937 resultados para Interfaces gráficas-design - Interacção


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With the rapid growth of the Internet and digital communications, the volume of sensitive electronic transactions being transferred and stored over and on insecure media has increased dramatically in recent years. The growing demand for cryptographic systems to secure this data, across a multitude of platforms, ranging from large servers to small mobile devices and smart cards, has necessitated research into low cost, flexible and secure solutions. As constraints on architectures such as area, speed and power become key factors in choosing a cryptosystem, methods for speeding up the development and evaluation process are necessary. This thesis investigates flexible hardware architectures for the main components of a cryptographic system. Dedicated hardware accelerators can provide significant performance improvements when compared to implementations on general purpose processors. Each of the designs proposed are analysed in terms of speed, area, power, energy and efficiency. Field Programmable Gate Arrays (FPGAs) are chosen as the development platform due to their fast development time and reconfigurable nature. Firstly, a reconfigurable architecture for performing elliptic curve point scalar multiplication on an FPGA is presented. Elliptic curve cryptography is one such method to secure data, offering similar security levels to traditional systems, such as RSA, but with smaller key sizes, translating into lower memory and bandwidth requirements. The architecture is implemented using different underlying algorithms and coordinates for dedicated Double-and-Add algorithms, twisted Edwards algorithms and SPA secure algorithms, and its power consumption and energy on an FPGA measured. Hardware implementation results for these new algorithms are compared against their software counterparts and the best choices for minimum area-time and area-energy circuits are then identified and examined for larger key and field sizes. Secondly, implementation methods for another component of a cryptographic system, namely hash functions, developed in the recently concluded SHA-3 hash competition are presented. Various designs from the three rounds of the NIST run competition are implemented on FPGA along with an interface to allow fair comparison of the different hash functions when operating in a standardised and constrained environment. Different methods of implementation for the designs and their subsequent performance is examined in terms of throughput, area and energy costs using various constraint metrics. Comparing many different implementation methods and algorithms is nontrivial. Another aim of this thesis is the development of generic interfaces used both to reduce implementation and test time and also to enable fair baseline comparisons of different algorithms when operating in a standardised and constrained environment. Finally, a hardware-software co-design cryptographic architecture is presented. This architecture is capable of supporting multiple types of cryptographic algorithms and is described through an application for performing public key cryptography, namely the Elliptic Curve Digital Signature Algorithm (ECDSA). This architecture makes use of the elliptic curve architecture and the hash functions described previously. These components, along with a random number generator, provide hardware acceleration for a Microblaze based cryptographic system. The trade-off in terms of performance for flexibility is discussed using dedicated software, and hardware-software co-design implementations of the elliptic curve point scalar multiplication block. Results are then presented in terms of the overall cryptographic system.

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Diminishing non-renewable energy resources and planet-wide de-pollution on our planet are among the major problems which mankind faces into the future. To solve these problems, renewable energy sources such as readily available and inexhaustible sunlight will have to be used. There are however no readily available photocatalysts that are photocatalytically active under visible light; it is well established that the band gap of the prototypical photocatalyst, titanium dioxide, is the UV region with the consequence that only 4% of sun light is utilized. For this reason, this PhD project focused on developing new materials, based on titanium dioxide, which can be used in visible light activated photocatalytic hydrogen production and destruction of pollutant molecules. The main goal of this project is to use simulations based on first principles to engineer and understand rationally, materials based on modifying TiO2 that will have the following properties: (1) a suitable band gap in order to increase the efficiency of visible light absorption, with a gap around 2 – 2.5 eV considered optimum. (2). The second key aspect in the photocatalytic process is electron and hole separation after photoexcitation, which enable oxidation/reduction reactions necessary to i.e. decompose pollutants. (3) Enhanced activity over unmodified TiO2. In this thesis I present results on new materials based on modifying TiO2 with supported metal oxide nanoclusters, from two classes, namely: transition metal oxides (Ti, Ni, Cu) and p-block metal oxides (Sn, Pb, Bi). We find that the deposited metal oxide nanoclusters are stable at rutile and anatase TiO2 surfaces and present an analysis of changes to the band gap of TiO2, identifying those modifiers that can change the band gap to the desirable range and the origin of this. A successful collaboration with experimental researchers in Japan confirms many of the simulation results where the origin of improved visible light photocatalytic activity of oxide nanocluster-modified TiO2 is now well understood. The work presented in this thesis, creates a road map for the design of materials with desired photocatalytic properties and contributes to better understanding these properties which are of great application in renewable energy utilization.

