755 resultados para Engenharia Eletrotécnica
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Dissertação de Mestrado, Engenharia Informática, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2014
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Dissertação de mestrado, Engenharia Electrónica e Telecomunicações, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2011
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Dissertação de Mestrado, Ensino de Informática, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2014
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Dissertação de mest. em Engenharia de Sistemas e Computação - Área de Sistemas de Controlo, Faculdade de Ciências e Tecnologia, Univ.do Algarve, 2001
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Dissertação de dout. em Electrónica e Computação, Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2004
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Dissertação de mest. em Engenharia de Sistemas e Computação, Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2002
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Na atualidade, as estruturas e serviços de redes informáticas massificaram-se de forma heterogénea. Aumenta, assim, a importância de garantir aos utilizadores, segurança, fiabilidade e disponibilidade da rede. Posto isto, os administradores de redes têm de manter uma qualidade de serviço elevada utilizando novas formas de vigiar a rede. No âmbito deste projeto, o trabalho desenvolvido, atendendo às necessidades principais do ambiente a ser monitorizado, pretende-se implementar uma solução integrada de gestão das Tecnologias de Informação da Universidade da Madeira, para permitir uma gestão preventiva e corretiva. A abordagem selecionada começou com a fundamentação e conceitos teóricos sobre a gestão de rede, apresentando modelos de gestão de redes e o estudo de quatro sistemas, de domínio público, de gestão e monitorização de redes, destacando as suas principais arquiteturas e funcionalidades. O trabalho continuou com a contextualização do problema através do estudo e descrição da dimensão e da heterogeneidade da rede da Universidade da Madeira. Prosseguiu com a criação de vários cenários de rede que serão utilizados ao longo do trabalho, como apoio nas três partes em que este foi dividido para obter a solução pretendida, nomeadamente a “Contextualização do problema”, “Análise e Desenho da solução” e “Implementação da solução”. Na criação de uma arquitetura de uma solução, tendo em conta as prioridades definidas pelo gestor de rede, este trabalho fornece à Universidade da Madeira um sistema de monitorização e gestão integrada, através do qual os seus gestores de rede poderão, de forma eficiente e contínua, gerir as Tecnologias de Informação pertencentes a esta Instituição.
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Esta dissertação contextualiza e descreve a actividade prática do quotidiano de um gestor de redes informáticas modernas. Define Network Operations Center (NOC) e a sua importância como provedor de serviços de Internet, e aborda a gestão de redes como alicerce teórico mediante a tomada de decisões que a tarefa de gestão coloca. É com base na complexidade da tarefa de gestão que surge a necessidade e o aparecimento consequente de Plataformas de Gestão. Estas plataformas não só auxiliam na tarefa para a qual foram desenvolvidas como substituem todo um conjunto de ferramentas tradicionais, limitadas para a realidade das infraestruturas de telecomunicações actuais. O estudo do NOC da NOS Madeira enfatiza a problemática que as infra-estruturas de média e grande dimensão comportam para os gestores de redes que lá operam. As limitações da plataforma de gestão em uso referentes à definição e organização de utilizadores, dispositivos e grupos respectivos, conjuntamente com a falta de parametrização em notificações justificam uma solução. Aqui, é feita uma análise e um levantamento de requisitos para a selecção da nova plataforma de gestão seguida da proposta de uma solução integrada para resolução do problema. Esta proposta envolve a definição de uma arquitectura, o desenho e a implementação de software próprios para um sistema particular ao qual designamos: ZenDash.
