55 resultados para Visión artificial


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The current trend in the evolution of sensor systems seeks ways to provide more accuracy and resolution, while at the same time decreasing the size and power consumption. The use of Field Programmable Gate Arrays (FPGAs) provides specific reprogrammable hardware technology that can be properly exploited to obtain a reconfigurable sensor system. This adaptation capability enables the implementation of complex applications using the partial reconfigurability at a very low-power consumption. For highly demanding tasks FPGAs have been favored due to the high efficiency provided by their architectural flexibility (parallelism, on-chip memory, etc.), reconfigurability and superb performance in the development of algorithms. FPGAs have improved the performance of sensor systems and have triggered a clear increase in their use in new fields of application. A new generation of smarter, reconfigurable and lower power consumption sensors is being developed in Spain based on FPGAs. In this paper, a review of these developments is presented, describing as well the FPGA technologies employed by the different research groups and providing an overview of future research within this field.

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This paper presents a new dynamic visual control system for redundant robots with chaos compensation. In order to implement the visual servoing system, a new architecture is proposed that improves the system maintainability and traceability. Furthermore, high performance is obtained as a result of parallel execution of the different tasks that compose the architecture. The control component of the architecture implements a new visual servoing technique for resolving the redundancy at the acceleration level in order to guarantee the correct motion of both end-effector and joints. The controller generates the required torques for the tracking of image trajectories. However, in order to guarantee the applicability of this technique, a repetitive path tracked by the robot-end must produce a periodic joint motion. A chaos controller is integrated in the visual servoing system and the correct performance is observed in low and high velocities. Furthermore, a method to adjust the chaos controller is proposed and validated using a real three-link robot.

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La percepción de profundidad se hace imprescindible en muchas tareas de manipulación, control visual y navegación de robots. Las cámaras de tiempo de vuelo (ToF: Time of Flight) generan imágenes de rango que proporcionan medidas de profundidad en tiempo real. No obstante, el parámetro distancia que calculan estas cámaras es fuertemente dependiente del tiempo de integración que se configura en el sensor y de la frecuencia de modulación empleada por el sistema de iluminación que integran. En este artículo, se presenta una metodología para el ajuste adaptativo del tiempo de integración y un análisis experimental del comportamiento de una cámara ToF cuando se modifica la frecuencia de modulación. Este método ha sido probado con éxito en algoritmos de control visual con arquitectura ‘eye-in-hand’ donde el sistema sensorial está compuesto por una cámara ToF. Además, la misma metodología puede ser aplicada en otros escenarios de trabajo.

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A large part of the new generation of computer numerical control systems has adopted an architecture based on robotic systems. This architecture improves the implementation of many manufacturing processes in terms of flexibility, efficiency, accuracy and velocity. This paper presents a 4-axis robot tool based on a joint structure whose primary use is to perform complex machining shapes in some non-contact processes. A new dynamic visual controller is proposed in order to control the 4-axis joint structure, where image information is used in the control loop to guide the robot tool in the machining task. In addition, this controller eliminates the chaotic joint behavior which appears during tracking of the quasi-repetitive trajectories required in machining processes. Moreover, this robot tool can be coupled to a manipulator robot in order to form a multi-robot platform for complex manufacturing tasks. Therefore, the robot tool could perform a machining task using a piece grasped from the workspace by a manipulator robot. This manipulator robot could be guided by using visual information given by the robot tool, thereby obtaining an intelligent multi-robot platform controlled by only one camera.

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This paper presents the use of immersive virtual reality systems in the educational intervention with Asperger students. The starting points of this study are features of these students' cognitive style that requires an explicit teaching style supported by visual aids and highly structured environments. The proposed immersive virtual reality system, not only to assess the student's behavior and progress, but also is able to adapt itself to the student's specific needs. Additionally, the immersive reality system is equipped with sensors that can determine certain behaviors of the students. This paper determines the possible inclusion of immersive virtual reality as a support tool and learning strategy in these particular students' intervention. With this objective two task protocols have been defined with which the behavior and interaction situations performed by participant students are recorded. The conclusions from this study talks in favor of the inclusion of these virtual immersive environments as a support tool in the educational intervention of Asperger syndrome students as their social competences and executive functions have improved.

