30 resultados para process improvement


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Contexto: La adopción y adaptación de las metodologías ágiles ha sido objeto de estudio en la comunidad y diversas aproximaciones han sido propuestas como solución al problema. La mayoría de las organizaciones comienzan introduciendo prácticas ágiles de manera progresiva, las cuales, junto a las buenas prácticas ya existentes, conforman una nueva metodología ágil adaptada. El problema más importante con el que se enfrentan las organizaciones al adaptar una metodología ágil, son las necesidades específicas del contexto de cada proyecto, porque a pesar de haber definido la adaptación de la metodología en base a las buenas prácticas y procesos existentes en la organización, las condiciones particulares del proyecto y del equipo que lo va a desarrollar, exigen adaptaciones específicas. Otro aspecto importante a resolver es el poder implantar esta adopción y adaptación en toda la organización. Las metodologías ágiles no incluyen actividades que asistan a las organizaciones a solucionar este problema, porque su esfuerzo lo centran en el equipo y el proyecto. Objetivo: El objetivo principal de este trabajo de investigación consiste en “definir un marco de trabajo de adaptación de metodologías ágiles orientado a contextos que permita su implantación en toda la organización a través de ciclos de mejora basados en la reutilización de experiencias adquiridas”. Este marco de trabajo permitirá organizar, gestionar y validar la adaptación de las metodologías ágiles, desplegando en toda la organización las experiencias adquiridas, incorporando pequeñas mejoras en el proceso, y facilitando su reutilización. Todo esto, con el apoyo de la alta dirección. Método: Este trabajo se inició con una investigación exploratoria acompañada de una revisión sistemática para conocer el estado del arte del objeto de estudio, detectando las principales carencias y necesidades de resolución, a partir de las cuales, se delimitó el alcance del problema. Posteriormente, se definieron las hipótesis de investigación y se planteó una solución al problema a través de la definición del marco de trabajo, cuyos resultados fueron evaluados y validados a través de la realización de un caso de estudio. Finalmente, se obtuvieron las conclusiones y se establecieron las líneas futuras de investigación. Resolución: El marco de trabajo presenta una alternativa de adaptación de las metodologías ágiles orientada a contextos, y facilita su implantación en toda la organización. El marco de trabajo idéntica los contextos en los que se desarrollan los proyectos y analiza la causa de los problemas que afectan a la consecución de los objetivos de negocio en cada contexto. Posteriormente, identifica las acciones de adaptación requeridas para reducir o eliminar estas causas y las incorpora en la definición de la metodología ágil, creando de esta manera, una metodología adaptada para cada contexto manteniendo un nivel de agilidad aceptable. Cuando se inicia un nuevo proyecto, se identifica su contexto y se aplica la metodología ágil adaptada definida para dicho contexto. Al final de cada iteración, se analizan las medidas obtenidas y se las compara con la media aplicando una técnica para la evaluación de la consecución de los objetivos. En base a esta comparativa, y a la experiencia adquirida por el equipo, se realizan ajustes en las acciones de adaptación para intentar conseguir una mejora en la siguiente iteración. Una vez finalizado el proyecto, se conoce el impacto de los resultados conseguidos y se puede determinar si se ha alcanzado una mejora en el contexto del proyecto. De ser así, la metodología adaptada es almacenada en un repositorio de experiencias para poder ser reutilizada por otros equipos de desarrollo de la organización. Resultados: El trabajo de investigación fue evaluado y validado satisfactoriamente a través de su experimentación en un caso de estudio, aprobando las hipótesis establecidas. Los aportes y principales resultados de esta investigación son: Definición de un marco de trabajo integral de adaptación de metodologías ágiles, con capacidad de facilitar su implantación en toda la organización. Procedimiento para identificar contextos o escenarios de adaptación. Procedimiento para definir unidades de adaptación a partir de los inhibidores de los objetivos de negocio de la organización. Técnica para analizar la consecución de objetivos en propuestas de mejora de procesos. Conclusiones: Son tres las ventajas principales que han quedado evidenciadas durante la realización del trabajo de investigación: El marco de trabajo proporciona un mecanismo capaz de optimizar el rendimiento de la metodología ágil adaptada al orientar el proceso a las necesidades específicas del contexto del proyecto. El marco de trabajo permite conservar el conocimiento empírico adquirido por el equipo de desarrollo al registrarlo como experiencia adquirida para la organización. El marco de trabajo optimiza y reduce los tiempos del proceso de implantación de la metodología ágil adaptada en otros equipos de la organización. ABSTRACT Context: The adoption and tailoring of agile methods has been studied in the community and various approaches have been proposed as a solution. Most organizations start introducing agile practices gradually, which ones, together with existing good practices, make a new agile method tailored. When an organization starts to adapt an agile method, the context-specific needs of each project are the main trouble, because even though the agile method tailored has been defined based on best practices and processes in the organization, the specific conditions of the project and its team, require specific adaptations. Another important aspect to be solved is to implement this adoption and adaptation throughout all the organization. Agile methods do not include specific activities for helping organizations to solve this problem, because their effort is focused on the team and the project. Objective: The main objective of this research is to “define a tailoring framework for agile methods oriented to contexts that allows its deployment throughout all the organization using improvement cycles based on the reuse of lessons learned”. This framework will allow organize, manage and validate the tailoring of agile methods, adding small improvements in the process, and facilitating reuse. All this, with the support of senior management. Method: This work began with an exploratory investigation accompanied by a systematic review to determine the state of the art about the object of study, after major gaps and needs resolution were identified, and the scope of the problem was delimited. Subsequently, the research hypotheses were defined and the framework was developed for solving the research problem. The results were evaluated and validated through a case study. Finally, conclusions were drawn and future research were established. Resolution The framework presents an alternative for tailoring agile methodologies and facilitates its implementation throughout all the organization. The framework identifies the contexts or scenarios in which software development projects are developed and analyses the causes of the problems affecting the achievement of business goals in each context. Then the adaptation actions required to reduce or eliminate these causes are defined and incorporated into the definition of agile method. Thus, a method tailored for each context is created. When a new project is started, the context in which it will be developed is identified and the tailored agile method to that context is applied. At the end of each iteration of the project, the measurements obtained are analysed and compared with the historical average of context to analyse the improvement in business goals. Based on this comparison, and the experience gained by the project team, adjustments are made in adaptation actions to try to achieve an improvement in the next iteration. Once the project is completed, the impact of the achieved results are known and it can determine if it has reached an improvement in the context of the project. If so, the tailored agile method is stored in a repository of experiences to be reused by other development teams in the organization. Results The goal of this research was successfully evaluated and validated through experimentation in a case study, so the research hypotheses were approved. The contributions and main results of this research are: A framework for tailoring agile methods, that allows its deployment throughout all the organization. A procedure for identifying adaptation scenarios or contexts. A procedure for defining adaptation units from inhibitors of the business goals of the organization. A technique for analysing the achievement of goals in process improvement proposals. Conclusions: There are three main advantages that have been highlighted during the research: The framework provides a mechanism to optimize the performance of agile methods because it guides the process based on the specific needs of the project context. The framework preserves the empirical knowledge acquired by the development team because it registers this empirical knowledge as experience for the organization. The framework streamlines and shortens the process of deploying the tailored agile method to other teams in your organization.

