877 resultados para pervasive computing,home intelligence,context-awareness,domotica,prolog,tuProlog,sensori


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Computação Móvel é um termo genérico, ainda em definição, ao redor do qual se delineia um espectro de cenários possíveis, desde a Computação Pessoal, com o uso de computadores de mão, até a visão futurista da Computação Ubíqua. O foco do projeto ISAM (Infra-estrutura de Suporte às Aplicações Móveis Distribuída), em desenvolvimento no II/UFRGS, é a Pervasive Computing. Esta desenha um cenário onde o usuário é livre para se deslocar mantendo o acesso aos recursos da rede e ao seu ambiente computacional, todo tempo em qualquer lugar. Esse novo cenário apresenta muitos desafios para o projeto e execução de aplicações. Nesse escopo, esta tese aprofunda a discussão sobre questões relativas à adaptação ao contexto em um ambiente pervasivo sob a ótica de uma Linguagem de Programação, e define uma linguagem chamada ISAMadapt. A definição da linguagem ISAMadapt baseia-se em quatro abstrações: contexto, adaptadores, políticas e comandos de adaptação. Essas abstrações foram concretizadas em duas visões: (1) em tempo de programação, através de comandos da linguagem e arquivos de configuração, descritos com o auxílio do Ambiente de Desenvolvimento de Aplicações; (2) em tempo de execução, através de serviços e APIs fornecidos pelos componentes que integram o ambiente de execução pervasiva (ISAMpe). Deste, os principais componentes que implementam a semântica de execução da aplicação ISAMadapt são: o serviço de reconhecimento de contexto, ISAMcontextService, e a máquina de execução da adaptação dinâmica, ISAMadaptEngine.As principais contribuições desta tese são: (a) primeira linguagem para a codificação de aplicações pervasivas; (b) sintaxe e semântica de comandos para expressar sensibilidade ao contexto pervasivo; (c) fonte para o desenvolvimento de uma metodologia de projeto de aplicações pervasivas; (d) projeto ISAM e o projeto contextS (www.inf.ufrgs.br/~isam) que fornecem suporte para o ciclo de vida das aplicações, desde o desenvolvimento até a execução de aplicações pervasivas.

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Renovados são os desa os trazidos à computação distribuída pelos recentes desenvolvimentos nas tecnologias de computação móvel. Tais avanços inspiram uma perspectiva na qual a computação tornar-se-á uma entidade ubíqua em um futuro próximo, estando presente nas mais simples atividades do dia-a-dia. Esta perspectiva é motivadora das pesquisas conduzidas no escopo do projeto ISAM, as quais investigam as questões relativas ao uso da computação em ambientes móveis de larga escala. Neste trabalho é apresentado o sistema PRIMOS (PRIMitives for Object Scheduling), o qual busca, pela complementação da plataforma Java, satisfazer as emergentes necessidades do ISAM. Especi camente, o PRIMOS constitui um conjunto de primitivas para instanciação remota e migração de objetos, comunicação e monitoração, direcionadas a um ambiente de computação distribuída de larga escala de características pervasivas. A primitiva de instanciação remota disponibilizada pelo PRIMOS aumenta a plataforma Java padrão com a possibilidade de criar e ativar objetos em nodos remotos do sistema. Por sua vez, a primitiva de migração faculta a relocação de objetos. A consecu- ção de tais semânticas tem como sub-produto a de nição de semânticas para ativação e desativação de objetos, assim como para captura e restauração de contexto de execução. Sob a perspectiva da comunicação, o PRIMOS de ne um esquema de endereçamento independente de protocolo de transporte, assim como uma interface neutra para acesso às facilidades de comunicação. A integração destas funcionalidades ao mecanismo de invocações remotas da plataforma Java, o RMI, permite a desvinculação deste da pilha TCP/IP. Por conseguinte, habilita a adoção de transportes otimizados ao hardware de comunicação disponibilizado pelo sistema. No que se refere à monitoração, o PRIMOS de ne um esquema exível e extensível baseado em sensores. A exibilidade vem principalmente da possibilidade dos sensores terem seus parâmetros de operação recon gurados a qualquer momento em resposta a novas necessidades do sistema. Por outro lado, o sistema é extensível pois o conjunto de sensores básicos, ditos nativos, pode ser aumentado por sensores providos pela aplicação. Com intuito de validar as idéias postuladas, um protótipo foi construído para o sistema. Sobre este, baterias de testes foram realizadas para cada uma das primitivas constituintes do PRIMOS.

