985 resultados para Computer interfaces.


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Workstation clusters equipped with high performance interconnect having programmable network processors facilitate interesting opportunities to enhance the performance of parallel application run on them. In this paper, we propose schemes where certain application level processing in parallel database query execution is performed on the network processor. We evaluate the performance of TPC-H queries executing on a high end cluster where all tuple processing is done on the host processor, using a timed Petri net model, and find that tuple processing costs on the host processor dominate the execution time. These results are validated using a small cluster. We therefore propose 4 schemes where certain tuple processing activity is offloaded to the network processor. The first 2 schemes offload the tuple splitting activity - computation to identify the node on which to process the tuples, resulting in an execution time speedup of 1.09 relative to the base scheme, but with I/O bus becoming the bottleneck resource. In the 3rd scheme in addition to offloading tuple processing activity, the disk and network interface are combined to avoid the I/O bus bottleneck, which results in speedups up to 1.16, but with high host processor utilization. Our 4th scheme where the network processor also performs apart of join operation along with the host processor, gives a speedup of 1.47 along with balanced system resource utilizations. Further we observe that the proposed schemes perform equally well even in a scaled architecture i.e., when the number of processors is increased from 2 to 64

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Na atualidade observa-se vastos estudos sobre os processos na área do Design acerca de como projetar experiências e prototipar interações entre pessoas e sistemas, e mesmo entre pessoas por intermédio de sistemas. Enquanto todo tipo de produto produz uma experiência de uso, com a evolução da interatividade as relações estabelecidas entre os usuários e os produtos tornaram-se mais complexas e modificaram-se ao longo dos anos. A abordagem teórica destinada a tratar essas questões também expandiu e diversificou-se simultaneamente. A partir de um estudo sobre os processos interativos e o campo teórico relacionado, foi possível identificar um fenômeno relativamente recente em interfaces nas quais pode ser verificado um alto nível de interação, a saber: os sistemas de recompensa. Cabe salientar que este termo foi emprestado da Neurociência, aonde é utilizado para descrever o circuito responsável pelo gerenciamento do comportamento através da indução de prazer e dor. Portanto, o autor desta dissertação propõe uma acepção do termo no âmbito do design de componentes interativos para designar o artifício, que muitas interfaces atuais incorporaram, de conceder aos usuários a possibilidade de apreciarem, ou não, determinado conteúdo em rede. Assim, pode-se compreender que o emprego do termo aqui é metafórico. Neste processo os usuários podem fornecer outros tipos de feedback ao sistema, como por exemplo um comentário, ou compartilhamento, estimulando assim uma série de desdobramentos interativos e repercussões para a experiência de uso do produto. Este trabalho propõe uma investigação qualitativa sobre as interações concernentes aos sistemas de recompensa, abordando tanto questões objetivas funcionais dos sistemas, quanto questões referentes ao feedback dos usuários. O Facebook será amplamente analisado, por ter sido uma interface pioneira na manipulação dos sistemas de recompensa, na qual estes componentes alcançaram um alto nível de desenvolvimento até este momento. A justificativa para esta pesquisa se deve a dois fatores particularmente relevantes: primeiro, a ausência de conteúdo significativo na literatura relacionada atual. Em segundo lugar, a notável expansão dos sistemas criados com esta finalidade, conforme será demonstrado no estudo. O objetivo deste projeto é compreender de que forma o design dos sistemas de recompensa influenciam o fluxo de interações e o comportamento dos usuários atualmente. Para tanto, esta pesquisa procura verificar como determinados aspectos teóricos do design - dedicados à compreensão da dinâmica de processos interativos - se aplicam a experiências reais de interação no mundo contemporâneo. Por exemplo, diversos modelos e frameworks nas áreas de HCI (Interação Humano-Computador), UX (experiência do usuário), e design de experiências destacam conceitos condizentes com aspectos identificados nos sistemas de recompensa que por sua vez encontram-se em processo de desenvolvimento, guiados por tendências comerciais de uma forma quase que intuitiva, no sentido de que pouca atenção tem sido dada na literatura sobre as bases neuronais que fazem este processo funcionar. Desta forma, pretende-se fornecer subsídios para uma melhor compreensão do impacto que os sistemas de recompensa analisados nesta dissertação desempenham sobre a experiência de uso entre consumidores e produtos delineados dentro deste paradigma

