21 resultados para Product Design

em Universidad Politécnica de Madrid


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BioMet®Tools is a set of software applications developed for the biometrical characterization of voice in different fields as voice quality evaluation in laryngology, speech therapy and rehabilitation, education of the singing voice, forensic voice analysis in court, emotional detection in voice, secure access to facilities and services, etc. Initially it was conceived as plain research code to estimate the glottal source from voice and obtain the biomechanical parameters of the vocal folds from the spectral density of the estimate. This code grew to what is now the Glottex®Engine package (G®E). Further demands from users in medical and forensic fields instantiated the development of different Graphic User Interfaces (GUI’s) to encapsulate user interaction with the G®E. This required the personalized design of different GUI’s handling the same G®E. In this way development costs and time could be saved. The development model is described in detail leading to commercial production and distribution. Study cases from its application to the field of laryngology and speech therapy are given and discussed.

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Purpose: In this work, we present the analysis, design and optimization of one experimental device recently developed in the UK, called the 'GP' Thrombus Aspiration Device (GPTAD). This device has been designed to remove blood clots without the need to make contact with the clot itself thereby potentially reducing the risk of problems such as downstream embolisation. Method: To obtain the minimum pressure necessary to extract the clot and to optimize the device, we have simulated the performance of the GPTAD analysing the resistances, compliances and inertances effects. We model a range of diameters for the GPTAD considering different forces of adhesion of the blood clot to the artery wall, and different lengths of blood clot. In each case we determine the optimum pressure required to extract the blood clot from the artery using the GPTAD, which is attached at its proximal end to a suction pump. Result: We then compare the results of our mathematical modelling to measurements made in laboratory using plastic tube models of arteries of comparable diameter. We use abattoir porcine blood clots that are extracted using the GPTAD. The suction pressures required for such clot extraction in the plastic tube models compare favourably with those predicted by the mathematical modelling. Discussion & Conclusion: We conclude therefore that the mathematical modelling is a useful technique in predicting the performance of the GPTAD and may potentially be used in optimising the design of the device.

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A method for fast colour and geometric correction of a tiled display system is presented in this paper. Such kind of displays are a common choice for virtual reality applications and simulators, where a high resolution image is required. They are the cheapest and more flexible alternative for large image generation but they require a precise geometric and colour correction. The purpose of the proposed method is to correct the projection system as fast as possible so in case the system needs to be recalibrated it doesn’t interfere with the normal operation of the simulator or virtual reality application. This technique makes use of a single conventional webcam for both geometric and photometric correction. Some previous assumptions are made, like planar projection surface and negligibleintra-projector colour variation and black-offset levels. If these assumptions hold true, geometric and photometric seamlessness can be achievedfor this kind of display systems. The method described in this paper is scalable for an undefined number of projectors and completely automatic.

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Knowledge of the development of hydrographic networks can be useful for a number of research works in hydraulic engineering. We thus, intend to analyse the cartography regarding the first work that systematically encompasses the entire hydrographic network: Tomas Lopez’s Geographic Atlas of Spain (1787). In order to achieve this goal, we will first analyze –by way of the Geographic Information System (GIS) – both the present and referred historical cartographies. In comparing them, we will use the then-existing population centres that correspond to modern ones. The aim is to compare the following research variables in the hydrographic network: former toponyms, length of riverbeds and distance to population centres. The results of this study will show the variation in the riverbeds and the probable change in their denomination.

