista profesional, en las opciones de futuro para volver a ser competitivos en un sector que ha tenido un peso tan importante en la economía española, y que tanto ha ilusionado a centenares de profesionales y compañeros a lo largo de muchas décadas con el optimismo de estar aportando valor para que España fuera competitiva. A lo largo de los últimos años, y la relación con el ámbito de la dirección de Empresas desde el punto de vista de una Escuela de Negocios, así como el contacto con enfoques estratégicos en sectores muy diversos me animó a plantearme la Tesis con el objetivo de reflejar el estado actual del sector y poder valorar alternativas de futuro para la Construcción Naval española, aun sabiendo que son muchos los “maestros” realmente autorizados en nuestros país, con amplios conocimientos y experiencia, que muchas veces, a pesar de las propuestas y de los esfuerzos que han realizado para impulsar el sector, se han encontrado con situaciones adversas, bien de tipo económico, social‐laboral, político ‐a nivel nacional, europeo o global‐, etc., que han impedido un fortalecimiento del sector como todos hubiéramos deseado. La presión histórica ejercida por los países competidores en Construcción naval del ámbito asiático y lejano oriente, así como los compromisos derivados de las Directivas europeas, han obligado al sector de la Construcción Naval en España a buscar unos nuevos posicionamientos estratégicos presentes y, sobre todo, de futuro. Partiendo de un análisis del sector naval, tanto del mercado nacional como del internacional, con especial foco en los países líderes, se plantea investigar, siguiendo el modelo de Porter, las fuerzas competitivas que han influido en estas últimas décadas y que han conducido a la situación actual, valorando la estructura competitiva, el entorno relevante y los efectos de la globalización, con las amenazas de los nuevos y actuales competidores y las barreras existentes. Para abordar esta investigación se ha realizado un análisis del sector naval con la siguiente metodología: 1. Análisis del estado actual de la construcción naval en España. 2. Análisis del estado actual de la construcción naval en el mundo. 3. Estudio de la demanda en el mercado y evolución de la misma en los últimos años: muy centrada en los países líderes y más competitivos. 4. Estudio de las perspectivas de negocio en el sector marítimo y oceánico: estudio particular del transporte marítimo y una comparativa con la explotación de recursos oceánicos. Finalmente se decidió no abordar por falta de datos de futuro las construcciones militares. 5. Estudio de características de la industria naval española y capacidad de los astilleros. Se ha focalizado especialmente en la construcción para valorar la capacidad de futuro. 6. Análisis de fuerzas competitivas de la industria naval española a partir del modelo de Porter. En esta parte se incluyen alguno de los factores críticos externos e internos que ayudan a identificar barreras y estrategias en el entorno de la construcción naval como sector global. 7. Identificación de las oportunidades de negocio hacia el 2050. 8. Alternativas para una estrategia competitiva de actuación frente a las oportunidades de futuro en el 2050. Con esta Tesis se aporta un estudio competitivo actualizado, de acuerdo con el modelo de Porter, con el fin de proponer una posible estrategia competitiva de futuro, que posicione competitivamente la industria naval y el sector marítimo en España en las próximas décadas. ABSTRACT The reason for addressing this thesis responds to my personal experience about having lived historical moments summit Shipbuilding in Spain. Despite my distance from this industry from a professional point of view, I have never stopped wonder myself which are the options for the future to become competitive in an industry that has had such an important weight in the Spanish economy, which has excited so hundreds of professionals and peers through many decades with optimism to be adding value to Spain in order to be competitive again. Over recent years, and the relationship with the field of business management from the point of view of a business school, as well as contact with strategic approaches in diverse sectors encouraged me to wonder Thesis order to reflect the current state of the sector and to evaluate future alternatives for the Spanish Shipbuilding, knowing that many "teachers" really allowed in our country, with extensive knowledge and experience that often, despite proposals and the efforts that have been made to boost the sector, have met with adverse situations, whether economic, social and labor, political kind ‐at national, European or global‐level, etc., that have prevented a strengthening of all sectors we wished. The historical pressure from competing countries in Shipbuilding Asian area and Far East, as well as commitments arising from EU directives, have forced the shipbuilding industry in Spain to seek a new strategic positions present and, above all, future. Starting from an analysis of the shipbuilding sector, both national and international market, with special focus on the leading countries, we propose to investigate, following the model of Porter, the competitive forces that have influenced recent decades and have led to the current situation, assessing the competitive structure of the relevant environment and the effects of globalization, with the threat of new and existing competitors and barriers. To address this research has analyzed the naval sector with the following methodology: 1. Analysis of the current state of shipbuilding in Spain. 