938 resultados para Robot MINDSTORMS® NXT da LEGO®


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A Escola e o Ensino, através da evolução dos diferentes sistemas que os caracterizaram ao longo dos tempos, tiveram e têm por objectivo não só a transmissão de conhecimentos mas também a preparação dos cidadãos mais jovens para a sua integração na vida social da sua comunidade. A escola atravessa momentos difíceis e os papéis dos intervenientes são questionados diariamente. Tal tem dado origem a alterações e a mudanças na concepção organizacional, de estratégia e de objectivos da escola e do próprio ensino. A profissão docente deixou de ser uma mera transmissão de saber, exigindo-se muito mais ao professor. O seu papel inclui já novas questões, tais como, como ensinar?, como fazer aprender? e como motivar os outros para que queiram aprender? A evolução tecnológica e a sua integração no ensino têm sido das principais fontes para a alteração operada sobre a escola e o seu objectivo. O desenvolvimento das tecnologias de informação e de comunicação (TIC) têm vindo a proporcionar novas formas de comunicar e de transmitir informação. A habilitação profissional para a docência no ensino básico e secundário implica a Prática de Ensino Supervisionado. Para além das planificações e da implementação das metodologias adoptadas visando o processo de ensino-aprendizagem da Matemática ao nível do 10º ano de escolaridade, desenvolvemos um projecto de cariz qualitativo cujo objectivo seria a análise da aplicabilidade da robótica, na sala de aula, enquanto elemento mediador e potenciador do processo de aprendizagem no tema das funções. A revisão bibliográfica demonstra que a robótica tem merecido elogios enquanto factor motivador e elemento que faculta uma conexão entre diversas representações, nomeadamente, os conceitos teóricos e a praticabilidade. O desenvolvimento de diversas actividades com duas turmas do 10º ano de escolaridade, utilizando robots LEGO Minstorms, revelou que a robótica não só é um elemento mediador do processo ensino-aprendizagem mas também, e sobretudo, é um catalisador da motivação, cooperação e envolvência dos alunos, levando-os, numa perspectiva construcionista, a construir conhecimento e a concretizar o simbolismo abstracto presente na Matemática.

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Este relatório pretende ilustrar a experiência profissional obtida, principalmente após a conclusão, em 1998, da Licenciatura em Engenharia de Sistemas e Computadores na Universidade da Madeira. Esta experiência circunscreve-se à proficiência nas áreas de redes de comunicação de dados, automação e robótica e desenvolvimento de média interativos (tanto na vertente de CD-ROMs como orientado à Internet). Embora também disponha de experiência no ensino destas áreas citadas, foram privilegiados os projetos com uma relevância mais técnica atendendo à natureza deste mestrado. Sendo assim, são apresentadas nestas quatro áreas primeiro uma descrição dos projetos realizados no âmbito do percurso profissional, para depois descrever uma implementação (relativa a cada área) utilizando uma metodologia científica que fora alvo de estudo na componente letiva deste mestrado, salientando as virtudes e defeitos de ambas as abordagens e comparando os resultados obtidos. Em síntese, é analisado o projeto de gestão de sistemas de redes das Escolas Secundárias Francisco Franco e Jaime Moniz (no âmbito do desempenho das funções de Diretor das Instalações Informáticas em ambas as instituições) culminando numa proposta de implementação utilizando equipamentos da Cisco; é analisado o projeto de CD-ROM sobre a Reserva Natural das Ilhas Desertas para depois completar um jogo educativo utilizando uma metodologia científica de Game Design; são descritos os websites desenvolvidos (com especial ênfase nos realizados enquanto técnico superior de informática na Secretaria Regional do Ambiente e dos Recursos Naturais) para concluir com uma proposta de implementação de um sistema de marcação de reuniões orientado para a Cloud; finalmente, é descrito a utilização dos kits Lego Mindstorms para o ensino da programação, propondo uma implementação de baixo custo (alternativa) baseada num Raspberry Pi e componentes acessórios (tanto estandardizados como construídos com uma RepRap). Em suma, é contraposto o rigor e método do ensino académico com o pragmatismo e metas de produtividade exigidas no mercado de trabalho.