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Mechanical stability of EWT solar cells deteriorates when holes are created in the wafer. Nevertheless, the chemical etching after the hole generation process improves the mechanical strength by removing part of the damage produced in the drilling process. Several sets of wafers with alkaline baths of different duration have been prepared. The mechanical strength has been measured by the ring on ring bending test and the failure stresses have been obtained through a FE simulation of the test. This paper shows the comparison of these groups of wafers in order to obtain an optimum value of the decreased thickness produced by the chemical etching

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Software Product Line Engineering (SPLE) is becoming widely used due to the improvement it means when developing software products of the same family. However, SPLE demands long-term investment on a product-line platform that might not be profitable due to rapid changing business settings. Since Agile Software Development (ASD) approaches are being successfully applied in volatile markets, several companies have suggested the idea of integrating SPLE and ASD when a family product has to be developed. Agile Product Line Engineering (APLE) advocates the integration of SPLE and ASD to address their lacks when they are individually applied to software development. A previous literature re-view of experiences and practices on APLE revealed important challenges about how to fully put APLE into practice. Our contribution address several of these challenges by tailoring the agile method Scrum by means of three concepts that we have defined: plastic partial components, working PL-architectures, and reactive reuse.

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Profiting by the increasing availability of laser sources delivering intensities above 109 W/cm2 with pulse energies in the range of several Joules and pulse widths in the range of nanoseconds, laser shock processing (LSP) is being consolidating as an effective technology for the improvement of surface mechanical and corrosion resistance properties of metals and is being developed as a practical process amenable to production engineering. The main acknowledged advantage of the laser shock processing technique consists on its capability of inducing a relatively deep compression residual stresses field into metallic alloy pieces allowing an improved mechanical behaviour, explicitly, the life improvement of the treated specimens against wear, crack growth and stress corrosion cracking. Following a short description of the theoretical/computational and experimental methods developed by the authors for the predictive assessment and experimental implementation of LSP treatments, experimental results on the residual stress profiles and associated surface properties modification successfully reached in typical materials (specifically Al and Ti alloys) under different LSP irradiation conditions are presented. In particular, the analysis of the residual stress profiles obtained under different irradiation parameters and the evaluation of the corresponding induced surface properties as roughness and wear resistance are presented.

