801 resultados para Cognitive Radio Sensor Networks (CRSN)


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As redes de comunicação sem fios são uma área de grande desenvolvimento. As tecnologias progridem e criam-se novas oportunidades de implementação de novos dispositivos nesta área. Neste tipo de redes, encontram-se as redes de sensores sem fios (WSN- Wireless Sensor Networks), que são constituídas por vários dispositivos (Nós Sensores) que colaboram entre si, para recolher e encaminhar informação sobre um determinado fenómeno físico até uma estação base. A um outro nível, a preservação das obras de arte é uma preocupação fundamental de todos os Museus. Existe a necessidade de conservar ao máximo as características genuínas de cada artefacto. Para tal, torna-se essencial uma monitorização e controlo de alguns factores ambientais, que podem danificar ou alterar as características dos materiais. Essa monitorização é realizada nos museus da Madeira, mas de uma forma manual e recorrendo a aparelhos que são dispendiosos e um pouco arcaicos. Assim sendo, tornou-se necessário encontrar uma solução, para a realização dessa tarefa de uma forma automática e contínua. As WSN oferecem uma resposta para estas necessidades, surgindo assim o projecto WISE-MUSE, que visa a monitorização ambiental para a conservação de obras de arte e artigos históricos, através de redes sem fios.Portanto, este projecto de Mestrado em Telecomunicações e Redes tem como área de acção a camada física da arquitectura do sistema WISE-MUSE. Neste sentido, desenvolveu-se um conjunto de dispositivos electrónicos, para monitorização e controlo de factores climáticos no Museu de arte contemporânea do Funchal. A ligação entre dispositivos e transmissão dos dados recolhidos foi assegurada através da implementação de uma rede sem fios. Ao nível dos nós sensores construídos, os desenvolvimentos mais importantes tiveram como meta a minimização de custos, consumo energético e dimensões dos mesmos. Além dos sensores, foram desenvolvidos outros componentes da rede, nomeadamente dispositivos routers e um dispositivo que permite o controlo automático da humidade.

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A integração de sensores em estruturas, máquinas e ambientes, juntamente com uma eficiente recolha e envio de informação, trazem elevados benefícios para as sociedades actuais. Nesse sentido, com a crescente importância que as redes sem fios (WSN) assumem no contexto da qualidade de vida dos indivíduos, principalmente ao nível das comunicações, é fundamental procedermos à exploração das suas diversas potencialidades nos mais variados âmbitos. Deste modo, as WSN podem ser aplicadas em diversas áreas: saúde, monitorização ambiental, segurança de edifícios, indústria, monitorização de tráfego, monitorização de terramotos ou outras catástrofes naturais. Assim surge o projecto WISE-MUSE (Environmental Monitoring based on Wireless Sensor Networks for conservation of artwork and historical archives), que visa a implementação de um conjunto de soluções que permitem a monitorização contínua e automática de parâmetros ambientais (luminosidade, humidade, temperatura e CO2) através de WSN em museus. Este projecto de Mestrado em Engenharia Informática situa-se no âmbito deste projecto WISE-MUSE e tem como intuito: (i) a extensão da plataforma de monitorização de modo a recolher os dados das portas de emergência; (ii) a implementação de um sistema de notificações e alarmes via SMS e E-mail; e (iii) o desenvolvimento da plataforma Web WISE-MUSE, que permita a visualização remota dos dados dos sensores e das portas de uma forma integrada e em tempo real.

