895 resultados para Gestural interface design


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The prospect of terawatt-scale electricity generation using a photovoltaic (PV) device places strict requirements on the active semiconductor optoelectronic properties and elemental abundance. After reviewing the constraints placed on an "earth-abundant" solar absorber, we find zinc phosphide (α-Zn3P2) to be an ideal candidate. In addition to its near-optimal direct band gap of 1.5 eV, high visible-light absorption coefficient (>104 cm-1), and long minority-carrier diffusion length (>5 μm), Zn3P2 is composed of abundant Zn and P elements and has excellent physical properties for scalable thin-film deposition. However, to date, a Zn3P2 device of sufficient efficiency for commercial applications has not been demonstrated. Record efficiencies of 6.0% for multicrystalline and 4.3% for thin-film cells have been reported, respectively. Performance has been limited by the intrinsic p-type conductivity of Zn3P2 which restricts us to Schottky and heterojunction device designs. Due to our poor understanding of Zn3P2 interfaces, an ideal heterojunction partner has not yet been found.

The goal of this thesis is to explore the upper limit of solar conversion efficiency achievable with a Zn3P2 absorber through the design of an optimal heterojunction PV device. To do so, we investigate three key aspects of material growth, interface energetics, and device design. First, the growth of Zn3P2 on GaAs(001) is studied using compound-source molecular-beam epitaxy (MBE). We successfully demonstrate the pseudomorphic growth of Zn3P2 epilayers of controlled orientation and optoelectronic properties. Next, the energy-band alignments of epitaxial Zn3P2 and II-VI and III-V semiconductor interfaces are measured via high-resolution x-ray photoelectron spectroscopy in order to determine the most appropriate heterojunction partner. From this work, we identify ZnSe as a nearly ideal n-type emitter for a Zn3P2 PV device. Finally, various II-VI/Zn3P2 heterojunction solar cells designs are fabricated, including substrate and superstrate architectures, and evaluated based on their solar conversion efficiency.

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The general formulation of double refraction or internal double reflection for any directions of incidence and arbitrary orientation of the optic axis in a uniaxial crystal is analysed in terms of Huygens' principle. Then double refraction and double reflection along the sequential interfaces in a crystal are discussed. On this basis, if the parameters of the interface are chosen appropriately, the range of angular separation between the ordinary ray and extraordinary ray can be much greater, It is useful for crystal element design. Finally, as an example, an optimum design of the Output end interface for a 2 x 2 electro-optic switch is given.

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O objetivo desse trabalho é compreender como o design é utilizado no espaço expositivo para construir contexto, conteúdo e linguagem. Entender quais estratégias são usadas para projetar ambientes atraentes à visitação em vista a proporcionar experiências coletivas e individuais, contemplativas, espaciais (imersivas), sensoriais e interativas. Para tal analisamos a mudança do papel dos museus ao longo do tempo e montamos um panorama das instituições museológicas no Brasil nas últimas décadas. Selecionamos padrões de exibição instituídos historicamente em termos mundiais, já que o Brasil sofreu enorme influência cultural da Europa e dos Estados Unidos. Estabelecemos uma base de conceitos que envolvem a linguagem do projeto de exposições e museus temáticos, considerando aspectos como formas de aprendizagem do público, comportamento deste em relação ao objeto exposto, produção de conteúdo, produção de sentido, escolha de linguagem, intencionalidade, construção de experiência, mediação e interface. Analisamos como estudo de caso, o projeto de dois museus temáticos contemporâneos, o Museu da Língua Portuguesa e o Museu do Futebol, com a intenção de construir uma crítica ao projeto espacial-visual, entendendo as relações estabelecidas entre os objetos (previamente existentes ou projetados produtos, textos, imagens, vídeos), a forma como eles são expostos e as características do local escolhido para abrigar a exposição.