2. Analysis of the current state of shipbuilding in the world. 3. Study of the demand in the market and evolution of the same in recent years: very focused on the leading and most competitive countries. 4. Study of business prospects in the maritime and oceanic sector: private study of maritime transport and a comparison with the exploitation of ocean resources. Finally it was decided not to address a lack of data future military construction. 5. Study of characteristics of the Spanish shipbuilding and shipyard capacity. It is particularly focused on building the capacity to assess future. 6. Analysis of competitive forces of the Spanish shipbuilding industry from the model of Porter. In this part they include some critics of the external and internal factors that help identify barriers and strategies in the environment of global shipbuilding sector. 7. Identification of business opportunities by 2050. 8. Alternatives to a competitive strategy of action against future opportunities in 2050. This thesis has sought to provide a competitive study updated according to Porter's model, in order to propose a possible future competitive strategy to reach a competitive position at the shipbuilding industry and the maritime sector in Spain in the coming decades. The historical pressure from competing countries in the Asian sphere Shipbuilding and Far East, as well as commitments arising from EU directives have forced the shipbuilding industry in Spain to seek a new strategic positioning. Starting from an analysis of the shipbuilding sector, both national and international market, with a special focus on the leading countries, it is proposed to analyze, following the model of Porter, the competitive forces that have influenced in recent decades and have led to the current situation, studying the competitive structure of the relevant environment and the effects of globalization, with the threat of new and existing competitors and barriers. It concludes with a forecast of future market and business opportunities arising in the global environment of maritime and naval Industry, in order to propose a possible competitive strategy for the near future, which could help to achieve a competitive position on the shipbuilding and maritime sector in Spain for the coming decades.
Resumo:
This Doctoral Thesis entitled Contribution to the analysis, design and assessment of compact antenna test ranges at millimeter wavelengths aims to deepen the knowledge of a particular antenna measurement system: the compact range, operating in the frequency bands of millimeter wavelengths. The thesis has been developed at Radiation Group (GR), an antenna laboratory which belongs to the Signals, Systems and Radiocommunications department (SSR), from Technical University of Madrid (UPM). The Radiation Group owns an extensive experience on antenna measurements, running at present four facilities which operate in different configurations: Gregorian compact antenna test range, spherical near field, planar near field and semianechoic arch system. The research work performed in line with this thesis contributes the knowledge of the first measurement configuration at higher frequencies, beyond the microwaves region where Radiation Group features customer-level performance. To reach this high level purpose, a set of scientific tasks were sequentially carried out. Those are succinctly described in the subsequent paragraphs. A first step dealed with the State of Art review. The study of scientific literature dealed with the analysis of measurement practices in compact antenna test ranges in addition with the particularities of millimeter wavelength technologies. Joint study of both fields of knowledge converged, when this measurement facilities are of interest, in a series of technological challenges which become serious bottlenecks at different stages: analysis, design and assessment. Thirdly after the overview study, focus was set on Electromagnetic analysis algorithms. These formulations allow to approach certain electromagnetic features of interest, such as field distribution phase or stray signal analysis of particular structures when they interact with electromagnetic waves sources. Properly operated, a CATR facility features electromagnetic waves collimation optics which are large, in terms of wavelengths. Accordingly, the electromagnetic analysis tasks