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El presente Proyecto de Fin de Carrera supone el propósito conjunto de los alumnos Álvaro Morillas y Fernando Sáez, y del profesor Vladimir Ulin, de desarrollar una unidad didáctica sobre el programa de simulación para ingeniería Virtual.Lab. La versión sobre la que se ha trabajado para realizar este texto es la 11, publicada en agosto de 2012. Virtual.Lab, del fabricante belga LMS International, es una plataforma software de ingeniería asistida por ordenador, que agrupa en una misma aplicación varias herramientas complementarias en el diseño de un producto, desde su definición geométrica a los análisis de durabilidad, ruido u optimización. No obstante, de entre todas las posibles simulaciones que nos permite el programa, en este proyecto sólo se tratan las que están relacionadas con la acústica. Cabe resaltar que gran parte de los conceptos manejados en Virtual.Lab son compatibles con el programa CATIA V5, ya que ambos programas vienen instalados y funcionan conjuntamente. Por eso, el lector de este proyecto podrá transportar sus conocimientos al que es uno de los programas estándar en las industrias aeronáutica, naval y automovilística, entre otras. Antes de este proyecto, otros alumnos de la escuela también realizaron proyectos de fin de carrera en el campo de la simulación computarizada en acústica. Una característica común a estos trabajos es que era necesario hacer uso de distintos programas para cada una de las etapas de simulación (como por ejemplo, ANSYS para el modelado y estudio de la vibración y SYSNOISE para las simulaciones acústicas, además de otros programas auxiliares para las traducciones de formato). Con Virtual.Lab desaparece esta necesidad y el tiempo empleado se reduce. Debido a que las soluciones por ordenador están ganando cada vez más importancia en la industria actual, los responsables de este proyecto consideran la necesidad de formación de profesionales en esta rama. Para responder a la demanda empresarial de trabajadores cualificados, se espera que en los próximos años los planes de estudio contengan más cursos en esta materia. Por tanto la intención de los autores es que este material sea de utilidad para el aprendizaje y docencia de estas asignaturas en cursos sucesivos. Por todo esto, se justifica la relevancia de este PFC como manual para introducir a los alumnos interesados en iniciarse en un sistema actual, de uso extendido en otras universidades tecnológicas europeas, y con buenas perspectivas de futuro. En este proyecto se incluyen varios ejemplos ejecutables desde el programa, así como vídeos explicativos que ayudan a mostrar gráficamente los procesos de simulación. Estos archivos se pueden encontrar en el CD adjunto. Abstract This final thesis is a joint project made by the students Álvaro Morillas and Fernando Sáez, and the professor Vladimir Ulin. The nature of the joint regards the writing of a didactic unit on Virtual.Lab, the simulation software. The software version used in this text is the number 11, released in August 2012. Virtual.Lab, from the Belgian developer LMS International, is a computer-aided engineering software which is used for several related tasks in this field: product design, durability simulation, optimization, etc. However, this project is focused on the acoustical capabilities. It is worthy to highlight that most procedures explained in this text can be used in the software CATIA V5 as well. Both tools come installed together and may be used at the same time. Therefore, the reader of this project will be able to use the acquired knowledge in one of the most relevant softwares for the aerospace, marine and automotive engineering. Previously to the development of this project, this School has conducted projects on this field. These projects regarded the use of ANSYS for modeling and meshing stages as well as the use of SYSNOISE for the final acoustic analysis. Since both systems use different file formats, a third-party translation software was required. This thesis fulfill this pending necessity with Virtual.Lab; the translation software procedure is not necessary anymore and simulations can be done in a more flexible, fast way. Since companies have an increasing usage of numerical methods in the development of their products and services, the authors think that it is important to develop the appropriate method to instruct new professionals in the field. Thus, the aim of this project is to help teachers and students in their process of learning the use of this leading software in acoustical simulations. For all the reasons mentioned above, we consider that this project is relevant for the School and the educational community. Aiming to achieve this objective the author offers example files and video demonstrations with guidance in the CD that accompanies this material. This facilitates the comprehension of the practical tasks and guides the prospect users of the software.