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O objetivo desse trabalho é compreender como o design é utilizado no espaço expositivo para construir contexto, conteúdo e linguagem. Entender quais estratégias são usadas para projetar ambientes atraentes à visitação em vista a proporcionar experiências coletivas e individuais, contemplativas, espaciais (imersivas), sensoriais e interativas. Para tal analisamos a mudança do papel dos museus ao longo do tempo e montamos um panorama das instituições museológicas no Brasil nas últimas décadas. Selecionamos padrões de exibição instituídos historicamente em termos mundiais, já que o Brasil sofreu enorme influência cultural da Europa e dos Estados Unidos. Estabelecemos uma base de conceitos que envolvem a linguagem do projeto de exposições e museus temáticos, considerando aspectos como formas de aprendizagem do público, comportamento deste em relação ao objeto exposto, produção de conteúdo, produção de sentido, escolha de linguagem, intencionalidade, construção de experiência, mediação e interface. Analisamos como estudo de caso, o projeto de dois museus temáticos contemporâneos, o Museu da Língua Portuguesa e o Museu do Futebol, com a intenção de construir uma crítica ao projeto espacial-visual, entendendo as relações estabelecidas entre os objetos (previamente existentes ou projetados produtos, textos, imagens, vídeos), a forma como eles são expostos e as características do local escolhido para abrigar a exposição.

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A relação causal entre métodos de projeto e a usabilidade de produtos de comunicação e informação foi o tema desse estudo que buscou identificar o estado da arte sobre um processo de projeto que resulte em mais usabilidade na web. A partir dessa identificação, avaliou-se as melhorias que poderiam ser adotadas nos processos de desenvolvimento de interfaces utilizados por uma equipe específica da Fundação Oswaldo Cruz (CTIC - Fiocruz). Entendeu-se que um método de projeto deve estar atualizado em relação aos conhecimentos de áreas como a Ergonomia, a Interação Humano-computador e o Design de Interação. Para isso, adotou-se a hipótese de que o processo de projeto deve combinar três aspectos: a) um significativo envolvimento do usuário ao longo do processo; b) o uso de sucessivas iterações para configurar o produto e c) uma combinação mínima de técnicas relacionadas a objetivos específicos de cada fase de uma abordagem de Design Centrado no Usuário. Para contribuir com o desenvolvimento de métodos e técnicas que melhorem a usabilidade, descreveu-se as características dos métodos registrados na literatura e praticados por profissionais externos à Fundação Oswaldo Cruz (Fiocruz). A partir dessas informações, o estudo direcionou-se para o segundo objetivo específico: identificar melhorias nos métodos e técnicas aplicáveis no caso do CTIC Fiocruz. Através da combinação da revisão de literatura e da pesquisa de campo foram produzidas informações sobre tipos de fluxo dos métodos, tipos de envolvimento dos usuários, quantidade e gravidade de problemas de usabilidade observadas pelos profissionais e a validade de base geral de método para diferentes produtos. A primeira rodada de entrevista foi realizada para melhor entender o contexto da hipótese e a relação entre suas variáveis. A segunda rodada identificou as características do processo de projeto utilizado no CTIC. A partir dessas informações, aplicou-se duas técnicas com profissionais externos. Um questionário on-line foi utilizado para levantar informações bem específicas, em sua maioria de características quantitativas. A última técnica aplicada foi um card sorting on-line que apresentou um caso de projeto em que os profissionais indicaram quais técnicas seriam utilizadas diante de dois cenários diferentes: um mais favorável e outro restritivo. A análise demonstrou que a maioria dos profissionais acredita que os problemas de usabilidade são consequência da falta de determinadas abordagens e técnicas. Por isso, esses profissionais combinam fluxos iterativos com um significativo envolvimento do usuário no processo. Foram sugeridas melhorias para o método utilizado no CTIC sintetizadas através de um processo de Design Centrado no Usuário como ponto de partida que aplica o conceito tradicional de usabilidade (performance). Assim que possível, esse processo deve ser aperfeiçoado ao incluir o conceito de experiência do usuário que considera também os aspectos emocionais e hedonômicos na interação.

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This paper describes work performed as part of the U.K. Alvey sponsored Voice Operated Database Inquiry System (VODIS) project in the area of intelligent dialogue control. The principal aims of the work were to develop a habitable interface for the untrained user; to investigate the degree to which dialogue control can be used to compensate for deficiencies in recognition performance; and to examine the requirements on dialogue control for generating natural speech output. A data-driven methodology is described based on the use of frames in which dialogue topics are organized hierarchically. The concept of a dynamically adjustable scope is introduced to permit adaptation to recognizer performance and the use of historical and hierarchical contexts are described to facilitate the construction of contextually relevant output messages. © 1989.

