40 resultados para Azores Triple Junction


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En este trabajo, en primer lugar, se analiza la estructura (accionariado), funcionalidad (cómo funcionan y emiten sus opiniones) y el comportamiento (cómo actúan en los mercados) de las tres agencias más importantes de calificación de activos financieros, de emisores y emisiones de activos financieros. En segundo término, se señalan sus poco, si algo, científicas evaluaciones basadas en conceptos y actuaciones tan poco adecuadas como: profecía autocumplida, carencia de fecha de caducidad, catastrofismo, que, a veces, imponen con comportamientos gansteriles. Asimismo, se destaca la importancia y trascendencia que suponen las opiniones que emiten dichas agencias, auténticos ucases, que las convierten, de facto, en auténticos señores de horca y caudillo que acondicionan la vida y hacienda de inversores y emisores. En realidad, su comportamiento es tan deplorable y funesto, que como las hijas de Elena, de ahí el título del trabajo, ninguna es buena. Finalmente, se presenta, en forma de decálogo, los hechos, irrefutables, que justifican el calificativo de malvadas de dichas agencias: S&P, Moody?s y Fitch, hasta el punto de que son el antimefistofelismo personificado. Mefistófeles se definía a sí mismo como un pobre diablo que pretendiendo hacer el mal, acababa haciendo el bien, justo al revés que las hijas de Elena.

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One of the key components of highly efficient multi-junction concentrator solar cells is the tunnel junction interconnection. In this paper, an improved 3D distributed model is presented that considers real operation regimes in a tunnel junction. This advanced model is able to accurately simulate the operation of the solar cell at high concentraions at which the photogenerated current surpasses the peak current of the tunnel junctionl Simulations of dual-junction solar cells were carried out with the improved model to illustrate its capabilities and the results have been correlated with experimental data reported in the literature. These simulations show that under certain circumstances, the solar cells short circuit current may be slightly higher than the tunnel junction peak current without showing the characteristic dip in the J-V curve. This behavior is caused by the lateral current spreading toward dark regions, which occurs through the anode/p-barrier of the tunnel junction.

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El objetivo general de este estudio pretende contribuir al conocimiento de la ecología y dasometría de las diferentes formaciones de Juniperus brevifolia(Seub.) Antonie presentes en esta región oriental de la isla de São Miguel(Azores), concretamente en la Zona de Protección Especial para las Aves (ZEPA)Pico da Vara / Ribeira do Guilherme PTZPE0033, como base para evaluar ycaracterizar su estado actual de conservación.

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We demonstrate 1.81 eV GaInP solar cells approaching the Shockley-Queisser limit with 20.8% solar conversion efficiency, 8% external radiative efficiency, and 80–90% internal radiative efficiency at one-sun AM1.5 global conditions. Optically enhanced voltage through photon recycling that improves light extraction was achieved using a back metal reflector. This optical enhancement was realized at one-sun currents when the non-radiative Sah-Noyce-Shockley junction recombination current was reduced by placing the junction at the back of the cell in a higher band gap AlGaInP layer. Electroluminescence and dark current-voltage measurements show the separate effects of optical management and non-radiative dark current reduction.

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Non-parametric belief propagation (NBP) is a well-known message passing method for cooperative localization in wireless networks. However, due to the over-counting problem in the networks with loops, NBP’s convergence is not guaranteed, and its estimates are typically less accurate. One solution for this problem is non-parametric generalized belief propagation based on junction tree. However, this method is intractable in large-scale networks due to the high-complexity of the junction tree formation, and the high-dimensionality of the particles. Therefore, in this article, we propose the non-parametric generalized belief propagation based on pseudo-junction tree (NGBP-PJT). The main difference comparing with the standard method is the formation of pseudo-junction tree, which represents the approximated junction tree based on thin graph. In addition, in order to decrease the number of high-dimensional particles, we use more informative importance density function, and reduce the dimensionality of the messages. As by-product, we also propose NBP based on thin graph (NBP-TG), a cheaper variant of NBP, which runs on the same graph as NGBP-PJT. According to our simulation and experimental results, NGBP-PJT method outperforms NBP and NBP-TG in terms of accuracy, computational, and communication cost in reasonably sized networks.

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This paper presents a strategy for solving the feature matching problem in calibrated very wide-baseline camera settings. In this kind of settings, perspective distortion, depth discontinuities and occlusion represent enormous challenges. The proposed strategy addresses them by using geometrical information, specifically by exploiting epipolar-constraints. As a result it provides a sparse number of reliable feature points for which 3D position is accurately recovered. Special features known as junctions are used for robust matching. In particular, a strategy for refinement of junction end-point matching is proposed which enhances usual junction-based approaches. This allows to compute cross-correlation between perfectly aligned plane patches in both images, thus yielding better matching results. Evaluation of experimental results proves the effectiveness of the proposed algorithm in very wide-baseline environments.

