847 resultados para international cycling union


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El objetivo principal de este Proyecto Fin de Grado es el estudio experimental de la atenuación, producida por las precipitaciones, en los enlaces Tierra – satélite en banda Ka. En particular, se ha realizado el estudio para una frecuencia de 19,701 GHz, que corresponde con la frecuencia de una de las balizas del satélite Hot Bird 13 de Eutelsat. Para la realización del estudio se dispone de datos experimentales recogidos por sondeos realizados en la estación meteorológica de Madrid - Barajas y de datos sinópticos. La primera parte del proyecto comienza con una descripción de los fundamentos teóricos de los distintos fenómenos que afectan a la propagación en un enlace por satélite, y se enumeran los distintos modelos de predicción más importantes. Posteriormente se describen en más detalle algunos modelos de predicción propuestos por la Unión Internacional de Telecomunicaciones (UIT). En la segunda parte del mismo se explica en detalle el proceso necesario para el procesado de los datos experimentales, con el fin de poder manejarlos de forma más sencilla a la hora de presentar los resultados pertinentes. En una tercera parte se recogen los resultados experimentales obtenidos para el caso de la altura de la isoterma a 0˚C y de la atenuación por lluvia. El capítulo dedicado al estudio de la altura de la isoterma a 0˚C se centra en obtener dicho dato a partir de los datos experimentales de los sondeos, que fueron procesados con anterioridad. Así mismo, se realizará una comparativa de estos datos experimentales con los proporcionados por la UIT en la Recomendación 839. En el capítulo dedicado al estudio de la atenuación producida por la lluvia se compararán los resultados obtenidos de forma experimental con los datos proporcionados por la UIT en la Recomendación 618. Por último se recoge en un capítulo las conclusiones obtenidas con la realización de este PFG y las líneas futuras de investigación. ABSTRACT. The main aim of this Final Degree Project is the experimental study of attenuation by precipitation, in links Earth – Ka band satellite. In particular, the study was performed at a frequency of 19.701 GHz, which corresponds to the frequency of one of the beacons of the satellite Hot Bird 13 (Eutelsat). There is experimental data and synoptic data provided, which was collected from surveys in the Madrid- Barajas weather station. The first part of the project outlines some theoretical foundations regarding different phenomena which affect propagation in a satellite link and includes the most important prediction models. Additionally, some prediction models proposed by the International Telecommunication Union (ITU) are outlined in detail. In the second part, the process for the processing of the experimental data is explained in detail. This process is necessary in order to be able to utilize the data more easily when presenting the results of this project. In the third part, the experimental results obtained in the study are presented for both cases: isotherm height at 0°C and rain attenuation. The chapter dedicated to the study of the isotherm height at 0°C focuses on obtaining the real isotherm height at 0°C from the experimental data processed previously. Furthermore, a comparison will be made between the experimental results and data proposed by ITU in Recommendation 839. The chapter dedicated to the study of rain attenuation focuses on making a comparison between the results from the experimental data and data proposed by ITU in Recommendation 618. Finally, there is a chapter which revises all the conclusions obtained throughout this project and provides recommendations for future research.

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A suitable knowledge of the orientation and motion of the Earth in space is a common need in various fields. That knowledge has been ever necessary to carry out astronomical observations, but with the advent of the space age, it became essential for making observations of satellites and predicting and determining their orbits, and for observing the Earth from space as well. Given the relevant role it plays in Space Geodesy, Earth rotation is considered as one of the three pillars of Geodesy, the other two being geometry and gravity. Besides, research on Earth rotation has fostered advances in many fields, such as Mathematics, Astronomy and Geophysics, for centuries. One remarkable feature of the problem is in the extreme requirements of accuracy that must be fulfilled in the near future, about a millimetre on the tangent plane to the planet surface, roughly speaking. That challenges all of the theories that have been devised and used to-date; the paper makes a short review of some of the most relevant methods, which can be envisaged as milestones in Earth rotation research, emphasizing the Hamiltonian approach developed by the authors. Some contemporary problems are presented, as well as the main lines of future research prospected by the International Astronomical Union/International Association of Geodesy Joint Working Group on Theory of Earth Rotation, created in 2013.

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At head of title: International Geographical Union. XVIIth International Geographical Congress, United States, 1952.

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Mode of access: Internet.

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Mode of access: Internet.

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Issues for 1952- include the proceedings of the 8th- General Assembly of the International Geographical Union.

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<1918-61> include charter and constitution of the Union Printers Home

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We developed an alternative approach for measuring information and communication technology (ICT), applying Data Envelopment Analysis (DEA) using data from the International Telecommunications Union as a sample of 183 economies. We compared the ICT-Opportunity Index (ICT-OI) with our DEA-Opportunity Index (DEA-OI) and found a high correlation between the two. Our findings suggest that both indices are consistent in their measurement of digital opportunity, though differences still exist in different regions. Our new DEA-OI offers much more than the ICT-OI. Using our model, the target and peer groups for each country can be identified.

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The measurement of different aspects of information society has been problematic over along time, and the International Telecommunication Union (ITU) is spearheading in developing a single ICT index. In Geneva during the first World Summit on Information Society (WSIS) in December 2003, the heads of states declared their commitment to the importance of benchmarking and measuring progress toward the information society. Consequently, they re-affirmed their Geneva commitments in their second summit held in Tunis in 2005. In this paper, we propose a multiplicative linear programming model to measure Opportunity Index. We also compared our results with the common measure of ICT opportunity index and we found that the two indices are consistent in their measurement of digital opportunity though differences still exist among regions.

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We experimentally demonstrate a Raman fiber laser based on multiple point-action fiber Bragg grating reflectors and distributed feedback via Rayleigh scattering in an ∼22-km-long optical fiber. Twenty-two lasing lines with spacing of ∼100 GHz (close to International Telecommunication Union grid) in the C band are generated at the watt level. In contrast to the normal cavity with competition between laser lines, the random distributed feedback cavity exhibits highly stable multiwavelength generation with a power-equalized uniform distribution, which is almost independent on power. © 2011 Optical Society of America.