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Turbomachinery flows are inherently unsteady. Until now during the design process, unsteadiness has been neglected, with resort merely to steady numerical simulations. Despite the assumption involved, the results obtained with steady simulations have been used with success. One of the questions arising in recent years is can unsteady simulations be used to improve the design of turbomachines? In this work the numerical simulation of a multi-stage axial compressor is carried out. Comparison of Reynolds averaged Navier-Stokes (RANS) and unsteady Reynolds averaged Navier-Stokes (URANS) calculation shows that the unsteadiness affects pressure losses and the prediction of stall limit. The unsteady inflow due to the wake passing mainly modifies the losses and whirl angle near the endwalls. The computational cost of the fully unsteady compared with a steady simulation is about four times in terms of mesh dimension and two orders of magnitude as number of iterations. A mixed RANS-URANS solution has been proposed to give the designer the possibility to simulate an unsteady stage embedded in a steady-state simulation. This method has been applied to the simulation of a four-stage axial compressor rig. The mixed RANS-URANS approach has been developed using sliding and mixing planes as interface conditions. The rotor-stator interaction has been captured physically while reducing the computational time and mesh size.

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In recent years, the presence of crusts within near surface sediments found in deep water locations off the west coast of Angola has been of interest to hot-oil pipeline designers. The origin for these crusts is considered to be of biological origin, based on the observation of thousands of faecal pellets in natural crust core samples. This paper presents the results of laboratory tests undertaken on natural and faecal pellet-only samples. These tests investigate the role faecal pellets play in modifying the gemechanical behaviour of clayey sediments. It is found that faecal pellets are able to significantly alter both the strength and the average grain-size of natural sediments, and therefore, influence the permeability and stiffness. Hot-oil pipelines self-embed into and subsequent shear on crusts containing faecal pellets. Being able to predict the time required for installed pipelines to consolidate the underlying sediment and thus, how soon after pipe-laying, the interface strength will develop is of great interest to pipeline designers. It is concluded from wet-sieving samples before and after oedometer tests, that the process of pipe laying is unlikely to destroy pellets. They will therefore, be a major constituent of the sediment subject to soil-pipeline shearing behaviour during axial pipe-walking and lateral buckling. Based on the presented results, a discussion highlighting the key implications for pipeline design is therefore provided. Copyright © 2011 by ASME.

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The ocean represents a huge energy reservoir since waves can be exploited to generate clean and renewable electricity; however, a hybrid energy storage system is needed to smooth the fluctuation. In this paper a hybrid energy storage system using a superconducting magnetic energy system (SMES) and Li-ion battery is proposed. The SMES is designed using Yttrium Barium Copper Oxide (YBCO) tapes, which store 60 kJ electrical energy. The magnet component of the SMES is designed using global optimization algorithm. Mechanical stress, coupled with electromagnetic field, is calculated using COMSOL and Matlab. A cooling system is presented and a suitable refrigerator is chosen to maintain a cold working temperature taking into account four heat sources. Then a microgrid system of direct drive linear wave energy converters is designed. The interface circuit connecting the generator and storage system is given. The result reveals that the fluctuated power from direct drive linear wave energy converters is smoothed by the hybrid energy storage system. The maximum power of the wave energy converter is 10 kW. © 2012 IEEE.

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Managing change can be challenging due to the high levels of interdependency in concurrent engineering processes. A key activity in engineering change management is propagation analysis, which can be supported using the change prediction method. In common with most other change prediction approaches, the change prediction method has three important limitations: L1: it depends on highly subjective input data; L2: it is capable of modelling 'generalised cases' only and cannot be; customised to assess specific changes; and L3: the input data are static, and thus, guidance does not reflect changes in the design. This article contributes to resolving these limitations by incorporating interface information into the change prediction method. The enhanced method is illustrated using an example based on a flight simulator. © The Author(s) 2013.

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In the modern engineering design cycle the use of computational tools becomes a neces- sity. The complexity of the engineering systems under consideration for design increases dramatically as the demands for advanced and innovative design concepts and engineering products is expanding. At the same time the advancements in the available technology in terms of computational resources and power, as well as the intelligence of the design software, accommodate these demands and make them a viable approach towards the chal- lenge of real-world engineering problems. This class of design optimisation problems is by nature multi-disciplinary. In the present work we establish enhanced optimisation capabil- ities within the Nimrod/O tool for massively distributed execution of computational tasks through cluster and computational grid resources, and develop the potential to combine and benefit from all the possible available technological advancements, both software and hardware. We develop the interface between a Free Form Deformation geometry manage- ment in-house code with the 2D airfoil aerodynamic efficiency evaluation tool XFoil, and the well established multi-objective heuristic optimisation algorithm NSGA-II. A simple airfoil design problem has been defined to demonstrate the functionality of the design sys- tem, but also to accommodate a framework for future developments and testing with other state-of-the-art optimisation algorithms such as the Multi-Objective Genetic Algorithm (MOGA) and the Multi-Objective Tabu Search (MOTS) techniques. Ultimately, heav- ily computationally expensive industrial design cases can be realised within the presented framework that could not be investigated before. © 2012 by the authors. Published by the American Institute of Aeronautics and Astronautics, Inc.

