938 resultados para Augmented map


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As an example for the representation of glaciers using orthophoto maps the new map "Langtaler Ferner 1971" is presented. The orthophoto map shows the glacier "Langtaler Ferner" in the Oetztal Alps (Austria) on August 18, 1971. Apart from a description of the map production and a discussion of the advantages and disadvantages of such ortho- photo maps for the representation of glacierized areas, the stage of the "Langtaler Ferner" at the time of the ftight is described. A comparison with some data of previollsly published maps is also included.

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Spatial Data Infrastructures have become a methodological and technological benchmark enabling distributed access to historical-cartographic archives. However, it is essential to offer enhanced virtual tools that imitate the current processes and methodologies that are carried out by librarians, historians and academics in the existing map libraries around the world. These virtual processes must be supported by a generic framework for managing, querying, and accessing distributed georeferenced resources and other content types such as scientific data or information. The authors have designed and developed support tools to provide enriched browsing, measurement and geometrical analysis capabilities, and dynamical querying methods, based on SDI foundations. The DIGMAP engine and the IBERCARTO collection enable access to georeferenced historical-cartographical archives. Based on lessons learned from the CartoVIRTUAL and DynCoopNet projects, a generic service architecture scheme is proposed. This way, it is possible to achieve the integration of virtual map rooms and SDI technologies bringing support to researchers within the historical and social domains.

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Augmented reality (AR) is been increasingly used in mobile devices. Most of the available applications are set to work outdoors, mainly due to the availability of a reliable positioning system. Nevertheless, indoor (smart) spaces offer a lot of opportunities of creating new service concepts. In particular, in this paper we explore the applicability of mobile AR to hospitality environments (hotels and similar establishments). From the state-of-the-art of technologies and applications, a portfolio of services has been identified and a prototype using off-the-shelf technologies has been designed. Our objective is to identify the next technological challenges to overcome in order to have suitable underlying infrastructures and innovative services which enhance the traveller?s experience.

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The influence of applying European default traffic values to the making of a noise map was evaluated in a typical environment like Palma de Mallorca. To assess these default traffic values, a first model has been created and compared with measured noise levels. Subsequently a second traffic model, improving the input data used for the first one, has been created and validated according to the deviations. Different methodologies were also examined for collecting model input data that would be of higher quality, by analysing the improvement generated in the reduction in the uncertainty of the noise map introduced by the road traffic noise emission

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Nowadays, a wide offer of mobile augmented reality (mAR) applications is available at the market, and the user base of mobile AR-capable devices -smartphones- is rapidly increasing. Nevertheless, likewise to what happens in other mobile segments, business models to put mAR in value are not clearly defined yet. In this paper, we focus on sketching the big picture of the commercial offer of mAR applications, in order to inspire a posterior analysis of business models that may successfully support the evolution of mAR. We have gathered more than 400 mAR applications from Android Market, and analyzed the offer as a whole, taking into account some technology aspects, pricing schemes and user adoption factors. Results show, for example, that application providers are not expecting to generate revenues per direct download, although they are producing high-quality applications, well rated by the users.

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When mapping is formulated in a Bayesian framework, the need of specifying a prior for the environment arises naturally. However, so far, the use of a particular structure prior has been coupled to working with a particular representation. We describe a system that supports inference with multiple priors while keeping the same dense representation. The priors are rigorously described by the user in a domain-specific language. Even though we work very close to the measurement space, we are able to represent structure constraints with the same expressivity as methods based on geometric primitives. This approach allows the intrinsic degrees of freedom of the environment’s shape to be recovered. Experiments with simulated and real data sets will be presented

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Augmented reality (AR) commonly uses markers for detection and tracking. Such multimedia applications associate each marker with a virtual 3D model stored in the memory of the camera-equipped device running the application. Application users are limited in their interactions, which require knowing how to design and program 3D objects. This generally prevents them from developing their own entertainment AR applications. The Magic Cards application solves this problem by offering an easy way to create and manage an unlimited number of virtual objects that are encoded on special markers.

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At the present time almost all map libraries on the Internet are image collections generated by the digitization of early maps. This type of graphics files provides researchers with the possibility of accessing and visualizing historical cartographic information keeping in mind that this information has a degree of quality that depends upon elements such as the accuracy of the digitization process and proprietary constraints (e.g. visualization, resolution downloading options, copyright, use constraints). In most cases, access to these map libraries is useful only as a first approach and it is not possible to use those maps for scientific work due to the sparse tools available to measure, match, analyze and/or combine those resources with different kinds of cartography. This paper presents a method to enrich virtual map rooms and provide historians and other professional with a tool that let them to make the most of libraries in the digital era.