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La presente Tesis persigue la definición y el desarrollo de un sistema basado en el conocimiento que permita la generación de modelos de líneas de montaje durante la fase conceptual de definición de una aeroestructura aeronáutica. Para ello, se propone la definición de un modelo formal del proceso en concurrencia asociado al diseño de líneas de montaje en la fase conceptual, y de un modelo de la estructura de datos básica para soportar dicho proceso. Ambos modelos sirven de base para el desarrollo de una aplicación de prueba de concepto en el entorno del sistema comercial CAX-PLM CATIA v5. Los modelos de línea generados integran las tres estructuras básicas definidas en el modelo propuesto: producto, procesos y recursos. Los modelos generados son estructuras “de montaje”, basadas en estructuras de producto “de fabricación” a su vez derivadas de estructuras “de diseño”. Cada modelo generado se evalúa en términos de cuatro estimaciones básicas: dimensiones máximas del nodo producto, distancia de transporte y medio a utilizar, tiempo total de ejecución y coste total. La generación de modelos de línea de montaje se realiza en concurrencia con la función diseño de producto, teniendo por tanto la oportunidad de influir en la misma e incluir requerimientos de fabricación y montaje al producto en las primeras fases de su ciclo de vida, lo que proporciona una clara ventaja competitiva. El desarrollo propuesto en esta Tesis permite sentar las bases para realizar desarrollos con objeto de asistir a los diseñadores durante la fase conceptual de generación de diseños de líneas de montaje. La aplicación prototipo desarrollada demuestra la viabilidad de la propuesta conceptual que se realiza en la Tesis. ABSTRACT The current thesis proposes the definition and development of a knowledge-based system to generate aircraft components assembly line models during the conceptual phase of the product life cycle. With this objective, the definition of a formal activity model to represent the design of assembly lines during the conceptual phase is proposed; such model considers the concurrence with the product design process. Associated to the activity model, a data structure model is defined to support such process. Both models are the basis for the development of a proof of concept application within the environment of the commercial CAX-PLM system CATIA v5. The generated assembly line models integrate the three basic structures defined in the proposed model: product, processes and resources. The generated models are “As Prepared” structures based on “As Planned” structures derived from “As Designed” structures. Each generated model is evaluated in terms of four basic estimates: maximum dimensions of the product node, transport distance and transport mean to be used, total execution time and total cost. The assembly line models generation is made in concurrence with the product design function. Therefore, it provides the opportunity to influence on it and allows including manufacturing and assembly requirements early in the product life cycle, which gives a clear competitive advantage. The development proposed in this Thesis allows setting the foundation to carry out further developments with the aim of assisting designers during the conceptual phase of the assembly line design process. The developed prototype application shows the feasibility of the conceptual proposal presented in the Thesis.