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Sistema di segnalazione automatica posti auto su strada. Implementato per Android con tecniche di apprendimento automatico supervisionato e Bluetooth per realizzare un'applicazione Context-Aware.

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L’obiettivo della tesi è definire un modello che permetta di realizzare applicazioni che integrino diverse tecnologie come la realtà aumentata, pervasive computing e Internet of Things. In particolare si analizza la nozione di "augmentation" che indica un’estensione e un arricchimento delle funzionalità e delle informazioni che possono essere percepite dai sensi umani e che può essere ritrovata, in modo diverso, nelle tecnologie trattate. A tal proposito, si introduce l’idea di augmented world, il cui scopo è quello di realizzare un livello aumentato collegato ad un livello fisico, attraverso il quale permettere l’interazione tra elementi virtuali ed elementi fisici. In seguito, tramite un'analisi tassonomica si vogliono individuare le caratteristiche ed i requisiti fondanti degli ambiti applicativi trattati per poter definire un modello che possa essere utilizzato come riferimento per le diverse tipologie di applicazioni. Infine il modello proposto è stato applicato a diversi casi di studio che spaziano tra i principali contesti applicativi in cui vengono utilizzate le tecnologie illustrate. La modellazione è fatta prescindendo da alcuni aspetti relativi alla comunicazione o alla sincronizzazione tra livello reale e livello aumentato, in quanto l’obiettivo è esporre una prima validazione del modello che permetta di riscontrarne l’adeguatezza ed eventuali limiti per una futura raffinazione.

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The Personal Health Assistant Project (PHA) is a pilot system implementation sponsored by the Kozani Region Governors’ Association (KRGA) and installed in one of the two major public hospitals of the city of Kozani. PHA is intended to demonstrate how a secure, networked, multipurpose electronic health and food benefits digital signage system can transform common TV sets inside patient homes or hospital rooms into health care media players and facilitate information sharing and improve administrative efficiency among private doctors, public health care providers, informal caregivers, and nutrition program private companies, while placing individual patients firmly in control of the information at hand. This case evaluation of the PHA demonstration is intended to provide critical information to other decision makers considering implementing PHA or related digital signage technology at other institutions and public hospitals around the globe.

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Most of the current evacuation plans are based on static signaling, fixed monitoring infrastructure, and limited user notification and feedback mechanisms. These facts lead to lower situation awareness, in the case event of an emergency, such as blocked emergency exits, while delaying the reaction time of individuals. In this context, we introduce the E-Flow communication system, which improves the user awareness by integrating personal, mobile and fixed devices with the existing monitoring infrastructure. Our system broadens the notification and monitoring alternatives, in real time, among, safety staff, end-users and evacuation related devices, such as sensors and actuators.

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Everybody has to coordinate several tasks everyday, usually in a manual manner. Recently, the concept of Task Automation Services has been introduced to automate and personalize the task coordination problem. Several user centered platforms and applications have arisen in the last years, that let their users configure their very own automations based on third party services. In this paper, we propose a new system architecture for Task Automation Services in a heterogeneous mobile, smart devices, and cloud services environment. Our architecture is based on the novel idea to employ distributed Complex Event Processing to implement innovative mixed execution profiles. The major advantage of the approach is its ability to incorporate context-awareness and real-time coordination in Task Automation Services.

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This paper proposes an architecture for pervasive computing which utilizes context information to provide adaptations based on vertical handovers (handovers between heterogeneous networks) while supporting application Quality of Service (QoS). The future of mobile computing will see an increase in ubiquitous network connectivity which allows users to roam freely between heterogeneous networks. One of the requirements for pervasive computing is to adapt computing applications or their environment if current applications can no longer be provided with the requested QoS. One of possible adaptations is a vertical handover to a different network. Vertical handover operations include changing network interfaces on a single device or changes between different devices. Such handovers should be performed with minimal user distraction and minimal violation of communication QoS for user applications. The solution utilises context information regarding user devices, user location, application requirements, and network environment. The paper shows how vertical handover adaptations are incorporated into the whole infrastructure of a pervasive system

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Salutogenesis is now accepted as a part of the contemporary model of disease: an individual is not only affected by pathogenic factors in the environment, but those that promote well-being or salutogenesis. Given that "environment" extends to include the built environment, promotion of salutogenesis has become part of the architectural brief for contemporary healthcare facilities, drawing on an increasing evidence-base. Salutogenesis is inextricably linked with the notion of person-environment "fit". MyRoom is a proposal for an integrated architectural and pervasive computing model, which enhances psychosocial congruence by using real-time data indicative of the individual's physical status to enable the environment of his/her room (colour, light, temperature) to adapt on an on-going basis in response to bio-signals. This work is part of the PRTLI-IV funded programme NEMBES, investigating the use of embedded technologies in the built environment. Different care contexts require variations in the model, and iterative prototyping investigating use in different contexts will progressively lead to the development of a fully-integrated adaptive salutogenic single-room prototype.