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This paper describes a mobile-based system to interact with objects in smart spaces, where the offer of resources may be extensive. The underlying idea is to use the augmentation capabilities of the mobile device to enable it as user-object mediator. In particular, the paper details how to build an attitude-based reasoning strategy that facilitates user-object interaction and resource filtering. The strategy prioritizes the available resources depending on the spatial history of the user, his real-time location and orientation and, finally, his active touch and focus interactions with the virtual overlay. The proposed reasoning method has been partially validated through a prototype that handles 2D and 3D visualization interfaces. This framework makes possible to develop in practice the IoT paradigm, augmenting the objects without physically modifying them.

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distribuciones diamétricas con ALS

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El proyecto que he realizado ha consistido en la creación de un sistema de información geográfica para el Campus Sur UPM, que puede servir de referencia para su implantación en cualquier otro campus universitario. Esta idea surge de la necesidad por parte de los usuarios de un campus de disponer de una herramienta que les permita consultar la información de los distintos lugares y servicios del campus, haciendo especial hincapié en su localización geográfica. Para ello ha sido necesario estudiar las tecnologías actuales que permiten implementar un sistema de información geográfica, dando lugar al sistema propuesto, que consiste en un conjunto de medios informáticos (hardware y software), que van a permitir al personal del campus obtener la información y localización de los elementos del campus desde su móvil. Tras realizar un análisis de los requisitos y funcionalidades que debía tener el sistema, el proyecto ha consistido en el diseño e implementación de dicho sistema. La información a consultar estará almacenada y disponible para su consulta en un equipo servidor accesible para el personal del campus. Para ello, durante la realización del proyecto, ha sido necesario crear un modelo de datos basado en el campus y cargar los datos geográficos de utilidad en una base de datos. Todo esto ha sido realizado mediante el producto software Smallword Core 4.2. Además, ha sido también necesario desplegar un software servidor que permita a los usuarios consultar dichos datos desde sus móviles vía WIFI o Internet, el producto utilizado para este fin ha sido Smallworld Geospatial Server 4.2. Para la realización de las consultas se han utilizado los servicios WMS(Web Map Service) y WFS(Web Feature Service) definidos por el OGC(Open Geospatial Consortium). Estos servicios están adaptados para la consulta de información geográfica. El sistema también está compuesto por una aplicación para dispositivos móviles con sistema operativo Android, que permite a los usuarios del sistema consultar y visualizar la información geográfica del campus. Dicha aplicación ha sido diseñada y programada a lo largo de la realización del proyecto. Para la realización de este proyecto también ha sido necesario un estudio del presupuesto que supondría una implantación real del sistema y el mantenimiento que implicaría tener el sistema actualizado. Por último, el proyecto incluye una breve descripción de las tecnologías futuras que podrían mejorar las funcionalidades del sistema: la realidad aumentada y el posicionamiento en el interior de edificios. ABSTRACT. The project I've done has been to create a geographic information system for the Campus Sur UPM, which can serve as a reference for implementation in any other college campus. This idea arises from the need for the campus users to have a tool that allows them to view information from different places and services, with particular emphasis on their geographical location. It has been necessary to study the current technologies that allow implementing a geographic information system, leading to the proposed system, which consists of a set of computer resources (hardware and software) that will allow campus users to obtain information and location of campus components from their mobile phones. Following an analysis of the requirements and functionalities that the system should have, the project involved the design and implementation of the system . The information will be stored and available on a computer server accessible to campus users. Accordingly, during the project, it was necessary to create a data model based on campus data and load this data in a database. All this has been done by Smallword Core 4.2 software product. In addition, it has also been necessary to deploy a server software that allows users to query the data from their phones via WIFI or Internet, the product used for this purpose has been Smallworld Geospatial Server 4.2 . To carry out the consultations have used the services WMS (Web Map Service) and WFS (Web Feature Service) defined by the OGC (Open Geospatial Consortium). These services are tailored to the geographic information retrieval. The system also consists of an application for mobile devices with Android operating system, which allows users to query and display geographic information related to the campus. This application has been designed and programmed over the project. For the realization of this project has also been necessary to study the budget that would be a real system implementation and the maintenance that would have the system updated. Finally, the project includes a brief description of future technologies that could improve the system's functionality: augmented reality and positioning inside the buildings.