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La Casa Industrializada supone el ideal de realizar la casa unifamiliar a través de la potencia y los procedimientos de la industria. Como tal, la casa supone un producto industrial más sujeto a la lógica de la reproducción y del consumo. Como producto de consumo la casa debe establecerse como objeto de deseo, accesible al grupo de usuarios-consumidores al que va dirigido. El sueño de la Casa Industrializada se origina en la primera Revolución Industrial y se consolida en la segunda tras la producción del Ford T y la adhesión de los padres del movimiento moderno. A lo largo de su historia se han sucedido casos de éxito y fracaso, los primeros con la realización de un producto de imagen convencional y los segundos la mayor parte de las veces dirigidos por arquitectos. El sueño de la Casa Industrializada de la mano de arquitectos está comenzando a ser una realidad en Japón, Suecia y Estados Unidos a través de marcas como MUJI, Arkitekthus y Living Homes, pero aún dista de ser un hecho extendido en nuestra sociedad. Para que este ideal se cumpla deberá ofrecer valores que permita a la sociedad hacerlo suyo. La Tesis busca analizar la historia y la metodología de la Casa Industrializada, desde el diseño a la comercialización con el fin de ofrecer esos valores en forma de propuestas para la Casa Industrializada en este milenio. La casa como producto industrial-producto de consumo supera las lógicas tradicionales de la arquitectura para operar dentro del contexto de la producción industrial y la reproducción de los objetos. En este sentido es necesario establecer no solo la forma y construcción de la casa sino los mecanismos de reproducción con sus pertinentes eficiencias. La Casa industrializada no se construye, se monta, y para ello utiliza las estrategias de la construcción en seco, la prefabricación, el uso de componentes y los materiales ligeros. Desde la lógica del consumo, la casa debe dirigirse a un determinado público, no es más la casa para todos, característica de las situaciones de crisis y de emergencia. La casa se enfrenta a un mercado segmentado, tanto en cultura, como en deseos y poderes adquisitivos. En la cuestión del diseño debe plantearse más como diseño de producto que como diseño arquitectónico. La Casa Industrializada no es el fruto de un encargo y de una acción singular, debe ofrecerse lista para adquirir y para ser reproducida. Esta reproducción se puede dar tanto en la forma de modelos cerrados o sistemas abiertos que permitan la personalización por parte de los usuarios. Desde el ámbito cultural es necesario entender que la casa es más que una máquina de habitar, es un receptor de emociones, forma parte de nuestra memoria y nuestra cultura. La casa como producto social es una imagen de nosotros mismos, define la manera en la que nos situamos en el mundo y por tanto supone una definición de estatus. En esto, la Tesis se apoya en los textos de Baudrillard y su análisis de la sociedad de consumo y el papel de los objetos y su valor como signo. La Tesis realiza un repaso de los procedimientos industriales con especial énfasis en la producción automovilística y sitúa la evolución de la Casa Industrializada en relación a la evolución de los avances en los sistemas de producción industrial y las transferencias desde las industrias del automóvil y aeronáutica. La tesis se completa con una serie de casos de estudio que parten de las primeras casas de venta por correo de principios del siglo XX, pasando por las propuestas de Gropius, Fuller, el Case Study House Program, Prouvé, Sota y acaban con la situación actual. La Casa Industrializada ha mantenido una serie de valores a lo largo de su historia, como ideal, forma un cuerpo estable de propuestas que no se ha modificado a lo largo del tiempo. Con respecto a este nuevo milenio este ideal no debe ser cambiado sino simplemente actualizado y adaptado a los métodos de producción y las necesidades, sueños y exigencias de la sociedad de hoy. ABSTRACT The industrialized House provides an ideal to manufacture the house through the power and strategies of the industry. As such, the house becomes an industrial product that respond to the logic of reproduction and consumption. As a comodity, the house must become a desirable object, accessible to the group of the consumers to which is targeted The dream of the Industrialized home is originated in the First Industrial Revolution and it is consolidated in the second one after Ford´s production of Model T and the incorporation of the principal figures of the modern movement to the ideal of making houses at the factories. Throughout history there have been cases of success and failure, the first with the completion of a product of conventional image and the second most often led by architects. Industrialized dream house made by architects is starting to become a reality in Japan, Sweden and the United States through brands such as MUJI, Arkitekthus and Living Homes, but still far from beeing a widespread fact in our society. To fulfill this ideal, it should provide values that society could accept as of their own. The Thesis seeks to analyze the history and methodology of industrialized house, from design to marketing in order to offer these values in the form of proposals for industrialized house in this millennium. The house as an industrial-product-comodity extend beyond the traditional architectural logic to operate within the context of industrial production and the reproduction of objects. In this sense it is necessary to establish not only the shape and construction of the house but the mechanisms of reproduction with its relevant efficiencies. Industrialized house is not built it is assembled, and it uses the strategies of dry construction, prefabrication, using lightweight materials and components. From the logic of consumption, the house must go to a certain audience, it is no longer the home for all that is characteristic of crisis respond and emergency. The house faces a segmented market, both in culture and desires and purchasing power. On the question of design it must be considered more like product design than architectural design. Industrialized House is not the result of a commission and a singular action, it should be offered pret-a-porter and able to be reproduced. This reproduction can be given in form of closed or open systems models that allow its customization by users. From the cultural sphere is necessary to understand that the house is more than a machine for living, is a recipient of emotions, is part of our memory and our culture. The home as a social product is an image of ourselves, defines the way in which we place ourselves in the world and therefore represents a definition of status. In this aspect, the thesis is based on the texts of Baudrillard and his analysis of consumption society and the role of objects and its value as a sign in it. The thesis makes a review of the industrial processes with emphasis on automotive production and places the evolution of industrialized House in relation to the evolution of developments in industrial production systems and transfers from the automotive and aeronautics industries. The thesis is completed with a series of case studies that starts from the first mail order houses from the early twentieth century, going through the proposal of Gropius, Fuller, the Case Study House Program, Prouvé, Sota and end up with the current situation. Industrialized House has held a series of values throughout its history, as an ideal, forms a stable corps of proposals that has not changed over time. Regarding this new millennium this ideal should not be changed but simply be updated and adapted to production methods and needs, dreams and demands of today's society.