introduce an extense number of mathematic unknowns which grow with frequency, following different polynomic order laws depending on the used algorithmia. In particular, the optics configuration which was of our interest consisted on the reflection type serrated edge collimator. The analysis of these devices requires a flexible handling of almost arbitrary scattering geometries, becoming this flexibility the nucleus of the algorithmia’s ability to perform the subsequent design tasks. This thesis’ contribution to this field of knowledge consisted on reaching a formulation which was powerful at the same time when dealing with various analysis geometries and computationally speaking. Two algorithmia were developed. While based on the same principle of hybridization, they reached different order Physics performance at the cost of the computational efficiency. Inter-comparison of their CATR design capabilities was performed, reaching both qualitative as well as quantitative conclusions on their scope. In third place, interest was shifted from analysis - design tasks towards range assessment. Millimetre wavelengths imply strict mechanical tolerances and fine setup adjustment. In addition, the large number of unknowns issue already faced in the analysis stage appears as well in the on chamber field probing stage. Natural decrease of dynamic range available by semiconductor millimeter waves sources requires in addition larger integration times at each probing point. These peculiarities increase exponentially the difficulty of performing assessment processes in CATR facilities beyond microwaves. The bottleneck becomes so tight that it compromises the range characterization beyond a certain limit frequency which typically lies on the lowest segment of millimeter wavelength frequencies. However the value of range assessment moves, on the contrary, towards the highest segment. This thesis contributes this technological scenario developing quiet zone probing techniques which achieves substantial data reduction ratii. Collaterally, it increases the robustness of the results to noise, which is a virtual rise of the setup’s available dynamic range. In fourth place, the environmental sensitivity of millimeter wavelengths issue was approached. It is well known the drifts of electromagnetic experiments due to the dependance of the re sults with respect to the surrounding environment. This feature relegates many industrial practices of microwave frequencies to the experimental stage, at millimeter wavelengths. In particular, evolution of the atmosphere within acceptable conditioning bounds redounds in drift phenomena which completely mask the experimental results. The contribution of this thesis on this aspect consists on modeling electrically the indoor atmosphere existing in a CATR, as a function of environmental variables which affect the range’s performance. A simple model was developed, being able to handle high level phenomena, such as feed - probe phase drift as a function of low level magnitudes easy to be sampled: relative humidity and temperature. With this model, environmental compensation can be performed and chamber conditioning is automatically extended towards higher frequencies. Therefore, the purpose of this thesis is to go further into the knowledge of millimetre wavelengths involving compact antenna test ranges. This knowledge is dosified through the sequential stages of a CATR conception, form early low level electromagnetic analysis towards the assessment of an operative facility, stages for each one of which nowadays bottleneck phenomena exist and seriously compromise the antenna measurement practices at millimeter wavelengths.
Resumo:
La presente tesis doctoral con título "Contribution to Active Multi-Beam Reconfigurable Antennas for L and S Bands" ha sido desarrollada por el investigador ingeniero de telecomunicación estudiante de doctorado Javier García-Gasco Trujillo en el Grupo de Radiación del Departamento de Señales, Sistemas y Radiocomunicaciones de la ETSI de Telecomunicación de la Universidad Politécnica de Madrid bajo la dirección de los doctores Manuel Sierra Pérez y José Manuel Fernández González. Durante décadas, el desarrollo de antenas de apuntamiento electrónico ha estado limitado al área militar. Su alto coste y su gran complejidad eran los mayores obstáculos que frenaban la introducción de esta tecnología en aplicaciones comerciales de gran escala. La reciente aparición de componentes de estado sólido prácticos, fiables, y de bajo coste ha roto la barrera del coste y ha reducido la complejidad, haciendo que las antenas reconfigurables de apuntamiento electrónico sean una opción viable en un futuro cercano. De esta manera, las antenas phased array podrían llegar a ser la joya de la corona que permitan alcanzar los futuros retos presentes en los sistemas de comunicaciones tanto civiles como militares. Así pues, ahora es el momento de investigar en el desarrollo de antenas de apuntamiento electrónico