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Na atualidade observa-se vastos estudos sobre os processos na área do Design acerca de como projetar experiências e prototipar interações entre pessoas e sistemas, e mesmo entre pessoas por intermédio de sistemas. Enquanto todo tipo de produto produz uma experiência de uso, com a evolução da interatividade as relações estabelecidas entre os usuários e os produtos tornaram-se mais complexas e modificaram-se ao longo dos anos. A abordagem teórica destinada a tratar essas questões também expandiu e diversificou-se simultaneamente. A partir de um estudo sobre os processos interativos e o campo teórico relacionado, foi possível identificar um fenômeno relativamente recente em interfaces nas quais pode ser verificado um alto nível de interação, a saber: os sistemas de recompensa. Cabe salientar que este termo foi emprestado da Neurociência, aonde é utilizado para descrever o circuito responsável pelo gerenciamento do comportamento através da indução de prazer e dor. Portanto, o autor desta dissertação propõe uma acepção do termo no âmbito do design de componentes interativos para designar o artifício, que muitas interfaces atuais incorporaram, de conceder aos usuários a possibilidade de apreciarem, ou não, determinado conteúdo em rede. Assim, pode-se compreender que o emprego do termo aqui é metafórico. Neste processo os usuários podem fornecer outros tipos de feedback ao sistema, como por exemplo um comentário, ou compartilhamento, estimulando assim uma série de desdobramentos interativos e repercussões para a experiência de uso do produto. Este trabalho propõe uma investigação qualitativa sobre as interações concernentes aos sistemas de recompensa, abordando tanto questões objetivas funcionais dos sistemas, quanto questões referentes ao feedback dos usuários. O Facebook será amplamente analisado, por ter sido uma interface pioneira na manipulação dos sistemas de recompensa, na qual estes componentes alcançaram um alto nível de desenvolvimento até este momento. A justificativa para esta pesquisa se deve a dois fatores particularmente relevantes: primeiro, a ausência de conteúdo significativo na literatura relacionada atual. Em segundo lugar, a notável expansão dos sistemas criados com esta finalidade, conforme será demonstrado no estudo. O objetivo deste projeto é compreender de que forma o design dos sistemas de recompensa influenciam o fluxo de interações e o comportamento dos usuários atualmente. Para tanto, esta pesquisa procura verificar como determinados aspectos teóricos do design - dedicados à compreensão da dinâmica de processos interativos - se aplicam a experiências reais de interação no mundo contemporâneo. Por exemplo, diversos modelos e frameworks nas áreas de HCI (Interação Humano-Computador), UX (experiência do usuário), e design de experiências destacam conceitos condizentes com aspectos identificados nos sistemas de recompensa que por sua vez encontram-se em processo de desenvolvimento, guiados por tendências comerciais de uma forma quase que intuitiva, no sentido de que pouca atenção tem sido dada na literatura sobre as bases neuronais que fazem este processo funcionar. Desta forma, pretende-se fornecer subsídios para uma melhor compreensão do impacto que os sistemas de recompensa analisados nesta dissertação desempenham sobre a experiência de uso entre consumidores e produtos delineados dentro deste paradigma.

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Elderly and disabled people can be hugely benefited through the advancement of modern electronic devices, as those can help them to engage more fully with the world. However, existing design practices often isolate elderly or disabled users by considering them as users with special needs. This article presents a simulator that can reflect problems faced by elderly and disabled users while they use computer, television, and similar electronic devices. The simulator embodies both the internal state of an application and the perceptual, cognitive, and motor processes of its user. It can help interface designers to understand, visualize, and measure the effect of impairment on interaction with an interface. Initially a brief survey of different user modeling techniques is presented, and then the existing models are classified into different categories. In the context of existing modeling approaches the work on user modeling is presented for people with a wide range of abilities. A few applications of the simulator, which shows the predictions are accurate enough to make design choices and point out the implication and limitations of the work, are also discussed. © 2012 Copyright Taylor and Francis Group, LLC.