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As redes de sensores sem fios (WSN- WSN-Wireless Sensor Network) utilizam um grande número de dispositivos sem fios (sensores), que são de baixo custo e equipados com interfaces wireless. Utilizam um conjunto de sensores autónomos que colaboram entre si para efectuar a monitorização das condições ambientais, tais como: temperatura, oxigénio, luz, humidade, pressão, gases poluentes, entre outras. Estas redes podem operar durante largos períodos de tempo, sem intervenção humana, sendo que esse tempo depende do nível de bateria desses nós. De modo a que os gestores de um Museu possam gerir de forma mais adequada as obras de arte e arquivos históricos, surge o projecto WISE-MUSE – Environmental Monitoring based on Wireless Sensor Networks, que permite implementar soluções para a monitorização museológica, com a utilização de redes de sensores sem fios. Actualmente, a colaboração entre o utilizador e a WSN é muito ténue, sendo que apenas existe colaboração entre os nós sensores. De forma a aumentar esta colaboração, e no âmbito do projecto WISE-MUSE surge o CWSN – Collaborative Wireless Sensor Network Model, que define um modelo de colaboração na rede de sensores sem fios, permitindo a utilização de sessões colaborativas para a monitorização da rede. Com o intuito de obter o máximo rendimento da rede, é necessário definir qual o deployment a utilizar. O tipo de deployment de uma WSN é a forma como os nós são distribuídos pela rede. Em zonas longínquas, ou de difícil acesso, os nós são colocados de forma aleatória, por exemplo, caiem de um avião. Nos locais de fácil acesso, podem ser colocados no local exacto. Portanto, este projecto de Mestrado de Engenharia Informática apresenta duas contribuições principais: (i) um estudo de propagação no Museu da Baleia; e; (ii) o WISE-MANager, um sistema de gestão de sessões colaborativas. De forma a definir qual o deployment da rede a instalar no Museu da Baleia, será apresentado um estudo de propagação do sinal empírico, que determinou a melhor posição física dos nós, para que a rede tenha uma boa performance. O sistema WISE-MANager permite a criação, monitorização e gestão de sessões colaborativas numa WSN baseada no protocolo Zigbee. O intuito da utilização de sessões colaborativas é proporcionar uma melhor interacção entre o utilizador e a WSN, visto que o utilizador pode personalizar o tipo de monitorização a efectuar (por nó sensor, por fenómeno ou por intervalo de tempo), e interrogar à rede e aos seus componentes, aumentando assim a flexibilidade da WSN.A gestão de redes de sensores sem fios é muito importante para que o utilizador tenha controlo sobre a mesma ao saber quais os dispositivos da rede, assim como o seu nível de energia. Por tanto, através de WISE-MANager, os gestores do Museu serão capazes de analisar a rede, detectar eventuais problemas e obter parâmetros específicos.

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The evolution of wireless communication systems leads to Dynamic Spectrum Allocation for Cognitive Radio, which requires reliable spectrum sensing techniques. Among the spectrum sensing methods proposed in the literature, those that exploit cyclostationary characteristics of radio signals are particularly suitable for communication environments with low signal-to-noise ratios, or with non-stationary noise. However, such methods have high computational complexity that directly raises the power consumption of devices which often have very stringent low-power requirements. We propose a strategy for cyclostationary spectrum sensing with reduced energy consumption. This strategy is based on the principle that p processors working at slower frequencies consume less power than a single processor for the same execution time. We devise a strict relation between the energy savings and common parallel system metrics. The results of simulations show that our strategy promises very significant savings in actual devices.

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The Wireless Sensor Networks (WSN) methods applied to the lifting of oil present as an area with growing demand technical and scientific in view of the optimizations that can be carried forward with existing processes. This dissertation has as main objective to present the development of embedded systems dedicated to a wireless sensor network based on IEEE 802.15.4, which applies the ZigBee protocol, between sensors, actuators and the PLC (Programmable Logic Controller), aiming to solve the present problems in the deployment and maintenance of the physical communication of current elevation oil units based on the method Plunger-Lift. Embedded systems developed for this application will be responsible for acquiring information from sensors and control actuators of the devices present at the well, and also, using the Modbus protocol to make this network becomes transparent to the PLC responsible for controlling the production and delivery information for supervisory SISAL

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The development of wireless sensor networks for control and monitoring functions has created a vibrant investigation scenario, covering since communication aspects to issues related with energy efficiency. When source sensors are endowed with cameras for visual monitoring, a new scope of challenges is raised, as transmission and monitoring requirements are considerably changed. Particularly, visual sensors collect data following a directional sensing model, altering the meaning of concepts as vicinity and redundancy but allowing the differentiation of source nodes by their sensing relevancies for the application. In such context, we propose the combined use of two differentiation strategies as a novel QoS parameter, exploring the sensing relevancies of source nodes and DWT image coding. This innovative approach supports a new scope of optimizations to improve the performance of visual sensor networks at the cost of a small reduction on the overall monitoring quality of the application. Besides definition of a new concept of relevance and the proposition of mechanisms to support its practical exploitation, we propose five different optimizations in the way images are transmitted in wireless visual sensor networks, aiming at energy saving, transmission with low delay and error recovery. Putting all these together, the proposed innovative differentiation strategies and the related optimizations open a relevant research trend, where the application monitoring requirements are used to guide a more efficient operation of sensor networks