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One important task in the design of an antenna is to carry out an analysis to find out the characteristics of the antenna that best fulfills the specifications fixed by the application. After that, a prototype is manufactured and the next stage in design process is to check if the radiation pattern differs from the designed one. Besides the radiation pattern, other radiation parameters like directivity, gain, impedance, beamwidth, efficiency, polarization, etc. must be also evaluated. For this purpose, accurate antenna measurement techniques are needed in order to know exactly the actual electromagnetic behavior of the antenna under test. Due to this fact, most of the measurements are performed in anechoic chambers, which are closed areas, normally shielded, covered by electromagnetic absorbing material, that simulate free space propagation conditions, due to the absorption of the radiation absorbing material. Moreover, these facilities can be employed independently of the weather conditions and allow measurements free from interferences. Despite all the advantages of the anechoic chambers, the results obtained both from far-field measurements and near-field measurements are inevitably affected by errors. Thus, the main objective of this Thesis is to propose algorithms to improve the quality of the results obtained in antenna measurements by using post-processing techniques and without requiring additional measurements. First, a deep revision work of the state of the art has been made in order to give a general vision of the possibilities to characterize or to reduce the effects of errors in antenna measurements. Later, new methods to reduce the unwanted effects of four of the most commons errors in antenna measurements are described and theoretical and numerically validated. The basis of all them is the same, to perform a transformation from the measurement surface to another domain where there is enough information to easily remove the contribution of the errors. The four errors analyzed are noise, reflections, truncation errors and leakage and the tools used to suppress them are mainly source reconstruction techniques, spatial and modal filtering and iterative algorithms to extrapolate functions. Therefore, the main idea of all the methods is to modify the classical near-field-to-far-field transformations by including additional steps with which errors can be greatly suppressed. Moreover, the proposed methods are not computationally complex and, because they are applied in post-processing, additional measurements are not required. The noise is the most widely studied error in this Thesis, proposing a total of three alternatives to filter out an important noise contribution before obtaining the far-field pattern. The first one is based on a modal filtering. The second alternative uses a source reconstruction technique to obtain the extreme near-field where it is possible to apply a spatial filtering. The last one is to back-propagate the measured field to a surface with the same geometry than the measurement surface but closer to the AUT and then to apply also a spatial filtering. All the alternatives are analyzed in the three most common near-field systems, including comprehensive noise statistical analyses in order to deduce the signal-to-noise ratio improvement achieved in each case. The method to suppress reflections in antenna measurements is also based on a source reconstruction technique and the main idea is to reconstruct the field over a surface larger than the antenna aperture in order to be able to identify and later suppress the virtual sources related to the reflective waves. The truncation error presents in the results obtained from planar, cylindrical and partial spherical near-field measurements is the third error analyzed in this Thesis. The method to reduce this error is based on an iterative algorithm to extrapolate the reliable region of the far-field pattern from the knowledge of the field distribution on the AUT plane. The proper termination point of this iterative algorithm as well as other critical aspects of the method are also studied. The last part of this work is dedicated to the detection and suppression of the two most common leakage sources in antenna measurements. A first method tries to estimate the leakage bias constant added by the receiver’s quadrature detector to every near-field data and then suppress its effect on the far-field pattern. The second method can be divided into two parts; the first one to find the position of the faulty component that radiates or receives unwanted radiation, making easier its identification within the measurement environment and its later substitution; and the second part of this method is able to computationally remove the leakage effect without requiring the substitution of the faulty component. Resumen Una tarea importante en el diseño de una antena es llevar a cabo un análisis para