de bajo coste, donde los nuevos componentes de estado sólido comerciales forman el núcleo duro de la arquitectura. De esta forma, el estudio e implementación de estos arrays de antenas activas de apuntamiento electrónico capaces de controlar la fase y amplitud de las distintas señales implicadas es uno de los grandes retos de nuestro tiempo. Esta tesis se enfrenta a este desafío, proponiendo novedosas redes de apuntamiento electrónico e innovadores módulos de transmisión/recepción (T/R) utilizando componentes de estado sólido de bajo coste, que podrán integrar asequibles antenas activas reconfigurables multihaz en bandas L y S. En la primera parte de la tesis se realiza una descripción del estado del arte de las antenas phased array, incluyendo su base teórica y sus ventajas competitivas. Debido a que las contribuciones obtenidas en la presente tesis han sido realizadas dentro de distintos proyectos de investigación, donde se han manejada antenas de simple/doble polarización circular y simple/doble banda de trabajo, se describen detenidamente los dos proyectos más relevantes de la investigación: el radar de basura espacial de la Agencia Espacial Europea (ESA), Space Situational Awareness (SSA); y la estación base de seguimiento y control de satélites de órbita baja, GEOdesic Dome Array (GEODA). Sin lugar a dudas, los dispositivos desfasadores son uno de los componentes clave en el diseño de antenas phased arrays. Recientemente se ha observado una gran variación en el precio final de estos dispositivos, llegando en ocasiones a límites inasequibles. Así pues, se han propuesto distintas técnicas de conformación de haz alternativas a la utilización de componentes desfasadores comerciales: el desfasador de líneas conmutadas, la red de haz conmutado, y una novedosa red desfasadora divisora/combinadora de potencia. Para mostrar un uso práctico de las mismas, se ha propuesto el uso de las tres alternativas para el caso práctico del subarray de cinco elementos de la celda GEODA-SARAS. Tras dicho estudio se obtiene que la novedosa red desfasadora divisora/combinadora de potencia propuesta es la que mejor relación comportamiento/coste presenta. Para verificar su correcto funcionamiento se construye y mide los dos bloques principales de los que está compuesta la red total, comprobando que en efecto la red responde según lo esperado. La estructura más simple que permite realizar un barrido plano es el array triangular de tres elementos. Se ha realizado el diseño de una nueva red multihaz que es capaz de proporcionar tres haces ortogonales en un ángulo de elevación _0 y un haz adicional en la dirección broadside utilizando el mencionado array triangular de tres elementos como antena. En primer lugar se realizar una breve introducción al estado del arte de las redes clásicas multihaz. Así mismo se comentan innovadores diseños de redes multihaz sin pérdidas. El estudio da paso a las redes disipativas, de tal forma que se analiza su base matemática y se muestran distintas aplicaciones en arrays triangulares de tres elementos. Finalmente, la novedosa red básica propuesta se presenta, mostrando simulaciones y medidas de la misma para el caso prácticoo de GEODA. También se ha diseñado, construido y medido una red compuesta por dos redes básicas complementarias capaz de proporcionar seis haces cuasi-ortogonales en una dirección _0 con dos haces superpuestos en broadside. La red propuesta queda totalmente validada con la fabricación y medida de estos con prototipos. Las cadenas de RF de los módulos T/R de la nueva antena GEODA-SARAS no son algo trivial. Con el fin de mostrar el desarrollo de una cadena compleja con una gran densidad de componentes de estado sólido, se presenta una descripción detallada de los distintos componentes que integran las cadenas de RF tanto en transmisión como en recepción de la nueva antena GEODA-SARAS. Tras presentar las especificaciones de la antena GEODA-SARA y su diagrama de bloques esquemático se describen los dos bloques principales de las cadenas de RF: la celda de cinco elementos, y el módulo de conversión de panel. De la misma manera también se presentará el módulo de calibración integrado dentro de los dos bloques principales. Para comprobar que el funcionamiento esperado de la placa es el adecuado, se realizará un análisis que tratará entre otros datos: la potencia máxima en la entrada del transmisor (comprobando la saturación de la cadena), señal de recepción mínima y máxima (verificando el rango de sensibilidad requerido), y el factor G/T (cumpliendo la especificación necesaria). Así mismo se mostrará un breve estudio del efecto de la cuantificación de la fase en el conformado de haz de RF. Los estudios muestran que la composición de las cadenas de RF permite el cumplimiento de las especificaciones necesarias. Finalmente la tesis muestra las conclusiones globales del trabajo realizado y las líneas futuras a seguir para continuar con esta línea de investigación. ABSTRACT This PhD thesis named "Contribution to Active Multi-Beam Reconfigurable Antennas for L and S Bands", has been written by the Electrical Engineer MSc. researcher Javier García-Gasco Trujillo in the Grupo de Radiación of the Departamento de Señales, Sistemas y Radiocomunicaciones from the ETSI de Telecomunicación of the Universidad Politécnica de Madrid. For decades, the implementation of electronically steerable phased array antennas was confined to the military area. Their high cost and complexity were the major obstacles to introduce this technology in large scale commercial applications. The recent emergence of new practical, low-cost, and highly reliable solid state devices; breaks the barrier of cost and reduces the complexity, making active phased arrays a viable future option. Thus, phased array antennas could be the crown jewel that allow to meet the future challenges in military and civilian communication systems. Now is time to deploy low-cost phased array antennas, where newly commercial components form the core of the architecture. Therefore, the study and implementation of these novel low-cost and highly efficient solid state phased array blocks capable of controlling signal phase/amplitude accurately is one of the great challenges of our time. This thesis faces this challenge, proposing innovative electronic beam steering networks and transmitter/ receiver (T/R) modules using affordable solid state components, which could integrate fair reconfigurable phased array antennas working in L and S bands. In the first part of the thesis, a description of the state of art of phased array antennas, including their fundamentals and their competitive advantages, is presented. Since thesis contributions have been carried out for different research projects, where antennas with single/double circular polarization and single/double working frequency bands have been examined, frameworks of the two more important projects are detailed: the Space Situational Awareness (SSA) programme from the European Space Agency (ESA), and the GEOdesic Dome Array (GEODA) project from ISDEFE-INSA and the ESA. Undoubtedly, phase shifter devices are one of the key components of phased array antennas. Recent years have witnessed wide fluctuations in commercial phase shifter prices, which sometimes led to unaffordable limit. Several RF steering technique alternatives to the commercial phase shifters are proposed, summarized, and compared: the switched line phase shifter, the switched-beam network, and the novel phase shifter power splitter/combiner network. In order to show a practical use of the three different techniques, the five element GEODA-SARAS subarray is proposed as a real case of study. Finally, a practical study of a newly phase shifter power splitter/combiner network for a subarray of five radiating elements with triangular distribution is shown. Measurements of the two different phase shifter power splitter/combiner prototypes integrating the whole network are also depicted, demonstrating their proper performance. A triangular cell of three radiating elements is the simplest way to obtain a planar scanner. A new multibeam network configuration that provides three orthogonal beams in a desired _0 elevation angle and an extra one in the broadside steering direction for a triangular array of three radiating elements is introduced. Firstly, a short introduction to the state of art of classical multi-beam networks is presented. Lossless network analysis, including original lossless network designs, are also commented. General dissipative network theory as well as applications for array antennas of three radiating elements are depicted. The proposed final basic multi-beam network are simulated, built and measured to the GEODA cell practical case. A combined network that provides six orthogonal beams in a desired _0 elevation angle and a double seventh one in the broadside direction by using two complementary proposed basic networks will be shown. Measurements of the whole system will be also depicted, verifying the expected behavior. GEODA-SARAS T/R module RF chains are not a trivial design. A thorough description of all the components compounding GEODA-SARAS T/R module RF chains is presented. After presenting the general specifications of the GEODA-SARAS antenna and its block diagrams; two main blocks of the RF chains, the five element cell and the panel conversion module, are depicted and analyzed. Calibration module integrated within the two main blocks are also depicted. Signal flow throw the system analyzing critical situations such as maximum transmitted power (testing the chain unsaturation), minimum and maximum receiving signal (verifying sensitivity range), maximum receiver interference signals (assuring a proper reception), and G/T factor (fulfilling the technical specification) are evaluated. Phase quantization error effects are also listed. Finally, the manuscript contains the conclusions drawn of the present research and the future work.