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This thesis presents a cloud-based software platform for sharing publicly available scientific datasets. The proposed platform leverages the potential of NoSQL databases and asynchronous IO technologies, such as Node.JS, in order to achieve high performances and flexible solutions. This solution will serve two main groups of users. The dataset providers, which are the researchers responsible for sharing and maintaining datasets, and the dataset users, that are those who desire to access the public data. To the former are given tools to easily publish and maintain large volumes of data, whereas the later are given tools to enable the preview and creation of subsets of the original data through the introduction of filter and aggregation operations. The choice of NoSQL over more traditional RDDMS emerged from and extended benchmark between relational databases (MySQL) and NoSQL (MongoDB) that is also presented in this thesis. The obtained results come to confirm the theoretical guarantees that NoSQL databases are more suitable for the kind of data that our system users will be handling, i. e., non-homogeneous data structures that can grow really fast. It is envisioned that a platform like this can lead the way to a new era of scientific data sharing where researchers are able to easily share and access all kinds of datasets, and even in more advanced scenarios be presented with recommended datasets and already existing research results on top of those recommendations.
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In this thesis we aimed to explore the potential of gamification - defined as “the use of game elements in non-game contexts” [30] - in increasing children's (aged 5 to 6) engagement with the task. This is mainly due to the fact that our world is living a technological era, and videogames are an example of this engagement by being able to maintain children’s (and adults) engagement for hours straight. For the purpose of limiting complexity, we only addressed the feedback element by introducing it with an anthropomorphic virtual agent (human-like aspect), because research shows that virtual agents (VA’s) can influence behavioural change [17], or even induce emotions on humans both through the use of feedback provided and their facial expressions, which can interpreted in the same way as of humans’ [2]. By pairing the VA with the gamification concept, we wanted to 1) create a VA that is likely to be well-received by children (appearance and behaviour), and 2) have the immediate feedback that games have, so we can give children an assessment of their actions in real-time, as opposed to waiting for feedback from someone (traditional teaching), and with this give students more chances to succeed [32, 43]. Our final system consisted on a virtual environment, where children formed words that corresponded to a given image. In order to measure the impact that the VA had on engagement, the system was developed in two versions: one version of the system was limited to provide a simple feedback environment, where the VA provided feedback, by responding with simple phrases (i.e. “correct” or “incorrect”); for the second version, the VA had a more complex approach where it tried to encourage children to complete the word – a motivational feedback - even when they weren’t succeeding. Lastly we conducted a field study with two groups of children, where one group tested the version with the simple feedback, and the other group tested the ‘motivational’ version of the system. We used a quantitative approach to analyze the collected data that measured the engagement, based on the number of tasks (words) completed and time spent with system. The results of the evaluation showed that the use of motivational feedback may carry a positive effect on engaging children.
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With increasing concerns about the impact of global warming on human life, policy makers around the world and researchers have sought for technological solutions that have the potential to attenuate this process. This thesis describes the design and evaluation of an information appliance that aims to increase the use of public transportation. We developed a mobile glanceable display that, being aware of the user’s transportation routines, provides awareness cues about bus arrival time, grounded upon the vision of Ambient Intelligence. We present the design process we followed, from ideation to building a prototype and conducting a field study, and conclude with a set of guidelines for the design of relevant personal information systems. More specifically we seek to test the following hypotheses: 1) That the tangible prototype that provides ambient cues will be used more frequently than a similar purpose mobile app, 2) That the tangible prototype will reduce the waiting time at the bus stop, 3) That the tangible prototype will result to reduced anxiety on passengers, 4) That the tangible prototype will result to an increase in the perceived reliability of the transit service, 5) That the tangible prototype will enhance users’ efficiency in reading the bus schedules and 6) That the tangible prototype will make individuals more likely to use public transit. In a field study, we compare the tangible prototype against the mobile app and a control condition where participants were given no external support in obtaining bus arrival information, other than their existing routines. Using qualitative and quantitative data, we test the aforementioned hypotheses and explore users’ reactions to the prototype we developed.
