935 resultados para Mobile technologies


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The Mobile Network Optimization (MNO) technologies have advanced at a tremendous pace in recent years. And the Dynamic Network Optimization (DNO) concept emerged years ago, aimed to continuously optimize the network in response to variations in network traffic and conditions. Yet, DNO development is still at its infancy, mainly hindered by a significant bottleneck of the lengthy optimization runtime. This paper identifies parallelism in greedy MNO algorithms and presents an advanced distributed parallel solution. The solution is designed, implemented and applied to real-life projects whose results yield a significant, highly scalable and nearly linear speedup up to 6.9 and 14.5 on distributed 8-core and 16-core systems respectively. Meanwhile, optimization outputs exhibit self-consistency and high precision compared to their sequential counterpart. This is a milestone in realizing the DNO. Further, the techniques may be applied to similar greedy optimization algorithm based applications.

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Localization is one of the key technologies in Wireless Sensor Networks (WSNs), since it provides fundamental support for many location-aware protocols and applications. Constraints on cost and power consumption make it infeasible to equip each sensor node in the network with a Global Position System (GPS) unit, especially for large-scale WSNs. A promising method to localize unknown nodes is to use mobile anchor nodes (MANs), which are equipped with GPS units moving among unknown nodes and periodically broadcasting their current locations to help nearby unknown nodes with localization. A considerable body of research has addressed the Mobile Anchor Node Assisted Localization (MANAL) problem. However to the best of our knowledge, no updated surveys on MAAL reflecting recent advances in the field have been presented in the past few years. This survey presents a review of the most successful MANAL algorithms, focusing on the achievements made in the past decade, and aims to become a starting point for researchers who are initiating their endeavors in MANAL research field. In addition, we seek to present a comprehensive review of the recent breakthroughs in the field, providing links to the most interesting and successful advances in this research field.

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Food safety has always been a social issue that draws great public attention. With the rapid development of wireless communication technologies and intelligent devices, more and more Internet of Things (IoT) systems are applied in the food safety tracking field. However, connection between things and information system is usually established by pre-storing information of things into RFID Tag, which is inapplicable for on-field food safety detection. Therefore, considering pesticide residue is one of the severe threaten to food safety, a new portable, high-sensitivity, low-power, on-field organophosphorus (OP) compounds detection system is proposed in this thesis to realize the on-field food safety detection. The system is designed based on optical detection method by using a customized photo-detection sensor. A Micro Controller Unit (MCU) and a Bluetooth Low Energy (BLE) module are used to quantize and transmit detection result. An Android Application (APP) is also developed for the system to processing and display detection result as well as control the detection process. Besides, a quartzose sample container and black system box are also designed and made for the system demonstration. Several optimizations are made in wireless communication, circuit layout, Android APP and industrial design to realize the mobility, low power and intelligence.

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The adoption of Augmented Reality (AR) technologies can make the provision of field services to industrial equipment more effective. In these situations, the cost of deploying skilled technicians in geographically dispersed locations must be accurately traded off with the risks of not respecting the service level agreements with the customers. This paper, through the case study of a leading OEM in the production printing industry, presents the challenges that have to be faced in order to favour the adoption of a particular kind of AR named Mobile Collaborative Augmented Reality (MCAR). In particular, this study uses both qualitative and quantitative research. Firstly, a demonstration to show how MCAR can support field service was settled in order to achieve information about the use experience of the people involved. Then, the entire field force of Océ Italia – Canon Group was surveyed in order to investigate quantitatively the technicians’ perceptions about the usefulness and ease of use of MCAR, as well as their intentions to use this technology.

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Mobile and video technologies are being used to boost the confidence and employability of students with disabilities at Portland College - an independent specialist college for students aged 16 to 25, it provides educational opportunities and fosters independent living skills for students with physical or learning disabilities.