averiguar las características de la antena que mejor cumple las especificaciones fijadas por la aplicación. Después de esto, se fabrica un prototipo de la antena y el siguiente paso en el proceso de diseño es comprobar si el patrón de radiación difiere del diseñado. Además del patrón de radiación, otros parámetros de radiación como la directividad, la ganancia, impedancia, ancho de haz, eficiencia, polarización, etc. deben ser también evaluados. Para lograr este propósito, se necesitan técnicas de medida de antenas muy precisas con el fin de saber exactamente el comportamiento electromagnético real de la antena bajo prueba. Debido a esto, la mayoría de las medidas se realizan en cámaras anecoicas, que son áreas cerradas, normalmente revestidas, cubiertas con material absorbente electromagnético. Además, estas instalaciones se pueden emplear independientemente de las condiciones climatológicas y permiten realizar medidas libres de interferencias. A pesar de todas las ventajas de las cámaras anecoicas, los resultados obtenidos tanto en medidas en campo lejano como en medidas en campo próximo están inevitablemente afectados por errores. Así, el principal objetivo de esta Tesis es proponer algoritmos para mejorar la calidad de los resultados obtenidos en medida de antenas mediante el uso de técnicas de post-procesado. Primeramente, se ha realizado un profundo trabajo de revisión del estado del arte con el fin de dar una visión general de las posibilidades para caracterizar o reducir los efectos de errores en medida de antenas. Después, se han descrito y validado tanto teórica como numéricamente nuevos métodos para reducir el efecto indeseado de cuatro de los errores más comunes en medida de antenas. La base de todos ellos es la misma, realizar una transformación de la superficie de medida a otro dominio donde hay suficiente información para eliminar fácilmente la contribución de los errores. Los cuatro errores analizados son ruido, reflexiones, errores de truncamiento y leakage y las herramientas usadas para suprimirlos son principalmente técnicas de reconstrucción de fuentes, filtrado espacial y modal y algoritmos iterativos para extrapolar funciones. Por lo tanto, la principal idea de todos los métodos es modificar las transformaciones clásicas de campo cercano a campo lejano incluyendo pasos adicionales con los que los errores pueden ser enormemente suprimidos. Además, los métodos propuestos no son computacionalmente complejos y dado que se aplican en post-procesado, no se necesitan medidas adicionales. El ruido es el error más ampliamente estudiado en esta Tesis, proponiéndose un total de tres alternativas para filtrar una importante contribución de ruido antes de obtener el patrón de campo lejano. La primera está basada en un filtrado modal. La segunda alternativa usa una técnica de reconstrucción de fuentes para obtener el campo sobre el plano de la antena donde es posible aplicar un filtrado espacial. La última es propagar el campo medido a una superficie con la misma geometría que la superficie de medida pero más próxima a la antena y luego aplicar también un filtrado espacial. Todas las alternativas han sido analizadas en los sistemas de campo próximos más comunes, incluyendo detallados análisis estadísticos del ruido con el fin de deducir la mejora de la relación señal a ruido lograda en cada caso. El método para suprimir reflexiones en medida de antenas está también basado en una técnica de reconstrucción de fuentes y la principal idea es reconstruir el campo sobre una superficie mayor que la apertura de la antena con el fin de ser capaces de identificar y después suprimir fuentes virtuales relacionadas con las ondas reflejadas. El error de truncamiento que aparece en los resultados obtenidos a partir de medidas en un plano, cilindro o en la porción de una esfera es el tercer error analizado en esta Tesis. El método para reducir este error está basado en un algoritmo iterativo para extrapolar la región fiable del patrón de campo lejano a partir de información de la distribución del campo sobre el plano de la antena. Además, se ha estudiado el punto apropiado de terminación de este algoritmo iterativo así como otros aspectos críticos del método. La última parte de este trabajo está dedicado a la detección y supresión de dos de las fuentes de leakage más comunes en medida de antenas. El primer método intenta realizar una estimación de la constante de fuga del leakage añadido por el detector en cuadratura del receptor a todos los datos en campo próximo y después suprimir su efecto en el patrón de campo lejano. El segundo método se puede dividir en dos partes; la primera de ellas para encontrar la posición de elementos defectuosos que radian o reciben radiación indeseada, haciendo más fácil su identificación dentro del entorno de medida y su posterior substitución. La segunda parte del método es capaz de eliminar computacionalmente el efector del leakage sin necesidad de la substitución del elemento defectuoso.