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A Condução de um veículo automóvel tem-se tornado cada vez mais automatizada ao longo dos anos. Este processo tem-se vindo a desenvolver com o intuito de facilitar cada vez mais a condução dos veículos, de prevenir acidentes rodoviários ou ainda de ser utilizado em operações militares. Este trabalho tem como principal foco o estudo da aplicação de dois dos principais métodos de cálculo da localização probabilística à localização de um veículo automóvel autónomo: o Filtro Estendido de Kalman e o Filtro de Partículas. Foram implementadas várias versões de ambos os filtros, quer em simulação, quer num veículo real, tendo por base, em termos de sensores, a odometria do robô, uma unidade inercial e um GPS. Este trabalho surge na continuação de vários projetos anteriores, com foco no desenvolvimento de um veículo autónomo de baixo custo, acrescentando-lhe a funcionalidade de se localizar. Neste sentido, o trabalho desenvolvido servirá de base para a navegação autónoma em trabalhos futuros.
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Image and video compression play a major role in the world today, allowing the storage and transmission of large multimedia content volumes. However, the processing of this information requires high computational resources, hence the improvement of the computational performance of these compression algorithms is very important. The Multidimensional Multiscale Parser (MMP) is a pattern-matching-based compression algorithm for multimedia contents, namely images, achieving high compression ratios, maintaining good image quality, Rodrigues et al. [2008]. However, in comparison with other existing algorithms, this algorithm takes some time to execute. Therefore, two parallel implementations for GPUs were proposed by Ribeiro [2016] and Silva [2015] in CUDA and OpenCL-GPU, respectively. In this dissertation, to complement the referred work, we propose two parallel versions that run the MMP algorithm in CPU: one resorting to OpenMP and another that converts the existing OpenCL-GPU into OpenCL-CPU. The proposed solutions are able to improve the computational performance of MMP by 3 and 2:7 , respectively. The High Efficiency Video Coding (HEVC/H.265) is the most recent standard for compression of image and video. Its impressive compression performance, makes it a target for many adaptations, particularly for holoscopic image/video processing (or light field). Some of the proposed modifications to encode this new multimedia content are based on geometry-based disparity compensations (SS), developed by Conti et al. [2014], and a Geometric Transformations (GT) module, proposed by Monteiro et al. [2015]. These compression algorithms for holoscopic images based on HEVC present an implementation of specific search for similar micro-images that is more efficient than the one performed by HEVC, but its implementation is considerably slower than HEVC. In order to enable better execution times, we choose to use the OpenCL API as the GPU enabling language in order to increase the module performance. With its most costly setting, we are able to reduce the GT module execution time from 6.9 days to less then 4 hours, effectively attaining a speedup of 45 .
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Attention Deficit-Hyperactivity Disorder is a disease that affects 3 to 5 percent of children globally. Many of those live in areas with very few or no medical professionals qualified to help them. To help assuage this problem a system was developed that allows physicians to accompany their patient’s progress and prescribe treatments. These treatments can be drugs or behavioral exercises. The behavioral exercises were designed in the form of games in order to motivate the patients, children, for the treatment. The system allows the patients to play the prescribed games, under the supervision of their tutors. Each game is designed to improve the patient’s handling of their disease through training in a specific mental component. The objective of this approach is to complement the traditional form of treatment by allowing a physician to prescribe therapeutic games and maintaining the patients under supervision between their regular consultations. The main goal of this project is to provide the patients with a better control of their symptoms that with just traditional therapy. Experimental field tests with children and clinical staff, offer promising results. This research is developed in the context of a financed project involving INESC C (Polytechnic Institute of Leiria delegation), the Santo André Hospital of Leiria, and the start-up company PlusrootOne (that owns the project).
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Recent advancements in the area of nanotechnology have brought us into a new age of pervasive computing devices. These computing devices grow ever smaller and are being used in ways which were unimaginable before. Recent interest in developing a precise indoor positioning system, as opposed to existing outdoor systems, has given way to much research heading into the area. The use of these small computing devices offers many conveniences for usage in indoor positioning systems. This thesis will deal with using small computing devices Raspberry Pi’s to enable and improve position estimation of mobile devices within closed spaces. The newly patented Orthogonal Perfect DFT Golay coding sequences will be used inside this scenario, and their positioning properties will be tested. After that, testing and comparisons with other coding sequences will be done.