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This study involves two aspects of our investigations of plasmonics-active systems: (i) theoretical and simulation studies and (ii) experimental fabrication of plasmonics-active nanostructures. Two types of nanostructures are selected as the model systems for their unique plasmonics properties: (1) nanoparticles and (2) nanowires on substrate. Special focus is devoted to regions where the electromagnetic field is strongly concentrated by the metallic nanostructures or between nanostructures. The theoretical investigations deal with dimers of nanoparticles and nanoshells using a semi-analytical method based on a multipole expansion (ME) and the finite-element method (FEM) in order to determine the electromagnetic enhancement, especially at the interface areas of two adjacent nanoparticles. The experimental study involves the design of plasmonics-active nanowire arrays on substrates that can provide efficient electromagnetic enhancement in regions around and between the nanostructures. Fabrication of these nanowire structures over large chip-scale areas (from a few millimeters to a few centimeters) as well as FDTD simulations to estimate the EM fields between the nanowires are described. The application of these nanowire chips using surface-enhanced Raman scattering (SERS) for detection of chemicals and labeled DNA molecules is described to illustrate the potential of the plasmonics chips for sensing.

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In this paper, we propose a theoretical framework for the design of tangible interfaces for musical expression. The main insight for the proposed approach is the importance and utility of familiar sensorimotor experiences for the creation of engaging and playable new musical instruments. In particular, we suggest exploiting the commonalities between different natural interactions by varying the auditory response or tactile details of the instrument within certain limits. Using this principle, devices for classes of sounds such as coarse grain collision interactions or friction interactions can be designed. The designs we propose retain the familiar tactile aspect of the interaction so that the performer can take advantage of tacit knowledge gained through experiences with such phenomena in the real world.

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Electron beam trajectory simulations have been performed to design a new electron beam ion trap. The design of the magnet and electrode structures was optimized based on the results of the simulations. (C) 2003 Elsevier Science B.V. All rights reserved.

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Per-core scratchpad memories (or local stores) allow direct inter-core communication, with latency and energy advantages over coherent cache-based communication, especially as CMP architectures become more distributed. We have designed cache-integrated network interfaces, appropriate for scalable multicores, that combine the best of two worlds – the flexibility of caches and the efficiency of scratchpad memories: on-chip SRAM is configurably shared among caching, scratchpad, and virtualized network interface (NI) functions. This paper presents our architecture, which provides local and remote scratchpad access, to either individual words or multiword blocks through RDMA copy. Furthermore, we introduce event responses, as a technique that enables software configurable communication and synchronization primitives. We present three event response mechanisms that expose NI functionality to software, for multiword transfer initiation, completion notifications for software selected sets of arbitrary size transfers, and multi-party synchronization queues. We implemented these mechanisms in a four-core FPGA prototype, and measure the logic overhead over a cache-only design for basic NI functionality to be less than 20%. We also evaluate the on-chip communication performance on the prototype, as well as the performance of synchronization functions with simulation of CMPs with up to 128 cores. We demonstrate efficient synchronization, low-overhead communication, and amortized-overhead bulk transfers, which allow parallelization gains for fine-grain tasks, and efficient exploitation of the hardware bandwidth.

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The scale of the Software-Defined Network (SDN) Controller design problem has become apparent with the expansion of SDN deployments. Initial SDN deployments were small-scale, single controller environments for research and usecase testing. Today, enterprise deployments requiring multiple controllers are gathering momentum e.g. Google’s backbone network, Microsoft’s public cloud, and NTT’s edge gateway. Third-party applications are also becoming available e.g. HP SDN App Store. The increase in components and interfaces for the evolved SDN implementation increases the security challenges of the SDN controller design. In this work, the requirements of a secure, robust, and resilient SDN controller are identified, stateof-the-art open-source SDN controllers are analyzed with respect to the security of their design, and recommendations for security improvements are provided. This contribution highlights the gap between the potential security solutions for SDN controllers and the actual security level of current controller designs.