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•Introduction •Process Experimental Setup •Experimental Procedure •Experimental Results for Al2024 - T351, Ti6Al4V and AISI 316L - Surface Roughness and Compactation - Residual stresses - Tensile Strength - Fatigue Life •Discussion and Outlook - Prospects for technological applications of LSP

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Outline: • Introduction • Process Experimental Setup • Experimental Procedure • Experimental Results for Al2024-T351 and Ti6Al4V - Residual stresses - Tensile Strength - Fatigue Life • Discussion and Outlook - Prospects for technological applications of LSP

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The dHDL language has been defined to improve hardware design productivity. This is achieved through the definition of a better reuse interface (including parameters, attributes and macroports) and the creation of control structures that help the designer in the hardware generation process.

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The objective of this study was to propose a multi-criteria optimization and decision-making technique to solve food engineering problems. This technique was demostrated using experimental data obtained on osmotic dehydratation of carrot cubes in a sodium chloride solution. The Aggregating Functions Approach, the Adaptive Random Search Algorithm, and the Penalty Functions Approach were used in this study to compute the initial set of non-dominated or Pareto-optimal solutions. Multiple non-linear regression analysis was performed on a set of experimental data in order to obtain particular multi-objective functions (responses), namely water loss, solute gain, rehydration ratio, three different colour criteria of rehydrated product, and sensory evaluation (organoleptic quality). Two multi-criteria decision-making approaches, the Analytic Hierarchy Process (AHP) and the Tabular Method (TM), were used simultaneously to choose the best alternative among the set of non-dominated solutions. The multi-criteria optimization and decision-making technique proposed in this study can facilitate the assessment of criteria weights, giving rise to a fairer, more consistent, and adequate final compromised solution or food process. This technique can be useful to food scientists in research and education, as well as to engineers involved in the improvement of a variety of food engineering processes.

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Enabling Subject Matter Experts (SMEs) to formulate knowledge without the intervention of Knowledge Engineers (KEs) requires providing SMEs with methods and tools that abstract the underlying knowledge representation and allow them to focus on modeling activities. Bridging the gap between SME-authored models and their representation is challenging, especially in the case of complex knowledge types like processes, where aspects like frame management, data, and control flow need to be addressed. In this paper, we describe how SME-authored process models can be provided with an operational semantics and grounded in a knowledge representation language like F-logic in order to support process-related reasoning. The main results of this work include a formalism for process representation and a mechanism for automatically translating process diagrams into executable code following such formalism. From all the process models authored by SMEs during evaluation 82% were well-formed, all of which executed correctly. Additionally, the two optimizations applied to the code generation mechanism produced a performance improvement at reasoning time of 25% and 30% with respect to the base case, respectively.