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Physical places are given contextual meaning by the objects and people that make up the space. Presence in physical places can be utilised to support mobile interaction by making access to media and notifications on a smartphone easier and more visible to other people. Smartphone interfaces can be extended into the physical world in a meaningful way by anchoring digital content to artefacts, and interactions situated around physical artefacts can provide contextual meaning to private manipulations with a mobile device. Additionally, places themselves are designed to support a set of tasks, and the logical structure of places can be used to organise content on the smartphone. Menus that adapt the functionality of a smartphone can support the user by presenting the tools most likely to be needed just-in-time, so that information needs can be satisfied quickly and with little cognitive effort. Furthermore, places are often shared with people whom the user knows, and the smartphone can facilitate social situations by providing access to content that stimulates conversation. However, the smartphone can disrupt a collaborative environment, by alerting the user with unimportant notifications, or sucking the user in to the digital world with attractive content that is only shown on a private screen. Sharing smartphone content on a situated display creates an inclusive and unobtrusive user experience, and can increase focus on a primary task by allowing content to be read at a glance. Mobile interaction situated around artefacts of personal places is investigated as a way to support users to access content from their smartphone while managing their physical presence. A menu that adapts to personal places is evaluated to reduce the time and effort of app navigation, and coordinating smartphone content on a situated display is found to support social engagement and the negotiation of notifications. Improving the sensing of smartphone users in places is a challenge that is out-with the scope of this thesis. Instead, interaction designers and developers should be provided with low-cost positioning tools that utilise presence in places, and enable quantitative and qualitative data to be collected in user evaluations. Two lightweight positioning tools are developed with the low-cost sensors that are currently available: The Microsoft Kinect depth sensor allows movements of a smartphone user to be tracked in a limited area of a place, and Bluetooth beacons enable the larger context of a place to be detected. Positioning experiments with each sensor are performed to highlight the capabilities and limitations of current sensing techniques for designing interactions with a smartphone. Both tools enable prototypes to be built with a rapid prototyping approach, and mobile interactions can be tested with more advanced sensing techniques as they become available. Sensing technologies are becoming pervasive, and it will soon be possible to perform reliable place detection in-the-wild. Novel interactions that utilise presence in places can support smartphone users by making access to useful functionality easy and more visible to the people who matter most in everyday life.

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Les inventaires archéologiques représentent une part importante des travaux archéologiques qui sont effectués en sol québécois. Il s’agit d’interventions qui sont réalisées en milieux urbains ou ruraux, mais également dans des milieux forestiers parfois éloignés. Lors de ces interventions, plusieurs informations de nature spatiale sont prises, tant pour évaluer la présence ou l’absence de vestiges archéologiques que pour décrire l’environnement et les perturbations observées. Les données issues de ces travaux sont de manière générale enregistrées sur le terrain sur des supports papiers, pour être éventuellement transférées en format numérique après l’intervention, et la localisation sur le terrain est effectuée à l’aide de cartes, de la boussole et d’un appareil GPS. Ce projet cherche à évaluer la contribution potentielle d’une solution géomatique mobile qui permettrait d’assister les archéologues sur le terrain, tant au niveau de la saisie de données que de la géolocalisation sur le terrain. Afin d’identifier l’intérêt, les attentes et les besoins prioritaires d’une telle solution, une enquête a été réalisée auprès de la communauté archéologique. Subséquemment, afin de démontrer qu’une solution géomatique mobile pourrait être développée afin de soutenir les travaux archéologiques, un appareil mobile adapté aux contraintes du terrain archéologique a été identifié et un prototype d’application a été développé, sur la base des résultats de l’enquête obtenus. Il nous a par la suite été possible de faire prendre en main la solution mobile développée par une archéologue et un essai en milieu contrôlé a pu être réalisé afin d’avoir une évaluation critique de l’application et de proposer des pistes d’amélioration. Les résultats obtenus indiquent que la technologie géomatique mobile est aujourd’hui suffisamment accessible pour pouvoir bien s’adapter aux réalités de terrain et ainsi venir répondre à certains besoins des professionnels de terrain tout en demeurant abordable. Malgré quelques pistes d’amélioration qui ont été identifiées, l’enthousiasme suscité par l’application développée démontre l’intérêt des utilisateurs à intégrer ces nouvelles technologies. La démarche de développement employée est également novatrice puisqu’elle permet de développer, en l’espace de quelques mois, une application adaptée à un contexte de terrain professionnel particulier, tout en demeurant grandement modulable et pouvant s’adapter à d’autres domaines d’application.