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NOGUEIRA, Marcelo B. ; MEDEIROS, Adelardo A. D. ; ALSINA, Pablo J. Pose Estimation of a Humanoid Robot Using Images from an Mobile Extern Camera. In: IFAC WORKSHOP ON MULTIVEHICLE SYSTEMS, 2006, Salvador, BA. Anais... Salvador: MVS 2006, 2006.

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SANTANA, André M.; SOUZA, Anderson A. S.; BRITTO, Ricardo S.; ALSINA, Pablo J.; MEDEIROS, Adelardo A. D. Localization of a mobile robot based on odometry and natural landmarks using extended Kalman Filter. In: INTERNATIONAL CONFERENCE ON INFORMATICS IN CONTROL, AUTOMATION AND ROBOTICS, 5., 2008, Funchal, Portugal. Proceedings... Funchal, Portugal: ICINCO, 2008.

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The development of robots has shown itself as a very complex interdisciplinary research field. The predominant procedure for these developments in the last decades is based on the assumption that each robot is a fully personalized project, with the direct embedding of hardware and software technologies in robot parts with no level of abstraction. Although this methodology has brought countless benefits to the robotics research, on the other hand, it has imposed major drawbacks: (i) the difficulty to reuse hardware and software parts in new robots or new versions; (ii) the difficulty to compare performance of different robots parts; and (iii) the difficulty to adapt development needs-in hardware and software levels-to local groups expertise. Large advances might be reached, for example, if physical parts of a robot could be reused in a different robot constructed with other technologies by other researcher or group. This paper proposes a framework for robots, TORP (The Open Robot Project), that aims to put forward a standardization in all dimensions (electrical, mechanical and computational) of a robot shared development model. This architecture is based on the dissociation between the robot and its parts, and between the robot parts and their technologies. In this paper, the first specification for a TORP family and the first humanoid robot constructed following the TORP specification set are presented, as well as the advances proposed for their improvement.

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Robotic vehicle navigation in unstructured and uncertain environments is still a challenge. This paper presents the implementation of a multivalued neurofuzzy controller for autonomous ground vehicle (AGVs) in indoor environments. The control system consists of a hierarchy of mobile robot using multivalued adaptive neuro-fuzzy inference system behaviors.

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This work presents some improvements regarding to the autonomous mobile robot Emmy based on Paraconsistent Annotated Evidential Logic ET. A discussion on navigation system is presented.

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This paper describes the UNESP robotic team in the medical trash collector task, proposed on the 5 rd IEEE Latin American Robots Competition in the LEGO category. We present our understanding of the task and discuss the proposed solution, focusing on the mechanical and computational issues of the robots. The mechanics is based on rigid body capability of transforming rotational into curvilinear movement. With respect to the computational control, the system is modeled as a reactive system with sequential transition of behaviors. A state-machine is proposed to allow this transition, and the synchronization of robotic states is guaranteed by the communication system. The proposed approach has shown itself capable of dealing with the high difficulty degree of this cooperative task. ©2006 IEEE.

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This project aims to apply image processing techniques in computer vision featuring an omnidirectional vision system to agricultural mobile robots (AMR) used for trajectory navigation problems, as well as localization matters. To carry through this task, computational methods based on the JSEG algorithm were used to provide the classification and the characterization of such problems, together with Artificial Neural Networks (ANN) for pattern recognition. Therefore, it was possible to run simulations and carry out analyses of the performance of JSEG image segmentation technique through Matlab/Octave platforms, along with the application of customized Back-propagation algorithm and statistical methods in a Simulink environment. Having the aforementioned procedures been done, it was practicable to classify and also characterize the HSV space color segments, not to mention allow the recognition of patterns in which reasonably accurate results were obtained.