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In the modern engineering design cycle the use of computational tools becomes a necessity. The complexity of the engineering systems under consideration for design increases dramatically as the demands for advanced and innovative design concepts and engineering products is expanding. At the same time the advancements in the available technology in terms of computational resources and power, as well as the intelligence of the design software, accommodate these demands and make them a viable approach towards the challenge of real-world engineering problems. This class of design optimisation problems is by nature multi-disciplinary. In the present work we establish enhanced optimisation capabilities within the Nimrod/O tool for massively distributed execution of computational tasks through cluster and computational grid resources, and develop the potential to combine and benefit from all the possible available technological advancements, both software and hardware. We develop the interface between a Free Form Deformation geometry management in-house code with the 2D airfoil aerodynamic efficiency evaluation tool XFoil, and the well established multi-objective heuristic optimisation algorithm NSGA-II. A simple airfoil design problem has been defined to demonstrate the functionality of the design system, but also to accommodate a framework for future developments and testing with other state-of-the-art optimisation algorithms such as the Multi-Objective Genetic Algorithm (MOGA) and the Multi-Objective Tabu Search (MOTS) techniques. Ultimately, heavily computationally expensive industrial design cases can be realised within the presented framework that could not be investigated before. ©2012 AIAA.

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Many stick insects and mantophasmids possess tarsal 'heel pads' (euplantulae) covered by arrays of conical, micrometre-sized hairs (acanthae). These pads are used mainly under compression; they respond to load with increasing shear resistance, and show negligible adhesion. Reflected-light microscopy in stick insects (Carausius morosus) revealed that the contact area of 'heel pads' changes with normal load on three hierarchical levels. First, loading brought larger areas of the convex pads into contact. Second, loading increased the density of acanthae in contact. Third, higher loads changed the shape of individual hair contacts gradually from circular (tip contact) to elongated (side contact). The resulting increase in real contact area can explain the load dependence of friction, indicating a constant shear stress between acanthae and substrate. As the euplantula contact area is negligible for small loads (similar to hard materials), but increases sharply with load (resembling soft materials), these pads show high friction coefficients despite little adhesion. This property appears essential for the pads' use in locomotion. Several morphological characteristics of hairy friction pads are in apparent contrast to hairy pads used for adhesion, highlighting key adaptations for both pad types. Our results are relevant for the design of fibrillar structures with high friction coefficients but small adhesion.

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Spin splitting of the AlyGa1-yAs/GaAs/AlxGa1-xAs/AlyGa1-yAs (x not equal y) step quantum wells (QWs) has been theoretically investigated with a model that includes both the interface and the external electric field contribution. The overall spin splitting is mainly determined by the interface contribution, which can be well manipulated by the external electric field. In the absence of the electric field, the Rashba effect exists due to the internal structure inversion asymmetry (SIA). The electric field can strengthen or suppress the internal SIA, resulting in an increase or decrease of the spin splitting. The step QW, which results in large spin splitting, has advantages in applications to spintronic devices compared with symmetrical and asymmetrical QWs. Due to the special structure design, the spin splitting does not change with the external electric field.

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In this paper we present a methodology and its implementation for the design and verification of programming circuit used in a family of application-specific FPGAs that share a common architecture. Each member of the family is different either in the types of functional blocks contained or in the number of blocks of each type. The parametrized design methodology is presented here to achieve this goal. Even though our focus is on the programming circuitry that provides the interface between the FPGA core circuit and the external programming hardware, the parametrized design method can be generalized to the design of entire chip for all members in the FPGA family. The method presented here covers the generation of the design RTL files and the support files for synthesis, place-and-route layout and simulations. The proposed method is proven to work smoothly within the complete chip design methodology. We will describe the implementation of this method to the design of the programming circuit in details including the design flow from the behavioral-level design to the final layout as well as the verification. Different package options and different programming modes are included in the description of the design. The circuit design implementation is based on SMIC 0.13-micron CMOS technology.