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El objetivo seguido en este proyecto fin de carrera, ha sido el análisis de la evolución general de la tecnología, tanto electrónica, como en Telecomunicaciones e Informática, desde sus inicios hasta la actualidad, realizando un estudio sobre cómo esos avances han mejorado, incluso cambiado nuestra vida cotidiana y cómo a consecuencia de la conversión de muchos de estos productos tecnológicos en objeto de consumo masivo, la propia dinámica económico-comercial ha llevado a las empresas a la programación del fin del su vida útil con el objeto de incrementar su demanda y, consiguientemente, la producción. Se trata de lo que se conoce desde hace décadas como Obsolescencia Programada. Para realizar este documento se ha realizado un breve repaso por los acontecimientos históricos que promovieron el inicio de esta práctica, así como también nos ha llevado a realizar mención de todos esos aparatos tecnológicos que han sufrido una mayor evolución y por tanto son los más propensos a que se instauren en ellos, debido a cómo influyen dichos cambios en los consumidores. Otro de los aspectos más importantes que rodean a la Obsolescencia Programada, es cómo influye en el comportamiento de la sociedad, creando en ella actitudes consumistas, que precisamente son las que alimentan que el ciclo económico siga basándose en incluir esta práctica desde el diseño del producto, puesto que a mayor consumo, mayor producción, y por tanto, supone un aumento de beneficios para el fabricante. Aunque, lo que para algunos supone un amplio margen de rentabilidad, existen otros componentes de la ecuación que no salen tan bien parados, como pueden ser los países del tercer mundo que están siendo poblados de basura electrónica, y en general el medio ambiente y los recursos de los que hoy disponemos, que no son ilimitados, y que están viéndose gravemente afectados por la inserción de esta práctica. Como cierre de este análisis, se repasarán algunas de las técnicas empleadas en algunos de los productos más utilizados hoy en día y las conclusiones a las que se han llevado después de analizar todos estos puntos del tema. ABSTRACT. The main goal followed in this final project has been analyzing the overall evolution of technology, both electronics and telecommunications. Also, computer science; from beginning to present it has been realized some studies about these advances have improved our daily life, even changing our routine, and turn us massive consumers of all technological products on the market. This dynamic economic and commercial has led companies to programming the end of its useful life in order to increase demand, and consequently, the production. This is known as Obsolescence. To make this document has been made a brief review through historical events that promoted the opening of this practice, and also led us to make mention all these technological devices have undergone further evolution and therefore more likely to establish them, because these changes affect consumers. Another important aspect around planned obsolescence is how to influence in society’s behavior, creating consumerist attitudes, which are precisely those feed the economic cycle continues to be based on including this practice from product design, because increased consumption and production. Therefore, this fact increases profits for the manufacturer. Although, for some people suppose a wide margin of profitability, there are other components do not have such luck; for example, third World countries have been filled with e-waste and the environment, in general, and resources available today which are not unlimited, and who are seriously affected by the inclusion of this practice. To close this analysis, we will review a few techniques used in some products most widely used today, and the conclusions that have been made after analyzing all these points of the topic.

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Commercial computer-aided design systems support the geometric definition of product, but they lack utilities to support initial design stages. Typical tasks such as customer need capture, functional requirement formalization, or design parameter definition are conducted in applications that, for instance, support ?quality function deployment? and ?failure modes and effects analysis? techniques. Such applications are noninteroperable with the computer-aided design systems, leading to discontinuous design information flows. This study addresses this issue and proposes a method to enhance the integration of design information generated in the early design stages into a commercial computer-aided design system. To demonstrate the feasibility of the approach adopted, a prototype application was developed and two case studies were executed.