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This dissertation studies the context-aware application with its proposed algorithms at client side. The required context-aware infrastructure is discussed in depth to illustrate that such an infrastructure collects the mobile user’s context information, registers service providers, derives mobile user’s current context, distributes user context among context-aware applications, and provides tailored services. The approach proposed tries to strike a balance between the context server and mobile devices. The context acquisition is centralized at the server to ensure the usability of context information among mobile devices, while context reasoning remains at the application level. Hence, a centralized context acquisition and distributed context reasoning are viewed as a better solution overall. The context-aware search application is designed and implemented at the server side. A new algorithm is proposed to take into consideration the user context profiles. By promoting feedback on the dynamics of the system, any prior user selection is now saved for further analysis such that it may contribute to help the results of a subsequent search. On the basis of these developments at the server side, various solutions are consequently provided at the client side. A proxy software-based component is set up for the purpose of data collection. This research endorses the belief that the proxy at the client side should contain the context reasoning component. Implementation of such a component provides credence to this belief in that the context applications are able to derive the user context profiles. Furthermore, a context cache scheme is implemented to manage the cache on the client device in order to minimize processing requirements and other resources (bandwidth, CPU cycle, power). Java and MySQL platforms are used to implement the proposed architecture and to test scenarios derived from user’s daily activities. To meet the practical demands required of a testing environment without the impositions of a heavy cost for establishing such a comprehensive infrastructure, a software simulation using a free Yahoo search API is provided as a means to evaluate the effectiveness of the design approach in a most realistic way. The integration of Yahoo search engine into the context-aware architecture design proves how context aware application can meet user demands for tailored services and products in and around the user’s environment. The test results show that the overall design is highly effective,providing new features and enriching the mobile user’s experience through a broad scope of potential applications.

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The dynamicity and heterogeneity that characterize pervasive environments raise new challenges in the design of mobile middleware. Pervasive environments are characterized by a significant degree of heterogeneity, variability, and dynamicity that conventional middleware solutions are not able to adequately manage. Originally designed for use in a relatively static context, such middleware systems tend to hide low-level details to provide applications with a transparent view on the underlying execution platform. In mobile environments, however, the context is extremely dynamic and cannot be managed by a priori assumptions. Novel middleware should therefore support mobile computing applications in the task of adapting their behavior to frequent changes in the execution context, that is, it should become context-aware. In particular, this thesis has identified the following key requirements for novel context-aware middleware that existing solutions do not fulfil yet. (i) Middleware solutions should support interoperability between possibly unknown entities by providing expressive representation models that allow to describe interacting entities, their operating conditions and the surrounding world, i.e., their context, according to an unambiguous semantics. (ii) Middleware solutions should support distributed applications in the task of reconfiguring and adapting their behavior/results to ongoing context changes. (iii) Context-aware middleware support should be deployed on heterogeneous devices under variable operating conditions, such as different user needs, application requirements, available connectivity and device computational capabilities, as well as changing environmental conditions. Our main claim is that the adoption of semantic metadata to represent context information and context-dependent adaptation strategies allows to build context-aware middleware suitable for all dynamically available portable devices. Semantic metadata provide powerful knowledge representation means to model even complex context information, and allow to perform automated reasoning to infer additional and/or more complex knowledge from available context data. In addition, we suggest that, by adopting proper configuration and deployment strategies, semantic support features can be provided to differentiated users and devices according to their specific needs and current context. This thesis has investigated novel design guidelines and implementation options for semantic-based context-aware middleware solutions targeted to pervasive environments. These guidelines have been applied to different application areas within pervasive computing that would particularly benefit from the exploitation of context. Common to all applications is the key role of context in enabling mobile users to personalize applications based on their needs and current situation. The main contributions of this thesis are (i) the definition of a metadata model to represent and reason about context, (ii) the definition of a model for the design and development of context-aware middleware based on semantic metadata, (iii) the design of three novel middleware architectures and the development of a prototypal implementation for each of these architectures, and (iv) the proposal of a viable approach to portability issues raised by the adoption of semantic support services in pervasive applications.