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Constatada que foi uma lacuna na área da história do design gráfico português, a necessidade deste estudo surgiu naturalmente no sentido, se não de a colmatar pelo menos de a diminuir. Consequentemente, realizou-se a investigação desde o séc. XVII ao séc. XX. O trabalho baseou-se primeiramente na pesquisa de material, quer na Biblioteca Nacional de Portugal, quer na colecção de Madeira Luís em arquivo na Universidade de Aveiro. Foram ainda realizadas entrevistas a designers no sentido de obter um conhecimento maior sobre a prática de projecto, nomeadamente do projecto do cartaz. Foi selecionada uma amostra que se considerou representativa e criou-se uma base de dados no sentido de sistematizar os conteúdos que interessavam ser estudados. Essa amostra foi posteriormente objecto de uma selecção por parte de dez especialistas convidados. Paralelamente, analisaram-se os cartazes dessa selecção do ponto de vista do design utilizando como metodologia a aplicação do modelo triangular (autoria, tecnologia, programa) de Francisco Providência. Concluiu-se que a história do design do cartaz português é resultado de um conjunto de interacções que se prendem com os acontecimentos políticos, económicos, culturais que se devem mesclar com a prática projectual realçando a importância e a intervenção da autoria nesse processo. Importou revelar uma visão interna da disciplina narrada pela autoria. Considerando as hipóteses de investigação e a abordagem metodológica utilizada, foi possível obter uma perspectiva centrada no design sobre a história do design do cartaz português.

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Partindo da ideia de ʻDesign Globalʼ e tendo como pano de fundo a emergência e consolidação de novos paradigmas de interação baseados numa relação mais direta entre o corpo e os conteúdos digitais, a presente tese aborda a questão da (re)qualificação da experiência humana tecnologicamente mediada do ponto de vista do Design, designadamente do Design de Interação e do Design da Experiência. Neste contexto, a noção de ʻexperiência tecnologicamente (i)mediadaʼ representa uma ação humana que é, simultaneamente, mediada (do ponto de vista técnico) e direta ou imediada (do ponto de vista da percepção) entre o ser e a sua ação no mundo. Dado o objecto de estudo ser a experiência real que os objetos e dispositivos técnicos convocam designadamente na vida quotidiana, o nosso estudo implica toda a dinâmica holística da relação singular – racional, emocional, estética e projetiva – do ser com o seu mundo. Desse modo, defende-se a necessidade de enquadrar a raiz do pensamento e ação em Design numa hermenêutica fenomenológica e ontológica do projeto. Esta tese visa desta forma contribuir para apuramento e consolidação de uma praxis transdisciplinar para os designers e restantes intervenientes do processo do Design, cujo desígnio é a (re)qualificação da experiência que os artefactos e dispositivos técnicos convocam, assim como na apropriação e vínculo que a pessoa estabelece com estes. O resultado deste estudo sintetiza-se nos seguintes objetivos: 1. no desenvolvimento de conceitos operativos que estruturem o pensamento de uma Filosofia da Ação em Design com base numa prática que designamos por “design centrado-no-ser”; 2. na reflexão da experiência tecnológica através do conceito do estado de fluxo de Mihaly Csikszentmihalyi, enquadrando essa tipologia de experiências no contexto de uma vida, ou seja, no projeto de um eu; 3. na problematização da (re)qualificação da experiência técnica numa perspetiva de vida mais alargada que envolve o princípio de simetria entre ação ética e ação estética no pensamento e prática em Design; 4. na definição de um quadro de ações que manifesta a aplicabilidade dos conceitos desenvolvidos no ensino, investigação e prática do Design.