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Intelligent assistive technology can greatly improve the daily lives of people with severe paralysis, who have limited communication abilities. People with motion impairments often prefer camera-based communication interfaces, because these are customizable, comfortable, and do not require user-borne accessories that could draw attention to their disability. We present an overview of assistive software that we specifically designed for camera-based interfaces such as the Camera Mouse, which serves as a mouse-replacement input system. The applications include software for text-entry, web browsing, image editing, animation, and music therapy. Using this software, people with severe motion impairments can communicate with friends and family and have a medium to explore their creativity.

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A method called "SymbolDesign" is proposed that can be used to design user-centered interfaces for pen-based input devices. It can also extend the functionality of pointer input devices such as the traditional computer mouse or the Camera Mouse, a camera-based computer interface. Users can create their own interfaces by choosing single-stroke movement patterns that are convenient to draw with the selected input device and by mapping them to a desired set of commands. A pattern could be the trace of a moving finger detected with the Camera Mouse or a symbol drawn with an optical pen. The core of the SymbolDesign system is a dynamically created classifier, in the current implementation an artificial neural network. The architecture of the neural network automatically adjusts according to the complexity of the classification task. In experiments, subjects used the SymbolDesign method to design and test the interfaces they created, for example, to browse the web. The experiments demonstrated good recognition accuracy and responsiveness of the user interfaces. The method provided an easily-designed and easily-used computer input mechanism for people without physical limitations, and, with some modifications, has the potential to become a computer access tool for people with severe paralysis.

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This research investigates some of the reasons for the reported difficulties experienced by writers when using editing software designed for structured documents. The overall objective was to determine if there are aspects of the software interfaces which militate against optimal document construction by writers who are not computer experts, and to suggest possible remedies. Studies were undertaken to explore the nature and extent of the difficulties, and to identify which components of the software interfaces are involved. A model of a revised user interface was tested, and some possible adaptations to the interface are proposed which may help overcome the difficulties. The methodology comprised: 1. identification and description of the nature of a ‘structured document’ and what distinguishes it from other types of document used on computers; 2. isolation of the requirements of users of such documents, and the construction a set of personas which describe them; 3. evaluation of other work on the interaction between humans and computers, specifically in software for creating and editing structured documents; 4. estimation of the levels of adoption of the available software for editing structured documents and the reactions of existing users to it, with specific reference to difficulties encountered in using it; 5. examination of the software and identification of any mismatches between the expectations of users and the facilities provided by the software; 6. assessment of any physical or psychological factors in the reported difficulties experienced, and to determine what (if any) changes to the software might affect these. The conclusions are that seven of the twelve modifications tested could contribute to an improvement in usability, effectiveness, and efficiency when writing structured text (new document selection; adding new sections and new lists; identifying key information typographically; the creation of cross-references and bibliographic references; and the inclusion of parts of other documents). The remaining five were seen as more applicable to editing existing material than authoring new text (adding new elements; splitting and joining elements [before and after]; and moving block text).

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The work presented in this paper is part of the OPISA project. This is a collaborative research project between the University of Greenwich and Bookham Technology. This report describes some of the initial work undertaken towards the goal of investigating optoelectronic packaging where alignment issues between optical sources and fibers can arise as part of the fabrication process. The focus of this study is on charting the dynamics of laser spot weld formation. This paper introduces some of the initial simulation work that has been undertaken and presents a model describing a transient heat source applied from a laser pulse to weld a stainless steel sleeve and ferrule and the resulting weld formation

