935 resultados para personal area networks (PANs)


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Most research work on WSNs has focused on protocols or on specific applications. There is a clear lack of easy/ready-to-use WSN technologies and tools for planning, implementing, testing and commissioning WSN systems in an integrated fashion. While there exists a plethora of papers about network planning and deployment methodologies, to the best of our knowledge none of them helps the designer to match coverage requirements with network performance evaluation. In this paper we aim at filling this gap by presenting an unified toolset, i.e., a framework able to provide a global picture of the system, from the network deployment planning to system test and validation. This toolset has been designed to back up the EMMON WSN system architecture for large-scale, dense, real-time embedded monitoring. It includes network deployment planning, worst-case analysis and dimensioning, protocol simulation and automatic remote programming and hardware testing tools. This toolset has been paramount to validate the system architecture through DEMMON1, the first EMMON demonstrator, i.e., a 300+ node test-bed, which is, to the best of our knowledge, the largest single-site WSN test-bed in Europe to date.

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Most current-generation Wireless Sensor Network (WSN) nodes are equipped with multiple sensors of various types, and therefore support for multi-tasking and multiple concurrent applications is becoming increasingly common. This trend has been fostering the design of WSNs allowing several concurrent users to deploy applications with dissimilar requirements. In this paper, we extend the advantages of a holistic programming scheme by designing a novel compiler-assisted scheduling approach (called REIS) able to identify and eliminate redundancies across applications. To achieve this useful high-level optimization, we model each user application as a linear sequence of executable instructions. We show how well-known string-matching algorithms such as the Longest Common Subsequence (LCS) and the Shortest Common Super-sequence (SCS) can be used to produce an optimal merged monolithic sequence of the deployed applications that takes into account embedded scheduling information. We show that our approach can help in achieving about 60% average energy savings in processor usage compared to the normal execution of concurrent applications.

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Several projects in the recent past have aimed at promoting Wireless Sensor Networks as an infrastructure technology, where several independent users can submit applications that execute concurrently across the network. Concurrent multiple applications cause significant energy-usage overhead on sensor nodes, that cannot be eliminated by traditional schemes optimized for single-application scenarios. In this paper, we outline two main optimization techniques for reducing power consumption across applications. First, we describe a compiler based approach that identifies redundant sensing requests across applications and eliminates those. Second, we cluster the radio transmissions together by concatenating packets from independent applications based on Rate-Harmonized Scheduling.

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Wireless Sensor Networks (WSNs) are increasingly used in various application domains like home-automation, agriculture, industries and infrastructure monitoring. As applications tend to leverage larger geographical deployments of sensor networks, the availability of an intuitive and user friendly programming abstraction becomes a crucial factor in enabling faster and more efficient development, and reprogramming of applications. We propose a programming pattern named sMapReduce, inspired by the Google MapReduce framework, for mapping application behaviors on to a sensor network and enabling complex data aggregation. The proposed pattern requires a user to create a network-level application in two functions: sMap and Reduce, in order to abstract away from the low-level details without sacrificing the control to develop complex logic. Such a two-fold division of programming logic is a natural-fit to typical sensor networking operation which makes sensing and topological modalities accessible to the user.

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Foi no âmbito da realização da investigação, que tem como propósito geral contribuir para o conhecimento na área de Recursos Humanos, que efetuamos este estudo definindo como tema os contributos do Otimismo e Adaptabilidade para a Empregabilidade. Tem como objetos de estudo as práticas de Acolhimento & Integração das Pessoas no Grupo Valpi e de que forma o otimismo, reforça e se correlaciona com esse processo. Adicionalmente, procura avaliar o nível de empregabilidade dos seus colaboradores na sua dimensão da adaptabilidade pessoal, especialmente o papel do otimismo, tendo como base o modelo de Fugate, Kinicki e Ashforth (2004). A metodologia de investigação seguiu uma abordagem metodológica mista, por inquérito de pesquisa quantitativa e qualitativa, com recurso à utilização de instrumentos de recolha de dados, respetivamente, por questionário e por entrevista, utilizando a técnica de grupo de discussão focalizada. O questionário de escala de resposta do tipo Likert já existente, suportando o modelo de investigação proposto e as variáveis em estudo, foi aplicado a uma amostra intencional da população, por conveniência e aleatória. Foram inquiridos cem participantes por questionário e participaram cinco elementos no grupo de discussão focalizada, tendo sido neste caso escolhido uma amostra por conveniência e não aleatória, com interlocutores privilegiados da empresa. Os dados deste estudo permitem-nos concluir que o otimismo é uma variável relevante quer do ponto de vista da organização, quer do ponto de vista do individuo.