4 resultados para virtualizzazione, reti, virtual networking, sistemi operativi

em Universidad Politécnica de Madrid


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El Proyecto Final de Carrera(PFC)Implementación de Ingeniería Virtual con Joomla! tiene como objetivo la creación de una plataforma web. Para desarrollar un proyecto de ingeniería multidisciplinar, basado en el trabajo en red, grupos de trabajo y el trabajo flexible. El trabajo en red es desempeñar el trabajo por medio de las Tecnología de la Información y la comunicación (TIC). Los grupos de trabajo están compuestos por personas multidisciplinares, multirraciales, de diferentes religiones, situados en husos horarios distintos y multiculturales donde la colaboración, flexibilidad y la compartición de recursos están a la orden del día. La flexible es la capacidad de adaptación de los propios trabajadores a la demanda de la productividad, los responsables depositan sobre ellos su confianza, recibiendo el trabajo terminado en forma y fecha. Estos trabajadores no necesitan una supervisión constante ni un sitio fijo donde realizar su trabajo. Todo lo que necesitan esta en la red, la información que necesitan como las herramientas. Convirtiéndose este tipo de trabajador en teletrabajadores. Estos trabajadores utilizan de forma intensiva sus conocimientos, no se puede permitir quedarse obsoletos en su conocimientos, sería su gran desgracia. Por está razón, necesitan estar formándose continuamente, aprendiendo y conociendo las nuevas tecnologías que aparecen. Con el objetivo de conseguir nuevas líneas de negocio, con el fin de lograr nuevos ingresos. Los trabajadores que hacen un uso intensivo en la tecnología de la información y comunicación, se caracterizan por la continua innovación y cambio tecnológico. Estos trabajadores necesitan una red profesional, social amplia con enlaces fuertes y poderosos. Las redes son importantes, para estar actualizado con las innovaciones que se realizan en las empresas, optar a nuevos puesto de trabajo, curso en nuevas tecnologías… Gracias a los servicios actuales en Internet facilitan mantener vivos una gran cantidad de enlaces (contactos), en comparación con otras épocas. La plataforma propuesta en este proyecto final de carrera esta compuesta de todas las herramientas necesarias para que estos trabajadores puedan desarrollar su actividad y mantenimiento de sus redes profesionales. Abstract: The aim of this Final Project of Career, Implementation of Virtual Engineering with Joomla!, is to create a web software application where a multidisciplinary engineering project bases on the networking, working groups and the flexible working can be implemented. The networking is the job through the Information Technology and Communication (ITC) where working groups compounded of multidisciplinary and multiracial professions, different religions and located in different time zones are created. The multicultural environment, collaboration, flexibility and to share resources are the order of the day on this kind of groups. The flexibility is the ability to adaptability of workers to the productivity demand, with the trust which is placed on them by supervisor people who wait to receive the work completed in a specific form and date. These workers do not need either constant supervision or a fixed site where to do the job. Everything the workers need is on the network, as the information as the tools, that is why they become teleworkers. These workers demand a high use of their knowledge, so it can not be allowed to become obsolete. This would be a great misfortune. That is why they need to continue learning and knowing the new technologies emerging with the aim of getting new revenues. Workers do an intensive use of the information technology and communication, characterized by continuous innovation and technological change. These workers need a broad social and professional network with great power. This network is important to keep updated with innovations taking place at the companies, to apply for a new job, a new technology course etc.. Thanks to Internet services a bigger number of contacts are provided compared to earlier times. The software application of this project is compounded with enough tools with the aim of the workers can carry out their activity and maintenance of the links on their professional nets.

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The educational platform Virtual Science Hub (ViSH) has been developed as part of the GLOBAL excursion European project. ViSH (http://vishub.org/) is a portal where teachers and scientist interact to create virtual excursions to science infrastructures. The main motivation behind the project was to connect teachers - and in consequence their students - to scientific institutions and their wide amount of infrastructures and resources they are working with. Thus the idea of a hub was born that would allow the two worlds of scientists and teachers to connect and to innovate science teaching. The core of the ViSH?s concept design is based on virtual excursions, which allow for a number of pedagogical models to be applied. According to our internal definition a virtual excursion is a tour through some digital context by teachers and pupils on a given topic that is attractive and has an educational purpose. Inquiry-based learning, project-based and problem-based learning are the most prominent approaches that a virtual excursion may serve. The domain specific resources and scientific infrastructures currently available on the ViSH are focusing on life sciences, nano-technology, biotechnology, grid and volunteer computing. The virtual excursion approach allows an easy combination of these resources into interdisciplinary teaching scenarios. In addition, social networking features support the users in collaborating and communicating in relation to these excursions and thus create a community of interest for innovative science teaching. The design and development phases were performed following a participatory design approach. An important aspect in this process was to create design partnerships amongst all actors involved, researchers, developers, infrastructure providers, teachers, social scientists, and pedagogical experts early in the project. A joint sense of ownership was created and important changes during the conceptual phase were implemented in the ViSH due to early user feedback. Technology-wise the ViSH is based on the latest web technologies in order to make it cross-platform compatible so that it works on several operative systems such as Windows, Mac or Linux and multi-device accessible, such as desktop, tablet and mobile devices. The platform has been developed in HTML5, the latest standard for web development, assuring that it can run on any modern browser. In addition to social networking features a core element on the ViSH is the virtual excursions editor. It is a web tool that allows teachers and scientists to create rich mash-ups of learning resources provided by the e-Infrastructures (i.e. remote laboratories and live webcams). These rich mash-ups can be presented in either slides or flashcards format. Taking advantage of the web architecture supported, additional powerful components have been integrated like a recommendation engine to provide personalized suggestions about educational content or interesting users and a videoconference tool to enhance real-time collaboration like MashMeTV (http://www.mashme.tv/).