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A presente investigação tem como objeto de estudo a Arte Nova nas cidades de Aveiro e Ílhavo, traduzindo-se posteriormente na criação de uma aplicação mobile de um roteiro diferenciador referente ao património Arte Nova localizado nas duas cidades. Existe em Aveiro, uma tomada de consciência notória relativa ao património que se enquadra no espírito e nas características do estilo Arte Nova. Isso em muito se deve à originalidade e diversidade de interpretações que a caracterizam localmente. No entanto, apesar dos melhoramentos efetuados na comunicação deste património, especialmente depois da reabilitação do edifício Mário Belmonte Pessoa e da sua transformação em Museu Arte Nova, o roteiro atual não contempla todos os artefactos do estilo existentes na cidade e exclui aqueles que se encontram fora do centro urbano da cidade de Aveiro. Em Ílhavo a realidade é completamente díspar da encontrada na cidade vizinha, Aveiro, não existindo grande decoro pelo tratamento da informação referente ao estilo Arte Nova, apenas algumas referencias breves em guias culturais e um roteiro limitado no site da Câmara Municipal de Ílhavo. Paralelamente a isto, a região de Aveiro tornou-se numa das regiões com o espólio mais significativo do país. Dada à sua importância cultural e local, o roteiro diferenciador que propomos nesta investigação irá intervir de forma a melhorar o que já existe, passando pelo aprofundamento de conhecimentos sobre o tema, catalogação, cruzamento e agrupamento de toda a informação dos artefactos que se encontrem dispersos pelas duas cidades, de forma a tornar mais fácil a procura e o acesso à informação. Numa primeira fase, a investigação irá focar-se nos conteúdos afetos a cada um dos artefactos, sendo estes metodologicamente trabalhados através do método triangular de Francisco Providência, a interpretação autoral (autoria) que se traduz na evolução dos edifícios (tecnologia) e a relevância da sua história (programa) para o património nacional. Posteriormente, os conteúdos anteriormente referidos serão adaptados a uma aplicação mobile que facilitará o acesso à informação previamente selecionada referente a cada artefacto, apresentando uma breve história sobre as manifestações da Arte Nova nas cidades de Aveiro e Ílhavo. Esta aplicação mobile permitirá perceber a evolução dos edifícios desde a sua construção até à atualidade, ao nível de recuperação estrutural ou da falta de reabilitação e recuperação dos mesmos. Contribuirá para conhecer se os edifícios mantiveram (ou não) as suas características originais relativas ao desenho e tecnologia, para tal fará valerse de tecnologias como Realidade Aumentada, assim como os princípios de elaboração e leitura de QR codes, para facilitar o acesso, localização e compreensão dessa mesma informação, permitindo ainda que o seu utilizador embarque numa viagem no tempo e experiencie o roteiro de uma forma diferente. Paralelamente, pretende-se que este roteiro funcione como um roteiro único do património Arte Nova nas duas cidades, com o intuito de se expandir a outras cidades e se tornar num roteiro único do património Arte Nova na região de Aveiro. A diversidade do património Arte Nova nesta região assenta no cunho pessoal e social que os proprietários atribuíram aos seus artefactos, assim como na formação e a capacidade artística fortemente influenciada pela técnica pessoal, temperamento e sensibilidade dos seus autores, fazendo destes artefactos autênticas obras de arte, que merecem o seu estudo. Constatou-se, ao nível dos resultados que o protótipo da aplicação mobile, se adequaram ao que foi anunciado, a nível investigativo, e por isso, interessou a este estudo confirmar a demonstração do que foi enunciado. No entanto, concluiu-se que o respetivo protótipo necessita de ser ‘afinado’ em estudos futuros. Independentemente, das fragilidades encontradas, considera-se que este protótipo de aplicação mobile poderá servir como meio de excelência para a integração de conteúdos que vão mais além do que a visualização dos artefactos. Assim, contribui-se para o adensamento e acesso ao conhecimento sobre a história da Arte Nova em Portugal.