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The main application area in this project, is to deploy image processing and segmentation techniques in computer vision through an omnidirectional vision system to agricultural mobile robots (AMR) used for trajectory navigation problems, as well as localization matters. Thereby, computational methods based on the JSEG algorithm were used to provide the classification and the characterization of such problems, together with Artificial Neural Networks (ANN) for image recognition. Hence, it was possible to run simulations and carry out analyses of the performance of JSEG image segmentation technique through Matlab/Octave computational platforms, along with the application of customized Back-propagation Multilayer Perceptron (MLP) algorithm and statistical methods as structured heuristics methods in a Simulink environment. Having the aforementioned procedures been done, it was practicable to classify and also characterize the HSV space color segments, not to mention allow the recognition of segmented images in which reasonably accurate results were obtained. © 2010 IEEE.

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Using robots for teaching is one approach that has gathered good results on Middle-School, High-School and Universities. Robotics gives chance to experiment concepts of a broad range of disciplines, principally those from Engineering courses and Computer Science. However, there are not many kits that enables the use of robotics in classroom. This article describes the methodologies to implement tools which serves as test beds for the use of robotics to teach Computer Science and Engineering. Therefore, it proposes the development of a flexible, low cost hardware to integrate sensors and control actuators commonly found on mobile robots, the development of a mobile robot device whose sensors and actuators allows the experimentation of different concepts, and an environment for the implementation of control algorithms through a computer network. This paper describes each one of these tools and discusses the implementation issues and future works. © 2010 IEEE.

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In this project, the main focus is to apply image processing techniques in computer vision through an omnidirectional vision system to agricultural mobile robots (AMR) used for trajectory navigation problems, as well as localization matters. To carry through this task, computational methods based on the JSEG algorithm were used to provide the classification and the characterization of such problems, together with Artificial Neural Networks (ANN) for pattern recognition. Therefore, it was possible to run simulations and carry out analyses of the performance of JSEG image segmentation technique through Matlab/Octave platforms, along with the application of customized Back-propagation algorithm and statistical methods as structured heuristics methods in a Simulink environment. Having the aforementioned procedures been done, it was practicable to classify and also characterize the HSV space color segments, not to mention allow the recognition of patterns in which reasonably accurate results were obtained. ©2010 IEEE.

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Severely disabled children have little chance of environmental and social exploration and discovery. This lack of interaction and independency may lead to an idea that they are unable to do anything by themselves. In an attempt to help children in this situation, educational robotics can offer and aid, once it can provide them a certain degree of independency in the exploration of environment. The system developed in this work allows the child to transmit the commands to a robot through myoelectric and movement sensors. The sensors are placed on the child's body so they can obtain information from the body inclination and muscle contraction, thus allowing commanding, through a wireless communication, the mobile entertainment robot to carry out tasks such as play with objects and draw. In this paper, the details of the robot design and control architecture are presented and discussed. With this system, disabled children get a better cognitive development and social interaction, balancing in a certain way, the negative effects of their disabilities. © 2012 IEEE.

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This work presents and discusses the main topics involved on the design of a mobile robot system and focus on the control and navigation systems for autonomous mobile robots. Introduces the main aspects of the Robot design, which is a holistic vision about all the steps of the development process of an autonomous mobile robot; discusses the problems addressed to the conceptualization of the mobile robot physical structure and its relation to the world. Presents the dynamic and control analysis for navigation robots with kinematic and dynamic model and, for final, presents applications for a robotic platform of Automation, Simulation, Control and Supervision of Mobile Robots Navigation, with studies of dynamic and kinematic modelling, control algorithms, mechanisms for mapping and localization, trajectory planning and the platform simulator. © 2012 Praise Worthy Prize S.r.l. - All rights reserved.

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Voice-based user interfaces have been actively pursued aiming to help individuals with motor impairments, providing natural interfaces to communicate with machines. In this work, we have introduced a recent machine learning technique named Optimum-Path Forest (OPF) for voice-based robot interface, which has been demonstrated to be similar to the state-of-the-art pattern recognition techniques, but much faster. Experiments were conducted against Support Vector Machines, Neural Networks and a Bayesian classifier to show the OPF robustness. The proposed architecture provides high accuracy rates allied with low computational times. © 2012 IEEE.