6 resultados para Electrical equipment industry

em Universidad Politécnica de Madrid


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The search for new energy models arises as a necessity to have a sustainable power supply. The inclusion of distributed generation sources (DG) allows to reduce the cost of facilities, increase the security of the grid or alleviate problems of congestion through the redistribution of power flows. In remote microgrids it is needed in a particular way a safe and reliable supply, which can cover the demand for a low cost; due to this, distributed generation is an alternative that is being widely introduced in these grids. But the remote microgrids are especially weak grids because of their small size, low voltage level, reduced network mesh and distribution lines with a high ratio R/X. This ratio affects the coupling between grid voltages and phase shifts, and stability becomes an issue of greater importance than in interconnected systems. To ensure the appropriate behavior of generation sources inserted in remote microgrids -and, in general, any electrical equipment-, it is essential to have devices for testing and certification. These devices must, not only faithfully reproduce disturbances occurring in remote microgrids, but also to behave against the equipment under test (EUT) as a real weak grid. This also makes the device commercially competitive. To meet these objectives and based on the aforementioned, it has been designed, built and tested a voltage disturbances generator, in order to provide a simple, versatile, full and easily scalable device to manufacturers and laboratories in the sector.

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Dentro del equipamiento que existen en los hospitales, se realizan muy diversas actuaciones para el correcto funcionamiento de los equipos que se destinan, tanto a medir sobre el paciente o para tratamiento sobre estos mismos, el abanico de equipos que existen es muy grande, sin contar con los que directamente se instalan o, más correctamente, se implantan en el paciente. Los hospitales tienen establecidas pautas de mantenimiento tanto correctivo como preventivo, también de verificación relativa a seguridad y, en algunos casos, acciones que van destinadas a comprobar las magnitudes en los equipos. Esto último no es lo normal, de hecho, en muchos casos, la mayoría, se desconoce cómo poder comprobar que las magnitudes de un equipo se pueden trazar a un patrón de medida nacional. La investigación se ha desarrollado para determinar, siendo algo que esta patente hasta en la normalización ISO, que no existen para muchos equipos principios establecidos para garantizar la trazabilidad metrológica da las magnitudes físicas en las que trabaja durante su vida útil. Debido a la amplitud de este campo, el desarrollo de investigación se ha llevado en un formato piramidal, desde las necesidades para poder llegar a un estudio concreto de equipos concretos (Termómetros Clínicos, Tensiómetros, Ultrasonidos y Onda Corta). Para llegar a estos se ha realizado un estudio de cómo se encuentra la trazabilidad metrológica en todo el espectro, desde la gestión hasta llegar a casos particulares. Estudiando la gran cantidad de documentación existente y llegando a determinar el campo de trabajo en la metrología hospitalaria, clasificando los equipos y determinando como se encuentran definidos los métodos que llevan a realidad la trazabilidad metrológica, en la normalización. Un grupo no muy trabajado de los equipos electromédicos son los que se encuentran dentro de los tratamientos de Rehabilitación de traumatología, siendo equipos de uso muy habitual en los centros de salud para las lesiones musculares y óseas. A este asunto se ha dedicado un esfuerzo extra, con un reporte histórico de su origen y en qué punto se encuentran ahora. Se han estudiado dentro de estos equipos los de tratamiento de ultrasonidos, de diatermia y onda corta, que son los más representativos de los equipos destinados a electro terapia, pero hay que tener en cuenta que hay campos que se han mencionado globalmente de la rehabilitación, como son la terapia o la biomecánica, de forma similar a otras tecnologías sanitarias de otras especialidades (radiología o análisis clínico). Hay, también, dentro de la terapia, todos esos tratamientos propios de gimnasio, como son poleas, pesas, mesas de masajes, balones, etc… Que su metrología es sencilla, son equipos que existen medios de comprobación de las magnitudes que utilizan por la existencia en otras actividades de la industria (balanzas, pesas, etc). La investigación realizada ha pretendido evaluar todo el global y llegar a casos concretos para determinar cómo está la situación. Llegando a desarrollar una clasificación de equipos y de normas, que permiten vislumbrar las necesidades metrológicas y permitiría establecer una Gestión de la Trazabilidad Metrológica, concluyendo en el estudio para los equipos que se han mencionado. ABSTRACT Within the equipment that exist in the hospitals, there are very diverse performances for the correct operation of the equipment that is intended both to measure on the patient or for treatment on these same, the range of equipment available is very large, without which directly are installed or, more correctly, are implanted in the patient. The hospitals have established patterns of maintenance both corrective and preventive, also of verification of security and, in some cases, actions which are intended to check the magnitudes in the equipment. This last is not normal, in fact, in many cases, the majority, it is not known as to be able to check that the magnitudes of a computer can be traced to a pattern of national measure. The research has been developed to determine, is something that this patent up to the International Organization for Standardization (ISO), that do not exist for many teams established principles to ensure the metrological traceability gives the physical quantities in which they work during its useful life. Due to the breadth of this field, the development of research has been conducted in a pyramid format, from the needs to be able to reach a specific study of specific equipment (Clinical Thermometers, Tensiometers, Ultrasound, and Short Wave). To reach theme, has been carried out a study of how is the metrological traceability across the entire spectrum, from the management to individuals cases. Considering the large amount of existing documentation and arriving to determine the labor camp in the metrology hospital, sorting equipment and determining how are defined the methods that lead to reality the metrological traceability, in the standardization. A group not too worked for medical electrical equipment are found within the rehabilitation treatment of traumatology, being equipment of very common use in the health centers for muscle injuries and bone. In this matter has been dedicated an extra effort, with a report history of its origin and where they are now. We have studied within these teams about the treatment of ultrasound, diathermy, short wave, which are the most representative of the equipment that is destined to electro therapy, but it must be borne in mind that there are fields that have been mentioned globally of rehabilitation, as are the therapy or the biomechanics, similar to other health technologies from other specialties (radiology or clinical analysis). There is, also, within the therapy, all these treatments own gym, such as pulleys, weights, tables of massages, balls, etc… that its metrology is simple, are computers that there are means of verification of the magnitudes that used by the existence in other activities of the industry (scales, weights, etc). The research carried out has tried to assess the entire global and reach specific cases to determine the situation as it is. Arriving in the development of a classification of equipment and standards, which give us a glimpse of the metrological needs and establish a Management of the Metrological Traceability, concluding in the study for computers that have been mentioned.