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Virtual and remote laboratories (VRLs) are e-learning resources that enhance the accessibility of experimental setups providing a distance teaching framework which meets the student's hands-on learning needs. In addition, online collaborative communication represents a practical and a constructivist method to transmit the knowledge and experience from the teacher to students, overcoming physical distance and isolation. This paper describes the extension of two open source tools: (1) the learning management system Moodle, and (2) the tool to create VRLs Easy Java Simulations (EJS). Our extension provides: (1) synchronous collaborative support to any VRL developed with EJS (i.e., any existing VRL written in EJS can be automatically converted into a collaborative lab with no cost), and (2) support to deploy synchronous collaborative VRLs into Moodle. Using our approach students and/or teachers can invite other users enrolled in a Moodle course to a real-time collaborative experimental session, sharing and/or supervising experiences at the same time they practice and explore experiments using VRLs.

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This article presents an interactive Java software platform which enables any user to easily create advanced virtual laboratories (VLs) for Robotics. This novel tool provides both support for developing applications with full 3D interactive graphical interface and a complete functional framework for modelling and simulation of arbitrary serial-link manipulators. In addition, its software architecture contains a high number of functionalities included as high-level tools, with the advantage of allowing any user to easily develop complex interactive robotic simulations with a minimum of programming. In order to show the features of the platform, the article describes, step-by-step, the implementation methodology of a complete VL for Robotics education using the presented approach. Finally, some educational results about the experience of implementing this approach are reported.

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Learning and teaching processes are continually changing. Therefore, design of learning technologies has gained interest in educators and educational institutions from secondary school to higher education. This paper describes the successfully use in education of social learning technologies and virtual laboratories designed by the authors, as well as videos developed by the students. These tools, combined with other open educational resources based on a blended-learning methodology, have been employed to teach the subject of Computer Networks. We have verified not only that the application of OERs into the learning process leads to a significantly improvement of the assessments, but also that the combination of several OERs enhances their effectiveness. These results are supported by, firstly, a study of both students’ opinion and students’ behaviour over five academic years, and, secondly, a correlation analysis between the use of OERs and the grades obtained by students.

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Visual information is increasingly being used in a great number of applications in order to perform the guidance of joint structures. This paper proposes an image-based controller which allows the joint structure guidance when its number of degrees of freedom is greater than the required for the developed task. In this case, the controller solves the redundancy combining two different tasks: the primary task allows the correct guidance using image information, and the secondary task determines the most adequate joint structure posture solving the possible joint redundancy regarding the performed task in the image space. The method proposed to guide the joint structure also employs a smoothing Kalman filter not only to determine the moment when abrupt changes occur in the tracked trajectory, but also to estimate and compensate these changes using the proposed filter. Furthermore, a direct visual control approach is proposed which integrates the visual information provided by this smoothing Kalman filter. This last aspect permits the correct tracking when noisy measurements are obtained. All the contributions are integrated in an application which requires the tracking of the faces of Asperger children.

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En este artículo se describe la metodología empleada para el desarrollo y coordinación de las asignaturas obligatorias del Máster Universitario en Automática y Robótica de la Universidad de Alicante. Se ha trabajado en adecuar las guías docentes a la metodología mediante el trabajo colaborativo de los distintos profesores coordinadores de las asignaturas con el objetivo de garantizar que todos los conceptos necesarios sean cubiertos y complementados entre las asignaturas, apoyándose en mapas conceptuales. Otro aspecto en el que se ha hecho un especial énfasis en la metodología propuesta ha sido introducir como parte de las actividades teóricas y/o prácticas el uso de laboratorios virtuales remotos. Los laboratorios virtuales sirven de apoyo a la teoría para mostrar simulaciones y resultados prácticos mediante la interacción con equipamiento real. Además, muchas de estas herramientas admiten que el alumnado pueda trabajar a distancia desde sus casas, lo que redunda en la posibilidad de autoaprendizaje e incluso la realización de prácticas a distancia.