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Ball shear test is the most common test method used to assess the reliability of bond strength for ball grid array (BGA) packages. In this work, a combined experimental and numerical study was carried out to realize of BGA solder interface strength. Solder mask defined bond pads on the BGA substrate were used for BGA ball bonding. Different bond pad metallizations and solder alloys were used. Solid state aging at 150degC up to 1000 h has been carried out to change the interfacial microstructure. Cross-sectional studies of the solder-to-bond pad interfaces was conducted by scanning electron microscopy (SEM) equipped with an energy dispersive X-ray (EDX) analyzer to investigate the interfacial reaction phenomena. Ball shear tests have been carried out to obtain the mechanical strength of the solder joints and to correlate shear behaviour with the interfacial reaction products. An attempt has been taken to realize experimental findings by Finite Element Analysis (FEA). It was found that intermetallic compound (IMC) formation at the solder interface plays an important role in the BGA solder bond strength. By changing the morphology and the microchemistry of IMCs, the fracture propagation path could be changed and hence, reliability could be improved

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In this article, the representation of the merging process at the floor— stair interface is examined within a comprehensive evacuation model and trends found in experimental data are compared with model predictions. The analysis suggests that the representation of floor—stair merging within the comprehensive model appears to be consistent with trends observed within several published experiments of the merging process. In particular: (a) The floor flow rate onto the stairs decreases as the stair population density increases. (b) For a given stair population density, the floor population's flow rate onto the stairs can be maximized by connecting the floor to the landing adjacent to the incoming stair. (c) In situations where the floor is connected adjacent to the incoming stair, the merging process appears to be biased in favor of the floor population. It is further conjectured that when the floor is connected opposite the incoming stair, the merging process between the stair and floor streams is almost in balance for high stair population densities, with a slight bias in favor of the floor stream at low population densities. A key practical finding of this analysis is that the speed at which a floor can be emptied onto a stair can be enhanced simply by connecting the floor to the landing at a location adjacent to the incoming stair rather than opposite the stair. Configuring the stair in this way, while reducing the floor emptying time, results in a corresponding decrease in the descent flow rate of those already on the stairs. While this is expected to have a negligible impact on the overall time to evacuate the building, the evacuation time for those higher up in the building is extended while those on the lower flows is reduced. It is thus suggested that in high-rise buildings, floors should be connected to the landing on the opposite side to the incoming stair. Information of this type will allow engineers to better design stair—floor interfaces to meet specific design objectives.

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In power electronics modules, heavy aluminium wires, i.e. wire diameters greater than 100 microns, are bonded to the active semiconductor devices and conductor metallization to form electric circuits of the power electronic module. Due to the high currents that may flow through these wires, a single connection usually contains several wires and thus, a large number of wires are used in a power electronics module. Under normal operation or test condition, a significant amount of stresses and strains induced in the wire and bonding interfaces, resulting in failure over time. In this paper, computer modelling techniques are used to analyse the effect of globtop design on the reliability of aluminium wirebonds under cyclic thermal-mechanical loading conditions. The results will show the sensitivity of the reliability of the wirebonds to the changes in the geometry and the material properties of the wirebond globtop.

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In the present paper, a phase-field model is developed to simulate the formation and evolution of lamellar microstructure in γ-TiAl alloys. The mechanism of formation of TiAl lamellae proposed by Denquin and Naka is incorporated into the model. The model describes the formation and evolution of the face-centered cubic (fcc) stacking lamellar zone followed by the subsequent appearance and growth of the γ-phase, involving both the chemical composition change by atom transfer and the ordering of the fcc lattice. The thermodynamics of the model system and the interaction between the displacive and diffusional transformations are described by a non-equilibrium free energy formulated as a function of concentration and structural order parameter fields. The long-range elastic interactions, arising from the lattice misfit between the α, fcc (A1) and the various orientation variants of the γ-phase are taken into account by incorporating of the elastic strain energy into the total free energy. Simulation studies based on the model successfully predicted some essential features of the lamellar structure. It is found that the formation and evolution of the lamellar structure are predominantly controlled by the minimization of the elastic energy of the interfaces between the different fcc stacking groups, low-symmetry product phase γ and the high-symmetry α-phase, as well as between the various orientation variants of the product phase.