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Home Automation holds the potential of realizing cost savings for end users while reducing the carbon footprint of domestic energy consumption. Yet, adoption is still very low. High cost of vendor-supplied home automation systems is a major prohibiting factor. Open source systems such as FHEM, Domoticz, OpenHAB etc. are a cheaper alternative and can drive the adoption of home automation. Moreover, they have the advantage of not being limited to a single vendor or communication technology which gives end users flexibility in the choice of devices to include in their installation. However, interaction with devices having diverse communication technologies can be inconvenient for users thus limiting the utility they derive from it. For application developers, creating applications which interact with the several technologies in the home automation systems is not a consistent process. Hence, there is the need for a common description mechanism that makes interaction smooth for end users and which enables application developers to make home automation applications in a consistent and uniform way. This thesis proposes such a description mechanism within the context of an open source home automation system – FHEM, together with a system concept for its application. A mobile application was developed as a proof of concept of the proposed description mechanism and the results of the implementation are reflected upon.

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Current trends in broadband mobile networks are addressed towards the placement of different capabilities at the edge of the mobile network in a centralised way. On one hand, the split of the eNB between baseband processing units and remote radio headers makes it possible to process some of the protocols in centralised premises, likely with virtualised resources. On the other hand, mobile edge computing makes use of processing and storage capabilities close to the air interface in order to deploy optimised services with minimum delay. The confluence of both trends is a hot topic in the definition of future 5G networks. The full centralisation of both technologies in cloud data centres imposes stringent requirements to the fronthaul connections in terms of throughput and latency. Therefore, all those cells with limited network access would not be able to offer these types of services. This paper proposes a solution for these cases, based on the placement of processing and storage capabilities close to the remote units, which is especially well suited for the deployment of clusters of small cells. The proposed cloud-enabled small cells include a highly efficient microserver with a limited set of virtualised resources offered to the cluster of small cells. As a result, a light data centre is created and commonly used for deploying centralised eNB and mobile edge computing functionalities. The paper covers the proposed architecture, with special focus on the integration of both aspects, and possible scenarios of application.

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Sensor networks are becoming popular nowadays in the development of smart environments. Heavily relying on static sensor and actuators, though, such environments usually lacks of versatility regarding the provided services and interaction capabilities. Here we present a framework for smart environments where a service robot is included within the sensor network acting as a mobile sensor and/or actuator. Our framework integrates on-the-shelf technologies to ensure its adaptability to a variety of sensor technologies and robotic software. Two pilot cases are presented as evaluation of our proposal.

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Nowadays words like Smart City, Internet of Things, Environmental Awareness surround us with the growing interest of Computer Science and Engineering communities. Services supporting these paradigms are definitely based on large amounts of sensed data, which, once obtained and gathered, need to be analyzed in order to build maps, infer patterns, extract useful information. Everything is done in order to achieve a better quality of life. Traditional sensing techniques, like Wired or Wireless Sensor Network, need an intensive usage of distributed sensors to acquire real-world conditions. We propose SenSquare, a Crowdsensing approach based on smartphones and a central coordination server for time-and-space homogeneous data collecting. SenSquare relies on technologies such as CoAP lightweight protocol, Geofencing and the Military Grid Reference System.

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iGrooving is a generative music mobile application specifically designed for runners. The application’s foundation is a step-counter that is programmed using the iPhone’s built-in accelerometer. The runner’s steps generate the tempo of the performance by mapping each step to trigger a kick-drum sound file. Additionally, different sound files are triggered at specific step counts to generate the musical performance, allowing the runner a level of compositional autonomy. The sonic elements are chosen to promote a meditative aspect of running. iGrooving is conceived as a biofeedback-stimulated musical instrument and an environment for creating generative music processes with everyday technologies, inspiring us to rethink our everyday notions of musical performance as a shared experience. Isolation, dynamic changes, and music generation are detailed to show how iGrooving facilitates novel methods for music composition, performance and audience participation.