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Software Product Line Engineering (SPLE) has proved to have significant advantages in family-based software development, but also implies the up¬front design of a product-line architecture (PLA) from which individual product applications can be engineered. The big upfront design associated with PLAs is in conflict with the current need of "being open to change". However, the turbulence of the current business climate makes change inevitable in order to stay competitive, and requires PLAs to be open to change even late in the development. The trend of "being open to change" is manifested in the Agile Software Development (ASD) paradigm, but it is spreading to the domain of SPLE. To reduce the big upfront design of PLAs as currently practiced in SPLE, new paradigms are being created, one being Agile Product Line Engineering (APLE). APLE aims to make the development of product-lines more flexible and adaptable to changes as promoted in ASD. To put APLE into practice it is necessary to make mechanisms available to assist and guide the agile construction and evolution of PLAs while complying with the "be open to change" agile principle. This thesis defines a process for "the agile construction and evolution of product-line architectures", which we refer to as Agile Product-Line Archi-tecting (APLA). The APLA process provides agile architects with a set of models for describing, documenting and tracing PLAs, as well as an algorithm to analyze change impact. Both the models and the change impact analysis offer the following capabilities: Flexibility & adaptability at the time of defining software architectures, enabling change during the incremental and iterative design of PLAs (anticipated or planned changes) and their evolution (unanticipated or unforeseen changes). Assistance in checking architectural integrity through change impact analysis in terms of architectural concerns, such as dependencies on earlier design decisions, rationale, constraints, and risks, etc.Guidance in the change decision-making process through change im¬pact analysis in terms of architectural components and connections. Therefore, APLA provides the mechanisms required to construct and evolve PLAs that can easily be refined iteration after iteration during the APLE development process. These mechanisms are provided in a modeling frame¬work called FPLA. The contributions of this thesis have been validated through the conduction of a project regarding a metering management system in electrical power networks. This case study took place in an i-smart software factory and was in collaboration with the Technical University of Madrid and Indra Software Labs. La Ingeniería de Líneas de Producto Software (Software Product Line Engi¬neering, SPLE) ha demostrado tener ventajas significativas en el desarrollo de software basado en familias de productos. SPLE es un paradigma que se basa en la reutilización sistemática de un conjunto de características comunes que comparten los productos de un mismo dominio o familia, y la personalización masiva a través de una variabilidad bien definida que diferencia unos productos de otros. Este tipo de desarrollo requiere el diseño inicial de una arquitectura de línea de productos (Product-Line Architecture, PLA) a partir de la cual los productos individuales de la familia son diseñados e implementados. La inversión inicial que hay que realizar en el diseño de PLAs entra en conflicto con la necesidad actual de estar continuamente "abierto al cam¬bio", siendo este cambio cada vez más frecuente y radical en la industria software. Para ser competitivos es inevitable adaptarse al cambio, incluso en las últimas etapas del desarrollo de productos software. Esta tendencia se manifiesta de forma especial en el paradigma de Desarrollo Ágil de Software (Agile Software Development, ASD) y se está extendiendo también al ámbito de SPLE. Con el objetivo de reducir la inversión inicial en el diseño de PLAs en la manera en que se plantea en SPLE, en los último años han surgido nuevos enfoques como la Ingeniera de Líneas de Producto Software Ágiles (Agile Product Line Engineering, APLE). APLE propone el desarrollo de líneas de producto de forma más flexible y adaptable a los cambios, iterativa e incremental. Para ello, es necesario disponer de mecanismos que ayuden y guíen a los arquitectos de líneas de producto en el diseño y evolución ágil de PLAs, mientras se cumple con el principio ágil de estar abierto al cambio. Esta tesis define un proceso para la "construcción y evolución ágil de las arquitecturas de lineas de producto software". A este proceso se le ha denominado Agile Product-Line Architecting (APLA). El proceso APLA proporciona a los arquitectos software un conjunto de modelos para de¬scribir, documentar y trazar PLAs, así como un algoritmo para analizar vel impacto del cambio. Los modelos y el análisis del impacto del cambio ofrecen: Flexibilidad y adaptabilidad a la hora de definir las arquitecturas software, facilitando el cambio durante el diseño incremental e iterativo de PLAs (cambios esperados o previstos) y su evolución (cambios no previstos). Asistencia en la verificación de la integridad arquitectónica mediante el análisis de impacto de los cambios en términos de dependencias entre decisiones de diseño, justificación de las decisiones de diseño, limitaciones, riesgos, etc. Orientación en la toma de decisiones derivadas del cambio mediante el análisis de impacto de los cambios en términos de componentes y conexiones. De esta manera, APLA se presenta como una solución para la construcción y evolución de PLAs de forma que puedan ser fácilmente refinadas iteración tras iteración de un ciclo de vida de líneas de producto ágiles. Dicha solución se ha implementado en una herramienta llamada FPLA (Flexible Product-Line Architecture) y ha sido validada mediante su aplicación en un proyecto de desarrollo de un sistema de gestión de medición en redes de energía eléctrica. Dicho proyecto ha sido desarrollado en una fábrica de software global en colaboración con la Universidad Politécnica de Madrid e Indra Software Labs.

