4 resultados para Smart meter, Microcontrollore, Wireless, Risparmio energetico, Domotica
em Universidade Federal do Pará
Resumo:
Nos últimos de 20 anos, economia e tecnologia evoluíram em muitas direções e em novas áreas. Muitas dessas evoluções criaram oportunidades que estão sendo consideradas na concepção de futuras redes de comunicação. Estas novas possibilidades estão relacionadas à, sobretudo, utilização da internet para o acesso à serviços e englobam: mobilidade; tecnologias de baixo custo; crescimento e empregos (pela Internet participa-se de cada processo de negócios e produção); serviços; educação (oportunidade para as pessoas crescerem e se desenvolverem); entretenimento (mundos virtuais para o lazer, compras e jogos); volume de tráfego maior (texto, voz, imagens, vídeo). Como uma consequência, a Internet se tornou, semelhante a eletricidade ou água, um bem público. Com quase 2 bilhões de usuários (aproximadamente 28% da população mundial), a Internet está se tornando, cada vez mais, uma infraestrutura difusivo oferecendo em qualquer lugar, a qualquer momento conectividade e serviços. Este mundo da Internet atual é o resultado de sucessivas alterações que aconteceram desde o seu surgimento e que tornaram a infraestrutura de comunicação de importância crítica. Em termos de tecnologias de comunicação, os sistemas móveis sem fio têm um lugar especial devido a sua difusão excepcional na última década e que, junto com a Internet, tem permitido o aparecimento de dispositivos inteligentes, a introdução de novos serviços inovadores e exigindo, para tanto, um ambiente que suporte a inovação e criatividade. Porém, os vários padrões de redes para suporte, principalmente, ao acesso de última milha são desvantagens na perspectiva do usuário, pois este tem de se habilitar nessas redes (contratar os serviços) e, não raro, ter terminais específicos para o acesso. A idéia de um padrão único para estas redes não obteve resultados satisfatórios e uma solução aponta para a integração dessas redes para prover acesso único e transparente ao usuário. Esse trabalho, portanto, apresenta uma solução embarcada para integrar padrões de comunicações sem fio heterogênea do tipo IEEE 802.15.4 ZigBee, IEEE 802.20 GSM/GPRS e IEEE 802.2 Wi-Fi. Essa heterogeneidade de tecnologias sem fio permite a um usuário em movimento, através de seu terminal local ou remoto, acessar aplicativos e serviços de forma transparente. A avaliação de desempenho da solução foi realizada utilizando-se dois tipos de serviços: domótica e telemedicina. Os resultados indicaram que a solução proposta consegue integrar e prover os serviços com segurança e confiabilidade.
Resumo:
The proliferation of multimedia content and the demand for new audio or video services have fostered the development of a new era based on multimedia information, which allowed the evolution of Wireless Multimedia Sensor Networks (WMSNs) and also Flying Ad-Hoc Networks (FANETs). In this way, live multimedia services require realtime video transmissions with a low frame loss rate, tolerable end-to-end delay, and jitter to support video dissemination with Quality of Experience (QoE) support. Hence, a key principle in a QoE-aware approach is the transmission of high priority frames (protect them) with a minimum packet loss ratio, as well as network overhead. Moreover, multimedia content must be transmitted from a given source to the destination via intermediate nodes with high reliability in a large scale scenario. The routing service must cope with dynamic topologies caused by node failure or mobility, as well as wireless channel changes, in order to continue to operate despite dynamic topologies during multimedia transmission. Finally, understanding user satisfaction on watching a video sequence is becoming a key requirement for delivery of multimedia content with QoE support. With this goal in mind, solutions involving multimedia transmissions must take into account the video characteristics to improve video quality delivery. The main research contributions of this thesis are driven by the research question how to provide multimedia distribution with high energy-efficiency, reliability, robustness, scalability, and QoE support over wireless ad hoc networks. The thesis addresses several problem domains with contributions on different layers of the communication stack. At the application layer, we introduce a QoE-aware packet redundancy mechanism to reduce the impact of the unreliable and lossy nature of wireless environment to disseminate live multimedia content. At the network layer, we introduce two routing protocols, namely video-aware Multi-hop and multi-path hierarchical routing protocol for Efficient VIdeo transmission for static WMSN scenarios (MEVI), and cross-layer link quality and geographical-aware beaconless OR protocol for multimedia FANET scenarios (XLinGO). Both protocols enable multimedia dissemination with energy-efficiency, reliability and QoE support. This is achieved by combining multiple cross-layer metrics for routing decision in order to establish reliable routes.
Resumo:
In Smart Grids, a variety of new applications are available to users of the electrical system (from consumers to the electric system operators and market operators). Some applications such as the SCADA systems, which control generators or substations, have consequences, for example, with a communication delay. The result of a failure to deliver a control message due to noncompliance of the time constraint can be catastrophic. On the other hand, applications such as smart metering of consumption have fewer restrictions. Since each type of application has different quality of service requirements (importance, delay, and amount of data to transmit) to transmit its messages, the policy to control and share the resources of the data communication network must consider them. In this paper Markov Decision Process Theory is employed to determine optimal policies to explore as much as possible the availability of throughput in order to transmit all kinds of messages, considering the quality of service requirements defined to each kind of message. First a non-preemptive model is formulated and after that a preemptive model is derived. Numerical results are used to compare FIFO, non-preemptive and preemptive policies.
Resumo:
The use of wireless local area networks, called WLANs, as well as the proliferation of the use of multimedia applications have grown rapidly in recent years. Some factors affect the quality of service (QoS) received by the user and interference is one of them. This work presents strategies for planning and performance evaluation through an empirical study of the QoS parameters of a voice over Internet Protocol (VoIP) application in an interference network, as well as the relevance in the design of wireless networks to determine the coverage area of an access point, taking into account several parameters such as power, jitter, packet loss, delay, and PMOS. Another strategy is based on a hybrid approach that considers measuring and Bayesian inference applied to wireless networks, taking into consideration QoS parameters. The models take into account a cross layer vision of networks, correlating aspects of the physical environment, on the signal propagation (power or distance) with aspects of VoIP applications (e.g., jitter and packet loss). Case studies were carried out for two indoor environments and two outdoor environments, one of them displaying main characteristics of the Amazon region (e.g., densely arboreous environments). This last test bed was carried out in a real system because the Government of the State of Pará has a digital inclusion program called NAVEGAPARÁ.