923 resultados para Interface


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Esta dissertação tem como principal objetivo a criação de uma interface humana, baseada na eletromiografia dos músculos orbicular do olho e frontalis. O algoritmo de programação do microcontrolador ATmega2560 deteta o piscar de olhos voluntário, conta o número de vezes que este acontece e verifica se preenche os requisitos necessários à execução de um comando. Para este efeito foram utilizados elétrodos para a captação do sinal eletromiográfico. O sinal analógico é condicionado pela Shield ECG/EMG da Olimex sendo enviado para o arduíno ATmega2560. Este microcontrolador administra todos os atuadores, dos quais o mais importante é um painel de comandos (quatro comandos diferentes), no qual existe um ponteiro motorizado que indica qual a ação a realizar. O código de execução é extremamente simples:  se o utilizador piscar os olhos três vezes, o ponteiro movimenta-se para a secção do painel imediatamente à direita; e  se o utilizador piscar os olhos quatro vezes, o ponteiro movimenta-se para a secção do painel imediatamente à esquerda. Os testes realizados com este dispositivo indicam que os utilizadores demoram menos de 10 minutos a aprender a utilizar e executar todos os comandos do painel. Apenas num dos testes realizados o dispositivo não funcionou. Dos utilizadores que realizaram o teste:  vários usam óculos;  um idoso com graves problemas auditivos, cegueira parcial e dificuldades locomotoras;  nenhum foi incapaz de piscar, pelo menos, um dos olhos voluntariamente; e  a maioria referiu que, com alguma concentração e principalmente se ouvirem o bip sonoro, a aprendizagem de utilização torna-se muito fácil. Apesar dos limites impostos à concretização de um projeto deste tipo (dos quais se evidenciam as dificuldades em conseguir voluntários com paralisia medular, bem como os limites orçamentais), pode-se afirmar que este dispositivo é eficaz e seria uma mais valia quando implementado num cenário de paralisia medular (total ou parcial). A melhoria de qualidade de vida de um utilizador com estes problemas físicos, ou outros que lhe comprometam a locomoção é garantida. O cenário em que vivem é tremendamente limitado sendo urgente criar soluções para tornar estas vidas mais cómodas. Com os devidos aplicativos, o utilizador poderia abrir portas ou janelas, acender ou apagar luzes, pedir ajuda, ajustar a posição da cama, controlar cadeiras de rodas, entre outros. É neste sentido que surge a minha motivação de criar algo que ajude estas pessoas.

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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.

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A Work Project, presented as part of the requirements for the Award of a Masters Degree in Management from the NOVA – School of Business and Economics

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Dissertation to obtain the academic degree of Master in materials engineering submitted to the Faculty of science and engineering of Universidade Nova de Lisboa

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Dissertação para obtenção do Grau de Mestre em Engenharia e Gestão Industrial

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Based on the report for “Project IV” unit of the PhD programme on Technology Assessment (Doctoral Conference) at Universidade Nova de Lisboa (December 2011). This thesis research has the supervision of António Moniz (FCT-UNL and ITAS-KIT) and Armin Grunwald (Karlsruhe Institute of Technology-ITAS, Germany). Other members of the thesis committee are Mário Forjaz Secca (FCT-UNL) and Femke Nijboer (University of Twente, Netherlands).

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Dissertação para obtenção do Grau de Mestre em Engenharia Electrotécnica e de Computadores

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Dissertação para obtenção do Grau de Mestre em Engenharia Biomédica

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Dissertação para obtenção do Grau de Mestre em Engenharia Biomédica

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In this thesis a piezoelectric energy harvesting system, responsible for regulating the power output of a piezoelectric transducer subjected to ambient vibration, is designed to power an RF receiver with a 6 mW power consump-tion. The electrical characterisation of the chosen piezoelectric transducer is the starting point of the design, which subsequently presents a full-bridge cross-coupled rectifier that rectifies the AC output of the transducer and a low-dropout regulator responsible for delivering a constant voltage system output of 0.6 V, with low voltage ripple, which represents the receiver’s required sup-ply voltage. The circuit is designed using CMOS 130 nm UMC technology, and the system presents an inductorless architecture, with reduced area and cost. The electrical simulations run for the complete circuit lead to the conclusion that the proposed piezoelectric energy harvesting system is a plausible solution to power the RF receiver, provided that the chosen transducer is subjected to moderate levels of vibration.

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A presente dissertação foi desenvolvida em colaboração com o Instituto de Biofísica e Engenharia Biomédica(IBEB/FCUL)

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In this work I propose an additional test to be implemented in EDP’s residential electricity use feedback trials, under InovCity’s project scope. The proposed product to be tested consists of an interface between the smart meter and the television, through a set-top box. I provide a theoretical framework of the importance of feedback, an analysis of results from past studies involving smart metering, and a detailed description of my proposal. The results of a self-developed questionnaire related to the proposal and segmentation issues are also analyzed. Finally, general conclusions are drawn and potential future improvements and challenges are presented.

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This paper proposes a multifunctional converter to interface renewable energy sources (e.g., solar photovoltaic panels) and electric vehicles (EVs) with the power grid in smart grids context. This multifunctional converter allows deliver energy from the solar photovoltaic panels to an EV or to the power grid, and exchange energy in bidirectional mode between the EV and the power grid. Using this multifunctional converter are not required multiple conversion stages, as occurs with the traditional solutions, where are necessary two power converters to integrate the solar photovoltaic system in the power grid and also two power converters to integrate an off-board EV battery charger in the power grid (dc-dc and dc-ac power converters in both cases). Taking into account that the energy provided (or delivered) from the power grid in each moment is function of the EV operation mode and also of the energy produced from the solar photovoltaic system, it is possible to define operation strategies and control algorithms in order to increase the energy efficiency of the global system and to improve the power quality of the electrical system. The proposed multifunctional converter allows the operation in four distinct cases: (a) Transfer of energy from the solar photovoltaic system to the power grid; (b) Transfer of energy from the solar photovoltaic system and from the EV to the power grid; (c) Transfer of energy from the solar photovoltaic system to the EV or to the power grid; (d) Transfer of energy between the EV and the power grid. Along the paper are described the system architecture and the control algorithms, and are also presented some computational simulation results for the four aforementioned cases. It is also presented a comparative analysis between the traditional and the proposed solution in terms of operation efficiency and estimated cost of implementation.

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Solar photovoltaic systems are an increasing option for electricity production, since they produce electrical energy from a clean renewable energy resource, and over the years, as a result of the research, their efficiency has been increasing. For the interface between the dc photovoltaic solar array and the ac electrical grid is necessary the use of an inverter (dc-ac converter), which should be optimized to extract the maximum power from the photovoltaic solar array. In this paper is presented a solution based on a current-source inverter (CSI) using continuous control set model predictive control (CCS-MPC). All the power circuits and respective control systems are described in detail along the paper and were tested and validated performing computer simulations. The paper shows the simulation results and are drawn several conclusions.

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This paper presents the proposal of a three phase current source shunt active power filter (CS-SAPF) with photovoltaic grid interface. The proposed system combines the compensation of reactive power and harmonics with the injection of energy from a solar photovoltaic array into the electrical power grid. The proposed equipment presents the advantage of giving good use to the current source inverter, even when the solar photovoltaic array is not producing energy. The paper describes the control system of the CS SAPF, the energy injection control strategy, and the current harmonics and power factor compensation strategy. Simulation results to assess the performance of the proposed system are also presented.