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This paper describes a new category of CAD applications devoted to the definition and parameterization of hull forms, called programmed design. Programmed design relies on two prerequisites. The first one is a product model with a variety of types large enough to face the modeling of any type of ship. The second one is a design language dedicated to create the product model. The main purpose of the language is to publish the modeling algorithms of the application in the designer knowledge domain to let the designer create parametric model scripts. The programmed design is an evolution of the parametric design but it is not just parametric design. It is a tool to create parametric design tools. It provides a methodology to extract the design knowledge by abstracting a design experience in order to store and reuse it. Programmed design is related with the organizational and architectural aspects of the CAD applications but not with the development of modeling algorithms. It is built on top and relies on existing algorithms provided by a comprehensive product model. Programmed design can be useful to develop new applications, to support the evolution of existing applications or even to integrate different types of application in a single one. A three-level software architecture is proposed to make the implementation of the programmed design easier. These levels are the conceptual level based on the design language, the mathematical level based on the geometric formulation of the product model and the visual level based on the polyhedral representation of the model as required by the graphic card. Finally, some scenarios of the use of programmed design are discussed. For instance, the development of specialized parametric hull form generators for a ship type or a family of ships or the creation of palettes of hull form components to be used as parametric design patterns. Also two new processes of reverse engineering which can considerably improve the application have been detected: the creation of the mathematical level from the visual level and the creation of the conceptual level from the mathematical level. © 2012 Elsevier Ltd. All rights reserved. 1. Introduction

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onceptual design phase is partially supported by product lifecycle management/computer-aided design (PLM/CAD) systems causing discontinuity of the design information flow: customer needs — functional requirements — key characteristics — design parameters (DPs) — geometric DPs. Aiming to address this issue, it is proposed a knowledge-based approach is proposed to integrate quality function deployment, failure mode and effects analysis, and axiomatic design into a commercial PLM/CAD system. A case study, main subject of this article, was carried out to validate the proposed process, to evaluate, by a pilot development, how the commercial PLM/CAD modules and application programming interface could support the information flow, and based on the pilot scheme results to propose a full development framework.

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This research is concerned with the experimental software engineering area, specifically experiment replication. Replication has traditionally been viewed as a complex task in software engineering. This is possibly due to the present immaturity of the experimental paradigm applied to software development. Researchers usually use replication packages to replicate an experiment. However, replication packages are not the solution to all the information management problems that crop up when successive replications of an experiment accumulate. This research borrows ideas from the software configuration management and software product line paradigms to support the replication process. We believe that configuration management can help to manage and administer information from one replication to another: hypotheses, designs, data analysis, etc. The software product line paradigm can help to organize and manage any changes introduced into the experiment by each replication. We expect the union of the two paradigms in replication to improve the planning, design and execution of further replications and their alignment with existing replications. Additionally, this research work will contribute a web support environment for archiving information related to different experiment replications. Additionally, it will provide flexible enough information management support for running replications with different numbers and types of changes. Finally, it will afford massive storage of data from different replications. Experimenters working collaboratively on the same experiment must all have access to the different experiments.

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Software Product Line Engineering has significant advantages in family-based software development. The common and variable structure for all products of a family is defined through a Product-Line Architecture (PLA) that consists of a common set of reusable components and connectors which can be configured to build the different products. The design of PLA requires solutions for capturing such configuration (variability). The Flexible-PLA Model is a solution that supports the specification of external variability of the PLA configuration, as well as internal variability of components. However, a complete support for product-line development requires translating architecture specifications into code. This complex task needs automation to avoid human error. Since Model-Driven Development allows automatic code generation from models, this paper presents a solution to automatically generate AspectJ code from Flexible-PLA models previously configured to derive specific products. This solution is supported by a modeling framework and validated in a software factory.

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The product of the tether-to-satellite mass ratio and the probability of tether cuts by small debris must be small to make electrodynamic bare tethers a competitive and useful de-orbiting technology. In the case of a circular orbit and assuming a model for the debris population, the product can be written as a function that just depends on the initial orbit parameters (altitude and inclination) and the tether geometry. This formula, which does not contain the time explicitly and ignores the details of the tether dynamics during the de-orbiting, is used to find design rules for the tape dimensions and the orbit parameter ranges where tethers dominate other de-orbiting technologies like rockets, electrical propulsion, and sails.