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A informação inerente aos medicamentos no processo de medicação e prescrição tem revelado insuficiências relativamente às necessidades do utilizador. Este projecto aborda essas dificuldades e procura contribuir, através do design e avaliação de pictogramas farmacêuticos, para um melhor acesso das pessoas à informação, oral e escrita, prestada por médicos, farmacêuticos e pela literatura inclusa dos medicamentos. Verificámos que, nos últimos 40 anos, se desenvolveram quase mil representações gráficas, provenientes de 20 países, sobre mensagens relativas a perigos, precauções e informações de como tomar o medicamento. Com base nesse conjunto mundial colectado, tão alargado e diversificado, procedeu-se à analise, agrupamento e comparação dessas representações com vista a apurar a diversidade gráfica e escrita das 75 mensagens farmacêuticas identificadas nesta investigação. Foi seguidamente consultada uma centena de profissionais de saúde dentro da área farmacêutica para selecção e definição da informação a ser projectada em pictogramas. Algumas das mensagens seleccionadas foram, por ordem de importância: “Não aplicar nos olhos”, “Não beber álcool enquanto estiver a tomar o medicamento” e “Guardar no frigorífico”. Foi concebido um sistema PictoPharma, bilingue (Português e Inglês), composto por 32 pictogramas farmacêuticos, com várias possibilidades cromáticas de acordo com as diversas aplicações para suportes de impressão e ecrã (Registo de Propriedade Industrial – marca e design). Embora o sistema projectado possa aumentar a capacidade de recordar as informações importantes pelas pessoas em geral, os públicos-alvo que mais beneficiarão com o sistema são: pessoas que apresentam especiais dificuldades de leitura - analfabetos, pessoas com nenhum conhecimento ou um conhecimento limitado da língua; pessoas com dificuldades para relembrar e / ou compreender o tratamento - população envelhecida, sob múltiplos tratamentos ou com menores capacidades intelectuais; pessoas que não falam a língua local ou são de uma cultura diferente - estrangeiros, turistas, imigrantes. Foram feitos testes de usabilidade com os públicos-alvo específicos, de forma a verificar a percentagem de compreensão dos pictogramas, sem a respectiva legenda e de acordo com as normas internacionais de normalização. Os resultados dos testes indicaram que metade do sistema atingiu os 100% de compreensão e a outra metade atingiu mais de 88%. O sistema PictoPharma criado caracteriza-se: pelo design gráfico no seu contraste visual e na possibilidade de leitura numa escala reduzida; pelo conceito de familiaridade gráfica representada no seu conjunto, de forma a tornar os pictogramas mais facilmente memorizáveis; pelo estudo feito para minimizar especificidades culturais visuais; pelas diversas aplicações possíveis na indústria; pelas direcções que aponta para futuras investigações sobre as escolhas visuais culturais inerentes a um projecto de design com este.

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The expectations of citizens from the Information Technologies (ITs) are increasing as the ITs have become integral part of our society, serving all kinds of activities whether professional, leisure, safety-critical applications or business. Hence, the limitations of the traditional network designs to provide innovative and enhanced services and applications motivated a consensus to integrate all services over packet switching infrastructures, using the Internet Protocol, so as to leverage flexible control and economical benefits in the Next Generation Networks (NGNs). However, the Internet is not capable of treating services differently while each service has its own requirements (e.g., Quality of Service - QoS). Therefore, the need for more evolved forms of communications has driven to radical changes of architectural and layering designs which demand appropriate solutions for service admission and network resources control. This Thesis addresses QoS and network control issues, aiming to improve overall control performance in current and future networks which classify services into classes. The Thesis is divided into three parts. In the first part, we propose two resource over-reservation algorithms, a Class-based bandwidth Over-Reservation (COR) and an Enhanced COR (ECOR). The over-reservation means reserving more bandwidth than a Class of Service (CoS) needs, so the QoS reservation signalling rate is reduced. COR and ECOR allow for dynamically defining over-reservation parameters for CoSs based on network interfaces resource conditions; they aim to reduce QoS signalling and related overhead without incurring CoS starvation or waste of bandwidth. ECOR differs from COR by allowing for optimizing control overhead minimization. Further, we propose a centralized control mechanism called Advanced Centralization Architecture (ACA), that uses a single state-full Control Decision Point (CDP) which maintains a good view of its underlying network topology and the related links resource statistics on real-time basis to control the overall network. It is very important to mention that, in this Thesis, we use multicast trees as the basis for session transport, not only for group communication purposes, but mainly to pin packets of a session mapped to a tree to follow the desired tree. Our simulation results prove a drastic reduction of QoS control signalling and the related overhead without QoS violation or waste of resources. Besides, we provide a generic-purpose analytical model to assess the impact of various parameters (e.g., link capacity, session dynamics, etc.) that generally challenge resource overprovisioning control. In the second part of this Thesis, we propose a decentralization control mechanism called Advanced Class-based resource OverpRovisioning (ACOR), that aims to achieve better scalability than the ACA approach. ACOR enables multiple CDPs, distributed at network edge, to cooperate and exchange appropriate control data (e.g., trees and bandwidth usage information) such that each CDP is able to maintain a good knowledge of the network topology and the related links resource statistics on real-time basis. From scalability perspective, ACOR cooperation is selective, meaning that control information is exchanged dynamically among only the CDPs which are concerned (correlated). Moreover, the synchronization is carried out through our proposed concept of Virtual Over-Provisioned Resource (VOPR), which is a share of over-reservations of each interface to each tree that uses the interface. Thus, each CDP can process several session requests over a tree without requiring synchronization between the correlated CDPs as long as the VOPR of the tree is not exhausted. Analytical and simulation results demonstrate that aggregate over-reservation control in decentralized scenarios keep low signalling without QoS violations or waste of resources. We also introduced a control signalling protocol called ACOR Protocol (ACOR-P) to support the centralization and decentralization designs in this Thesis. Further, we propose an Extended ACOR (E-ACOR) which aggregates the VOPR of all trees that originate at the same CDP, and more session requests can be processed without synchronization when compared with ACOR. In addition, E-ACOR introduces a mechanism to efficiently track network congestion information to prevent unnecessary synchronization during congestion time when VOPRs would exhaust upon every session request. The performance evaluation through analytical and simulation results proves the superiority of E-ACOR in minimizing overall control signalling overhead while keeping all advantages of ACOR, that is, without incurring QoS violations or waste of resources. The last part of this Thesis includes the Survivable ACOR (SACOR) proposal to support stable operations of the QoS and network control mechanisms in case of failures and recoveries (e.g., of links and nodes). The performance results show flexible survivability characterized by fast convergence time and differentiation of traffic re-routing under efficient resource utilization i.e. without wasting bandwidth. In summary, the QoS and architectural control mechanisms proposed in this Thesis provide efficient and scalable support for network control key sub-systems (e.g., QoS and resource control, traffic engineering, multicasting, etc.), and thus allow for optimizing network overall control performance.