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By combining virtualization technologies, virtual private network techniques and parameterization of network scenarios it is possible to enhance a networking laboratory, typically carried out in university laboratory premises using equipment located there, by interconnecting it to virtual networks running on the students own personal computers. This paper describes some experiences applying this model to create hands-on assignments for a large group of students in computer networking education.

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El presente trabajo está enfocado a facilitar la realización de prácticas con equipamiento de laboratorio físico, permitiendo que se tenga acceso a diferentes escenarios virtuales (topologías de ejercicios) sin necesidad de variar la configuración física (conexionado) de dos kits de laboratorio oficial para CCNA Routing & Switching[1] y CCNA Security[2]. Para ello se plantea la creación de diferentes escenarios o topologías virtuales que puedan montarse sobre el mismo escenario de conexionado físico. Es necesario revisar y seleccionar los ejercicios prácticos más destacados en términos de importancia de las curriculas de CCNA Routing & Switching y CCNA Security. Naturalmente, estos ejercicios han de variar en sus interfaces, nomenclatura y documentación para que cuadren con las especificaciones disponibles del laboratorio físico, todo ello sin perder nada de su fundamento. Los escenarios físicos deben de ser lo más versátiles posibles para dar soporte a las topologías requeridas en los ejercicios prácticos de los cursos oficiales de CISCO CCNA Routing & Switching y CCNA Security, con el objetivo de realizar los mínimos cambios de configuración física posibles, y poder simultanear la realización de diferentes prácticas y entre alumnos de diferentes asignaturas. También se pretende posibilitar que los profesores desarrollen sus propios ejercicios prácticos compatibles con el conexionado físico escogido. Para ello se utilizará un servidor de acceso (Access Server) para que los alumnos puedan configurar de forma remota los diferentes equipos sin necesidad de acudir en persona al laboratorio, aunque esta también sea una opción más que viable. Los dos escenarios contarán con tres routers, tres switches y un firewall, de forma que han sido montados en su respectivo armario, al igual que sus conexiones y cableado. La deshabilitación de puertos en los diferentes equipos de red que forman el kit de laboratorio (routers, switches y firewalls) dará lugar a los diferentes escenarios virtuales. Se crearán VLANs en los switches para establecer diferentes conexiones. Estos escenarios deberán ofrecer la variedad necesaria para realizar las diferentes prácticas necesarias en las asignaturas “Tecnologías de Red CISCO: CCNA” [3], “Redes y Comunicaciones” [4] y “Diseño y Seguridad de Redes” [5]. Además, para facilitar y agilizar el cambio entre topologías, se debe automatizar la configuración básica de cada escenario virtual (activación/desactivación de puertos) en base a la topología deseada, y el establecimiento de una configuración inicial. De forma que los alumnos puedan comenzar los ejercicios de igual forma a lo que ven en los documentos explicativos, y en el caso de terminar su sesión (o cerrarla voluntariamente) que sus progresos en el mismo se guarden para posteriores sesiones de forma que puedan proseguir su tarea cuando deseen.---ABSTRACT---The present work is aimed at facilitating the experiments with equipment Physical Laboratory, allowing access to different virtual scenarios (topologies exercises) without changing the physical configuration (connection) with two kits of official laboratory for CCNA Routing & Switching[1] and CCNA Security[2]. This requires the creation of different scenarios or virtual topologies that can be mounted on the same physical connection scenario arises. It is necessary to review and select the most prominent practical exercises in terms of importance of curricula of CCNA Routing and Switching, and CCNA Security. Naturally, these exercises must vary in their interfaces, nomenclature and documentation available that fit the specifications of the physical laboratory, all without losing any of its foundation. The physical setting should be as versatile as possible to support topologies required in the practical exercises of official courses CISCO Routing and Switching CCNA, and CCNA Security, in order to make the minimum possible changes in physical configuration, and can simultaneous realization of different practices, and between students of different subjects. It also aims to enable teachers to develop their own practical exercises compatible with the physical connection chosen. For this, we will use an Access Server will be used by the students to access remotely to configure different computers without having to go in person to the laboratory, but this is also an other viable option. The two scenarios have three routers, three switches and a firewall, so that have been mounted in their respective rack, as well as their connections and wiring. Disabling ports on different network equipment that make up the lab kit (routers, switches and firewalls) will lead to different virtual scenarios. These scenarios should provide the variety needed to perform the necessary practices in different subjects "Network Technologies CISCO: CCNA"[3], "Networking and Communications"[4] and "Design and Network Security." [5] Moreover, to facilitate and expedite the exchange topologies, it was necessary to automate the basic configuration of each virtual setting (on/off ports) based on the desired topology, and the establishment of an initial configuration. So that, the students can begin the exercises equally to what they see on explanatory documents, and if they finish their session (or close voluntarily) their progress on the exercise will be saved for future sessions so that they can continue their work when they want.