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This dissertation aims to develop a software applied to a communication system for a wireless sensor network (WSN) for tracking analog and digital variables and control valve of the gas flow in artificial oil s elevation units, Plunger Lift type. The reason for this implementation is due to the fact that, in the studied plant configuration, the sensors communicate with the PLC (Programmable and Logic Controller) by the cables and pipelines, making any changes in that system, such as changing the layout of it, as well as inconveniences that arise from the nature of the site, such as the vicinity s animals presence that tend to destroy the cables for interconnection of sensors to the PLC. For software development, was used communication polling method via SMAC protocol (Simple Medium Access ControlIEEE 802.15.4 standard) in the CodeWarrior environment to which generated a firmware, loaded into the WSN s transceivers, present in the kit MC13193-EVK, (all items described above are owners of Freescale Semiconductors Inc.). The network monitoring and parameterization used in its application, was developed in LabVIEW software from National Instruments. The results were obtained through the observation of the network s behavior of sensors proposal, focusing on aspects such as: indoor and outdoor quantity of packages received and lost, general aspects of reliability in data transmission, coexistence with other types of wireless networks and power consumption under different operating conditions. The results were considered satisfactory, which showed the software efficiency in this communication system

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This work presents an wideband ring VCO for cognitive radio five-port based receivers. A three-stage differential topology using transmission gate was adopted in order to maintain wide and linear tuning range and a low phase-noise. Monte-Carlo analysis were performed for phase-shift response of individual stages, which is an important figure of merit in five-port works. It was observed a fairly linear correlation between control voltage and oscillation frequency in the range between 200 MHz and 1800 MHz. The VCO was preliminarily designed for IBM 130nm CMOS technology

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Modern wireless systems employ adaptive techniques to provide high throughput while observing desired coverage, Quality of Service (QoS) and capacity. An alternative to further enhance data rate is to apply cognitive radio concepts, where a system is able to exploit unused spectrum on existing licensed bands by sensing the spectrum and opportunistically access unused portions. Techniques like Automatic Modulation Classification (AMC) could help or be vital for such scenarios. Usually, AMC implementations rely on some form of signal pre-processing, which may introduce a high computational cost or make assumptions about the received signal which may not hold (e.g. Gaussianity of noise). This work proposes a new method to perform AMC which uses a similarity measure from the Information Theoretic Learning (ITL) framework, known as correntropy coefficient. It is capable of extracting similarity measurements over a pair of random processes using higher order statistics, yielding in better similarity estimations than by using e.g. correlation coefficient. Experiments carried out by means of computer simulation show that the technique proposed in this paper presents a high rate success in classification of digital modulation, even in the presence of additive white gaussian noise (AWGN)

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The increasing demand for high performance wireless communication systems has shown the inefficiency of the current model of fixed allocation of the radio spectrum. In this context, cognitive radio appears as a more efficient alternative, by providing opportunistic spectrum access, with the maximum bandwidth possible. To ensure these requirements, it is necessary that the transmitter identify opportunities for transmission and the receiver recognizes the parameters defined for the communication signal. The techniques that use cyclostationary analysis can be applied to problems in either spectrum sensing and modulation classification, even in low signal-to-noise ratio (SNR) environments. However, despite the robustness, one of the main disadvantages of cyclostationarity is the high computational cost for calculating its functions. This work proposes efficient architectures for obtaining cyclostationary features to be employed in either spectrum sensing and automatic modulation classification (AMC). In the context of spectrum sensing, a parallelized algorithm for extracting cyclostationary features of communication signals is presented. The performance of this features extractor parallelization is evaluated by speedup and parallel eficiency metrics. The architecture for spectrum sensing is analyzed for several configuration of false alarm probability, SNR levels and observation time for BPSK and QPSK modulations. In the context of AMC, the reduced alpha-profile is proposed as as a cyclostationary signature calculated for a reduced cyclic frequencies set. This signature is validated by a modulation classification architecture based on pattern matching. The architecture for AMC is investigated for correct classification rates of AM, BPSK, QPSK, MSK and FSK modulations, considering several scenarios of observation length and SNR levels. The numerical results of performance obtained in this work show the eficiency of the proposed architectures