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Algunos de los aspectos clave en el desarrollo profesional de un ingeniero son su capacidad para trabajar en equipo, para integrar diferentes puntos de vista y para desarrollar grandes proyectos con un alto nivel de incertidumbre. Los planes de estudio de las titulaciones que preparan a estos futuros ingenieros no pueden permanecer ajenos a estas necesidades y deben plantear situaciones lo más cercanas posible a la realidad que se encontrarán nuestros egresados en su vida laboral. Estas razones, nos han llevado a plantear una experiencia innovadora en una titulación de nueva implantación como es el Grado en Ingeniería Multimedia. Hemos elegido, para ello, la metodología del Aprendizaje Basado en Proyectos (ABP), aplicada al itinerario de Creación y Entretenimiento Digital en cuarto curso, donde los estudiantes, agrupados en equipos, desarrollan un único gran proyecto durante el año, que es un videojuego. Queremos destacar dos consecuencias de esta experiencia: primero, el papel fundamental de la asignatura Proyectos Multimedia, sirviendo de apoyo al resto de asignaturas al llevar el peso de la gestión de los equipos y del seguimiento del proyecto. Y después, que los estudiantes pueden obtener un producto terminado al final del curso que les permita inaugurar su portafolio profesional.

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En este artículo se describe un laboratorio remoto empleado en el aprendizaje práctico de la asignatura "Sistemas de Control Automático", que se imparte en el Máster Universitario en Automática y Robótica de la Universidad de Alicante. La aplicación desarrollada permite a los estudiantes practicar a distancia diferentes conceptos teóricos utilizando un modelo hardware de un proceso industrial real consistente en un sistema de bombeo. En el artículo se describe las características más importantes de este laboratorio remoto, destacando su capacidad para realizar la evaluación automática del estudiante. La aplicación propone un conjunto de experiencias prácticas que los alumnos deben resolver haciendo uso del laboratorio remoto. Además, la aplicación ofrece una retroalimentación que guía al estudiante en los conceptos para mejorar en su aprendizaje. Esta información puede ser utilizada por los estudiantes para llevar a cabo un auto-aprendizaje. El documento concluye con un estudio que describe el impacto educativo acerca del uso de esta herramienta en el aprendizaje de los estudiantes.

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En este trabajo se analiza el uso que se hace de un conjunto de recursos multimedia incluidos en un curso en línea de acceso libre y gratuito sobre Redes de Computadores. Este estudio se lleva a cabo a partir de la interacción que un grupo de estudiantes de ingenierías tienen con estos recursos durante su proceso de aprendizaje. Estos recursos educacionales se basan en una aproximación Web 2.0 y por si solos forman parte de una metodología docente fundamentada en el autoaprendizaje a distancia. Entre estos recursos destaca el uso de un blogs, OCW, videos y simulaciones. Estos recursos educativos ‘open-free’ han sido diseñados como elementos que facilitan la aplicación de una metodología de enseñanza a distancia basada en muchos casos en el auto-aprendizaje y en potenciar el aprendizaje autónomo. Además, la percepción que se tiene sobre estos recursos juega un papel relevante en la aceptación de estos por parte del estudiante. Cualquier nuevo recurso educativo que se diseñe, además de didáctico, tiene que ser atractivo y de un uso sencillo e interactivo para el estudiante. El trabajo que aquí se presenta, busca analizar la usabilidad de estos recursos por parte del estudiante para desarrollar futuras mejoras.

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This paper presents a new framework based on optimal control to define new dynamic visual controllers to carry out the guidance of any serial link structure. The proposed general method employs optimal control to obtain the desired behaviour in the joint space based on an indicated cost function which determines how the control effort is distributed over the joints. The proposed approach allows the development of new direct visual controllers for any mechanical joint system with redundancy. Finally, authors show experimental results and verifications on a real robotic system for some derived controllers obtained from the control framework.

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Designing educational resources allow students to modify their learning process. In particular, on-line and downloadable educational resources have been successfully used in engineering education the last years [1]. Usually, these resources are free and accessible from web. In addition, they are designed and developed by lecturers and used by their students. But, they are rarely developed by students in order to be used by other students. In this work-in-progress, lecturers and students are working together to implement educational resources, which can be used by students to improve the learning process of computer networks subject in engineering studies. In particular, network topologies to model LAN (Local Area Network) and MAN (Metropolitan Area Network) are virtualized in order to simulate the behavior of the links and nodes when they are interconnected with different physical and logical design.