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Wide experimental evidence of the phosphorus diffusion gettering beneficial effect on solar grade silicon is found by measuring electron effective lifetime and interstitial iron concentration in as-grown and post processed samples from two ingots of upgraded metallurgical grade silicon produced by Ferrosolar. Results after two different P-diffusion processes are compared: P emitter diffusion at 850ºC followed by fast cool-down (called “standard process”) or followed by slow cool-down (called “extended process”). It is shown that final lifetimes of this low cost material are in the range of those obtained with conventional material. The extended process can be beneficial for wafers with specific initial distribution and concentration of iron, e.g. materials with high concentration of big Fe precipitates, while for other cases the standard process is enough efficient. An analysis based on the comparison of measured lifetime and dissolved iron concentration with theoretical calculations helps to infer the initial iron distribution and concentration, and according to that, choose the more effective type of gettering.

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In order to show the choice of transparency as the guiding principle of the accreditation process, the article evaluates its influence on the fundamental subprocess of self-evaluation, thereby confirming that transparency is an essential tool for continuous improvement of academic processes and those of educational quality management. It fosters educational innovation and permits the sustainability of the continuous accreditation process over time, resulting in greater probabilities of university self-regulation through systemization of the process, with the objective of continuous improvement of university degree programs. The article analyzes the influence of transparency on each activity of the self-evaluation process according to the Peruvian accreditation model prepared under the total quality approach, as a reference for other accreditation models, proposing concrete transparency actions and evaluating its influence on the stakeholder groups in the self-evaluation process, as well as on the efficiency and effectiveness of the process. It is concluded that transparency has a positive influence on the training of human capital and the formation of the university?s organizational culture, facilitating dissemination, understanding and involvement of the stakeholder groups in the continuous improvement of accreditation activities and increasing their acceptance of change and commitment to the process. It is confirmed that transparency contributes toward increasing the efficiency index of the self-evaluation process by reducing operating costs through adequate, accessible, timely contribution of information by the stakeholders and through the optimization of the time spent gathering relevant information. In addition, it is concluded that transparency contributes toward increasing the effectiveness index of self-evaluation by facilitating the achievement of its objectives through synthetic, useful, reliable interpretation of the education situation and the formulation of feasible improvement plans based on the adequacy, relevance, visibility, pertinence and truthfulness of the information analyzed.

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Light confinement strategies play a crucial role in the performance of thin-film (TF) silicon solar cells. One way to reduce the optical losses is the texturing of the transparent conductive oxide (TCO) that acts as the front contact. Other losses arise from the mismatch between the incident light spectrum and the spectral properties of the absorbent material that imply that low energy photons (below the bandgap value) are not absorbed, and therefore can not generate photocurrent. Up-conversion techniques, in which two sub-bandgap photons are combined to give one photon with a better matching with the bandgap, were proposed to overcome this problem. In particular, this work studies two strategies to improve light management in thin film silicon solar cells using laser technology. The first one addresses the problem of TCO surface texturing using fully commercial fast and ultrafast solid state laser sources. Aluminum doped Zinc Oxide (AZO) samples were laser processed and the results were optically evaluated by measuring the haze factor of the treated samples. As a second strategy, laser annealing experiments of TCOs doped with rare earth ions are presented as a potential process to produce layers with up-conversion properties, opening the possibility of its potential use in high efficiency solar cells.

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A protocol of selection, training and validation of the members of the panel for bread sensory analysis is proposed to assess the influence of wheat cultivar on the sensory quality of bread. Three cultivars of bread wheat and two cultivars of spelt wheat organically-grown under the same edaphoclimatic conditions were milled and baked using the same milling and baking procedure. Through the use of triangle tests, differences were identified between the five breads. Significant differences were found between the spelt breads and those made with bread wheat for the attributes ?crumb cell homogeneity? and ?crumb elasticity?. Significant differences were also found for the odor and flavor attributes, with the bread made with ?Espelta Navarra? being the most complex, from a sensory point of view. Based on the results of this study, we propose that sensory properties should be considered as breeding criteria for future work on genetic improvement.