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Wireless sensor networks are reality nowadays. The growing necessity of connectivity between existing industrial plant equipments pushes the research and development of several technologies. The IEEE 802.15.4 LR-WPAN comes as a low-cost and powersaving viable solution, which are important concerns while making decisions on remote sensoring projects. This study intends to propose a wireless communication system which makes possible the monitoring of analogic and/or digital variables (i. e., the pressure studied) involved on the artificial methods for oil and gas lifting. The main issues are: To develop a software based on SMAC Standard in order to create a wireless network to monitoring analogic and/or digital variables; To evaluate the communication link based on the number of lost packets tested in different environments (indoor and outdoor) and To propose an instrumentation system consisting of wireless devices

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Research on Wireless Sensor Networks (WSN) has evolved, with potential applications in several domains. However, the building of WSN applications is hampered by the need of programming in low-level abstractions provided by sensor OS and of specific knowledge about each application domain and each sensor platform. We propose a MDA approach do develop WSN applications. This approach allows domain experts to directly contribute in the developing of applications without needing low level knowledge on WSN platforms and, at the same time, it allows network experts to program WSN nodes to met application requirements without specific knowledge on the application domain. Our approach also promotes the reuse of the developed software artifacts, allowing an application model to be reused across different sensor platforms and a platform model to be reused for different applications

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On the last years, several middleware platforms for Wireless Sensor Networks (WSN) were proposed. Most of these platforms does not consider issues of how integrate components from generic middleware architectures. Many requirements need to be considered in a middleware design for WSN and the design, in this case, it is possibility to modify the source code of the middleware without changing the external behavior of the middleware. Thus, it is desired that there is a middleware generic architecture that is able to offer an optimal configuration according to the requirements of the application. The adoption of middleware based in component model consists of a promising approach because it allows a better abstraction, low coupling, modularization and management features built-in middleware. Another problem present in current middleware consists of treatment of interoperability with external networks to sensor networks, such as Web. Most current middleware lacks the functionality to access the data provided by the WSN via the World Wide Web in order to treat these data as Web resources, and they can be accessed through protocols already adopted the World Wide Web. Thus, this work presents the Midgard, a component-based middleware specifically designed for WSNs, which adopts the architectural patterns microkernel and REST. The microkernel architectural complements the component model, since microkernel can be understood as a component that encapsulates the core system and it is responsible for initializing the core services only when needed, as well as remove them when are no more needed. Already REST defines a standardized way of communication between different applications based on standards adopted by the Web and enables him to treat WSN data as web resources, allowing them to be accessed through protocol already adopted in the World Wide Web. The main goals of Midgard are: (i) to provide easy Web access to data generated by WSN, exposing such data as Web resources, following the principles of Web of Things paradigm and (ii) to provide WSN application developer with capabilities to instantiate only specific services required by the application, thus generating a customized middleware and saving node resources. The Midgard allows use the WSN as Web resources and still provide a cohesive and weakly coupled software architecture, addressing interoperability and customization. In addition, Midgard provides two services needed for most WSN applications: (i) configuration and (ii) inspection and adaptation services. New services can be implemented by others and easily incorporated into the middleware, because of its flexible and extensible architecture. According to the assessment, the Midgard provides interoperability between the WSN and external networks, such as web, as well as between different applications within a single WSN. In addition, we assessed the memory consumption, the application image size, the size of messages exchanged in the network, and response time, overhead and scalability on Midgard. During the evaluation, the Midgard proved satisfies their goals and shown to be scalable without consuming resources prohibitively

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This paper presents a NCAP embedded on DE2 kit with Nios II processor and uClinux to development of a network gateway with two interfaces, wireless (ZigBee) and wired (RS232) based on IEEE 1451. Both the communications, wireless and wired, were developed to be point-to-point and working with the same protocols, based on IEEE 1451.0-2007. The tests were made using a microcomputer, which through of browser was possible access the web page stored in the DE2 kit and send commands of control and monitoring to both TIMs (WTIM and STIM). The system describes a different form of development of the NCAP node to be applied in different environments with wired or wireless in the same node. © 2011 IEEE.

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In this paper was proposed the development of an heterogeneous system using the microcontroller (AT90CANI28) where the protocol model CAN and the standard IEEE 802.15.4 are connected. This module is able to manage and monitor sensors and actuators using CAN and, through the wireless standard 802.15.4, communicate with the other network modules. © 2011 IEEE.