924 resultados para EEG-based brain-computer interface
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Currently, the teaching-learning process in domains, such as computer programming, is characterized by an extensive curricula and a high enrolment of students. This poses a great workload for faculty and teaching assistants responsible for the creation, delivery, and assessment of student exercises. The main goal of this chapter is to foster practice-based learning in complex domains. This objective is attained with an e-learning framework—called Ensemble—as a conceptual tool to organize and facilitate technical interoperability among services. The Ensemble framework is used on a specific domain: computer programming. Content issues are tacked with a standard format to describe programming exercises as learning objects. Communication is achieved with the extension of existing specifications for the interoperation with several systems typically found in an e-learning environment. In order to evaluate the acceptability of the proposed solution, an Ensemble instance was validated on a classroom experiment with encouraging results.
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Teaching and learning computer programming is as challenging as difficult. Assessing the work of students and providing individualised feedback to all is time-consuming and error prone for teachers and frequently involves a time delay. The existent tools and specifications prove to be insufficient in complex evaluation domains where there is a greater need to practice. At the same time Massive Open Online Courses (MOOC) are appearing revealing a new way of learning, more dynamic and more accessible. However this new paradigm raises serious questions regarding the monitoring of student progress and its timely feedback. This paper provides a conceptual design model for a computer programming learning environment. This environment uses the portal interface design model gathering information from a network of services such as repositories and program evaluators. The design model includes also the integration with learning management systems, a central piece in the MOOC realm, endowing the model with characteristics such as scalability, collaboration and interoperability. This model is not limited to the domain of computer programming and can be adapted to any complex area that requires systematic evaluation with immediate feedback.
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The paper presents a multi-robot cooperative framework to estimate the 3D position of dynamic targets, based on bearing-only vision measurements. The uncertainty of the observation provided by each robot equipped with a bearing-only vision system is effectively addressed for cooperative triangulation purposes by weighing the contribution of each monocular bearing ray in a probabilistic manner. The envisioned framework is evaluated in an outdoor scenario with a team of heterogeneous robots composed of an Unmanned Ground and Aerial Vehicle.
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Trabalho de Projecto de Mestrado em Ciências de Comunicação Variante Novos Media e Práticas Web
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In the last few years the number of systems and devices that use voice based interaction has grown significantly. For a continued use of these systems the interface must be reliable and pleasant in order to provide an optimal user experience. However there are currently very few studies that try to evaluate how good is a voice when the application is a speech based interface. In this paper we present a new automatic voice pleasantness classification system based on prosodic and acoustic patterns of voice preference. Our study is based on a multi-language database composed by female voices. In the objective performance evaluation the system achieved a 7.3% error rate.
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Este trabalho propõe o desenvolvimento de um módulo capaz de medir a intensidade das vibrações sofridas por um tenista no braço e ombro durante um jogo. Numa primeira fase foi estudada a biomecânica do braço humano e a biomecânica dos movimentos envolvidos no ténis. Foi realizada uma pesquisa sobre os dispositivos MEMs mais adequados bem como o hardware e software a utilizar, tendo sido analisados os requisitos do sistema a implementar. Foi desenvolvido um protótipo electrónico microcontrolado compacto e de baixo custo baseado na utilização de sensores microeletromecânicos (MEMs) de aceleração, permitindo obter informações biomecânicas do desportista e monitoriza-lo durante o treino de maneira não evasiva, possibilitando que ele esteja no seu ambiente natural de treino. O sistema envia as informações dos sensores para um PC através da porta USB sendo estas processados no mesmo. Foi desenvolvida uma interface gráfica intuitiva, para a apresentação dos dados resultantes das medidas, de fácil leitura pelos treinadores. Esta interface grava e apresenta os dados em tempo real. Os testes de campo foram realizados no campo de ténis que existe na Quinta das Freiras em Rio Tinto. O protótipo é de fácil fixação no atleta e permite a monitorização no local de treino sendo pequeno ((20x15mm) e muito leve (2g), tornando-se uma alternativa versátil para o auxilio de atletas e treinadores, aperfeiçoamento da técnica e como ferramenta de pesquisa na área de educação física.
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Dissertação apresentada na Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa para obtenção do grau de Mestre em Engenharia Informática
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work presented in the context of the European Master’s program in Computational Logic, as the partial requirement for obtaining Master of Science degree in Computational Logic
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Dissertation presented to obtain the PhD degree in Electrical and Computer Engineering - Electronics