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The promise of a truly mobile experience is to have the freedom to roam around anywhere and not be bound to a single location. However, the energy required to keep mobile devices connected to the network over extended periods of time quickly dissipates. In fact, energy is a critical resource in the design of wireless networks since wireless devices are usually powered by batteries. Furthermore, multi-standard mobile devices are allowing users to enjoy higher data rates with ubiquitous connectivity. However, the bene ts gained from multiple interfaces come at a cost in terms of energy consumption having profound e ect on the mobile battery lifetime and standby time. This concern is rea rmed by the fact that battery lifetime is one of the top reasons why consumers are deterred from using advanced multimedia services on their mobile on a frequent basis. In order to secure market penetration for next generation services energy e ciency needs to be placed at the forefront of system design. However, despite recent e orts, energy compliant features in legacy technologies are still in its infancy, and new disruptive architectures coupled with interdisciplinary design approaches are required in order to not only promote the energy gain within a single protocol layer, but to enhance the energy gain from a holistic perspective. A promising approach is cooperative smart systems, that in addition to exploiting context information, are entities that are able to form a coalition and cooperate in order to achieve a common goal. Migrating from this baseline, this thesis investigates how these technology paradigm can be applied towards reducing the energy consumption in mobile networks. In addition, we introduce an additional energy saving dimension by adopting an interlayer design so that protocol layers are designed to work in synergy with the host system, rather than independently, for harnessing energy. In this work, we exploit context information, cooperation and inter-layer design for developing new energy e cient and technology agnostic building blocks for mobile networks. These technology enablers include energy e cient node discovery and short-range cooperation for energy saving in mobile handsets, complemented by energy-aware smart scheduling for promoting energy saving on the network side. Analytical and simulations results were obtained, and veri ed in the lab on a real hardware testbed. Results have shown that up to 50% energy saving could be obtained.

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A edição 2015 da Conferência Internacional Ergotrip Design, com enfoque nas áreas de Design, Ergonomia & Interação Humano- --Computador, atravessa o Atlântico e visita a cidade de Aveiro entre os dias 25 e 28 de novembro. O evento de origem brasileira, que se realiza pela primeiro vez fora do Brasil, tem como intuito promover e alargar a cooperação e aproximar estes dois países que tanto tem de comum. A Universidade de Aveiro acolhe a edição deste ano, com organização a cargo do Departamento de Comunicação e Arte (DeCA) e pela unidade de investigação associada ID+. Instituto de Investigação em Design, Media e Cultura. Com esta iniciativa, pretende-se fundar um espaço aberto à comunidade académica, para discutir, disseminar e incentivar a cultura de projeto, desenvolvimento e investigação. Com a realização do ERGOTRIP DESIGN Aveiro 2015 pretende-se criar um ambiente favorável à partilha, diálogo, cruzamento de ideias e de conceitos, potenciando os trabalhos académicos e fortalecendo as redes de contactos transatlânticos, reunindo diferentes domínios de investigação desde Design, Ergonomia e Interação Humano-Computador.

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Tese de doutoramento, Informática (Engenharia Informática), Universidade de Lisboa, Faculdade de Ciências, 2014

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Tese de doutoramento, Farmácia (Química Farmacêutica e Terapêutica), Universidade de Lisboa, Faculdade de Farmácia, 2014