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La presente tesis aborda el estudio de los distintos regímenes de neutro de las instalaciones de baja tensión, comúnmente llamados sistemas de puesta a tierra, desde un doble punto de vista, con el objetivo final de establecer un estándar justificado para un posterior desarrollo normativo, y de diseño que facilite la operación y funcionamiento de la instalación eléctrica y de comunicaciones en los sistemas hospitalarios. En una primera parte de la tesis se detallará que aunque hay muchos estudios teórico-prácticos sobre la elección del régimen de neutro en base a criterios operativos y puramente eléctricos, criterios como seguridad frente a accidentes eléctricos, o en términos de disponibilidad, mantenimiento o fiabilidad, esas recomendaciones no se han trasladado de manera directa a la legislación española salvo en el caso de Salas de Intervención donde se obliga a un sistema IT. Por eso se justificará como una primera técnica correctora de un inadecuado funcionamiento electromagnético en Hospitales el establecer una propuesta de marco normativo donde se fijen los tipos de puesta a tierra en función del uso y tipología del edificio desde un punto de vista eléctrico Por otra parte, la influencia de los distintos regímenes de neutro en la transmisión de señales (compatibilidad magnética) no ha sido estudiada en toda su profundidad, no existiendo ni marco normativo obligado ni estudios en profundidad sobre estas afecciones. Por tanto y en una segunda parte de la tesis se propondrá como medida correctora para mejorar el funcionamiento electromagnético de un hospital qué el régimen de neutro TN-S es más respetuoso con el funcionamiento de los equipos de electromedicina que alberga en su interior, estableciendo así mismo una propuesta de norma que regule este diseño. En definitiva se justifica que es posible generar por diseño inicial de la red eléctrica, mediante un régimen de neutro TN-S, un contexto electromagnético óptimo para el funcionamiento del sistema hospitalario que no se logra con otras opciones contempladas en la normativa española. ABSTRACT This thesis deals with the study of various ground grid systems of low voltage installations, commonly called grounding systems, from two points of view, with the ultimate goal of establishing a standard justified from a policy perspective and design to facilitate the operation and functioning of the electrical system and hospital communications systems. In the first part of the thesis will be detailed that although there are many theoretical and practical studies on the choice of the neutral system based on operational criteria and purely electric, criteria such as safety against electrical accidents, or in terms of availability, maintenance and reliability, these recommendations have not been transferred directly to the Spanish legislation except in Intervention Rooms where a IT system is required. So be justified as a first corrective technique improper operation electromagnetic Hospitals proposal to establish a regulatory framework where ground types depending on the use and type of building are set from an electrical point of view . Moreover, the influence of the different regimes neutral signaling (magnetic compatibility) has not been studied in any depth, there being neither forced nor depth studies on these conditions regulatory framework. Thus in a second part of the thesis will be justified as a corrective measure to improve the electromagnetic performance of a hospital which the neutral TN-S is more respectful of the performance of medical electrical equipment housed in its interior, thus establishing same a proposed rule governing this design. Ultimately it is possible to generate justified by initial design of the grid, using a neutral system TN-S, electromagnetic optimal context for the operation of the hospital system is not achieved with other legal options in Spain.