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Progressing beyond 3-junction inverted-metamorphic multijunction solar cells grown on GaAs substrates, to 4-junction devices, requires the development of high quality metamorphic 0.7 eV GaInAs solar cells. Once accomplished, the integration of this subcell into a full, Monolithic, series connected, 4J-IMM structure demands the development of a metamorphic tunnel junction lattice matched to the 1eV GaInAs subcell. Moreover, the 0.7 eV junction adds about 2 hours of growth time to the structure, implying a heavier annealing of the subcells and tunnel junctions grown first. The final 4J structure is above 20 Pm thick, with about half of this thickness used by the metamorphic buffers required to change the lattice constant throughout the structure. Thinning of these buffers would help reduce the total thickness of the 4J structure to decrease its growth cost and the annealing time. These three topics: development of a metamorphic tunnel junction for the 4th junction, analysis of the annealing, and thinning of the structure, are tackled in this work. The results presented show the successful implementation of an antimonide-based tunnel junction for the 4th junction and of pathways to mitigate the impact of annealing and reduce the thickness of the metamorphic buffers.

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We present results for quadruple-junction inverted metamorphic (4J-IMM) devices under the concentrated direct spectrum and analyze the present limitations to performance. The devices integrate lattice-matched subcells with rear heterojunctions, as well as lattice-mismatched subcells with low threading dislocation density. To interconnect the subcells, thermally stable lattice-matched tunnel junctions are used, as well as a metamorphic GaAsSb/GaInAs tunnel junction between the lattice-mismatched subcells. A broadband antireflection coating is used, as well as a front metal grid designed for high concentration operation. The best device has a peak efficiency of (43.8 ± 2.2)% at 327-sun concentration, as measured with a spectrally adjustable flash simulator, and maintains an efficiency of (42.9 ± 2.1)% at 869 suns, which is the highest concentration measured. The Voc increases from 3.445 V at 1-sun to 4.10 V at 327-sun concentration, which indicates high material quality in all of the subcells. The subcell voltages are analyzed using optical modeling, and the present device limitations and pathways to improvement are discussed. Although further improvements are possible, the 4J-IMM structure is clearly capable of very high efficiency at concentration, despite the complications arising from utilizing lattice-mismatched subcells.

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In this work, we explain the behavior of multijunction solar cells under non-uniform (spatially and in spectral content) light profiles in general and in particular when Gaussian light profiles cause a photo-generated current density, which exceeds locally the peak current density of the tunnel junction. We have analyzed the implications on the tunnel junction's limitation, that is, in the loss of efficiency due to the appearance of a dip in the I–V curve. For that, we have carried out simulations with our three-dimensional distributed model for multijunction solar cells, which contemplates a full description of the tunnel junction and also takes into account the lateral resistances in the tunnel junction. The main findings are that the current density photo-generated spreads out through the lateral resistances of the device, mainly through the tunnel junction layers and the back contact. Therefore, under non-uniform light profiles these resistances are determinant not only to avoid the tunnel junction's limitation but also for mitigating losses in the fill factor. Therefore, taking into account these lateral resistances could be the key for jointly optimizing the concentrator photovoltaic system (concentrator optics, front grid layout and semiconductor structure)

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Las circunstancias me han decidido a realizar este trabajo, que tiene su origen en motivaciones personales. Así, por haber hecho la especialidad de atletismo y la gran afición que a ella tengo, más el enorme interés que tengo por la biomecánica, vino a mi mente la posibilidad de hacer la tesina sobre biomecánica de atletismo. Con este simple planteamiento concreté a quien orienta este trabajo. Después vino la revisión bibliográfica y las posibilidades en cada especialidad atlética. Quería analizar la técnica de algún movimiento en algunas de las especialidades atléticas, luego la técnica debía de ser determinante del resultado. Haciendo matizaciones sobre esto con el director de tesina determinamos que tenía que ser algún movimiento rápido. Empezó la eliminación de las especialidades, unas por estar ya estudiadas, otras por ser poco determinantes de la técnica, etc. Así hasta quedarme con la especialidad de t riple salto. No obstante en una de las clases de maestría de atletismo que dirige el profesor D. Carlos Álvarez del Villar, el triple salto había sido objeto de discusión biomecánica e hizo que me decidiera definitivamente a realizar el presente trabajo. Había diferentes formas de ejecutar el salto triple y con todas ellas se conseguían buenos resultados. Sobre el tema tenía material para trabajar y por la poca información bibliográfica que había sobre ello me daba la impresión de que era una mina sin explotar. Ahora y cuando el trabajo ya está terminado tengo la impresión de que estoy empezando a aprender la inmensa área que comprende la biomecánica y que el trabajo realizado no es más que la aportación de unos datos para, a partir de ahí. seguir trabajando. Es muy posible que continúe en este campo para futuras investigaciones, ya que como he dicho goza de grandes atractivos para mi. Antes de dar paso a la exposición del trabajo, quiero agradecer la gran ayuda prestada por todos los colaboradores, y muy especialmente al profesor D. Fernando Vizcaíno, quienes con su ánimo, ayuda y orientaciones en los momentos difíciles del trabajo, ha sido posible la culminación del mismo. Agradezco igualmente la colaboración especial de la Real Federación Española de Atletismo, sin cuya ayuda no hubiera siclo posible la realización de las películas.