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Nowadays, processing Industry Sector is going through a series of changes, including right management and reduction of environmental affections. Any productive process which looks for sustainable management is incomplete if Cycle of Life of mineral resources sustainability is not taken into account. Raw materials for manufacturing are provided by mineral resources extraction processes, such as copper, aluminum, iron, gold, silver, silicon, titanium? Those elements are necessary for Mankind development and are obtained from the Earth through mineral extractive processes. Mineral extraction processes are operations which must take care about the environmental consequences. Extraction of huge volumes of rock for their transformation into raw materials for industry must be optimized to reduce ecological cost of the final product as l was possible. Reducing the ecological balance on a global scale has no sense to design an efficient manufacturing in secondary industry (transformation), if in first steps of the supply chain (extraction) impact exceeds the savings of resources in successive phases. Mining operations size suggests that it is an environmental aggressive activity, but precisely because of its great impact must be the first element to be considered. That idea implies that a new concept born: Reduce economical and environmental cost This work aims to make a reflection on the parameters that can be modified to reduce the energy cost of the process without an increasing in operational costs and always ensuring the same production capacity. That means minimize economic and environmental cost at same time. An efficient design of mining operation which has taken into account that idea does not implies an increasing of the operating cost. To get this objective is necessary to think in global operation view to make that all departments involved have common guidelines which make you think in the optimization of global energy costs. Sometimes a single operational cost must be increased to reduce global cost. This work makes a review through different design parameters of surface mining setting some key performance indicators (KPIs) which are estimated from an efficient point of view. Those KPIs can be included by HQE Policies as global indicators. The new concept developed is that a new criteria has to be applied in company policies: improve management, improving OPERATIONAL efficiency. That means, that is better to use current resources properly (machinery, equipment,?) than to replace them with new things but not used correctly. As a conclusion, through an efficient management of current technologies in each extractive operation an important reduction of the energy can be achieved looking at downstream in the process. That implies a lower energetic cost in the whole cycle of life in manufactured product.

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Both in industry and research, the quality control of micrometric manufactured parts is based on the measurement of parameters whose traceability is sometimes difficult to guarantee. In some of these parts, the confocal microscopy shows great aptitudes to characterize a measurand qualitatively and quantitatively. The confocal microscopy allows the acquisition of 2D and 3D images that are easily manipulated. Nowadays, this equipment is manufactured by many different brands, each of them claiming a resolution probably not in accord to their real performance. The Laser Center (Technical University of Madrid) has a confocal microscope to verify the dimensions of the micro mechanizing in their own research projects. The present study pretends to confirm that the magnitudes obtained are true and reliable. To achieve this, a methodology for confocal microscope calibration is proposed, as well as an experimental phase for dimensionally valuing the equipment by 4 different standard positions, with its seven magnifications and the six objective lenses that the equipment currently has, in the x–y and z axis. From the results the uncertainty will be estimated along with an effect analysis of the different magnifications in each of the objective lenses.

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Actual system performance of a PV system can differ from its expected behaviour.. This is the main reason why the performance of PV systems should be monitored, analyzed and, if needed, improved on. Some of the current testing procedures relating to the electrical behaviour of PV systems are appropriated for detecting electrical performance losses, but they are not well-suited to reveal hidden defects in the modules of PV plants and BIPV, which can lead to future losses. This paper reports on the tests and procedures used to evaluate the performance of PV systems, and especially on a novel procedure for quick on-site measurements and defect recognition caused by overheating in PV modules located in operating PV installations.