998 resultados para network interfaces
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The fact that most of new Personal Data Assistant (PDA) devices and smartphones have the ability to communicate via different wireless technologies has made several new applications possible. While traditional network model is based on the idea of static hosts, mobile devices can create decentralized, self-organizing ad-hoc networks and act as peers in the network. This kind of adapting network is suitable for mobile devices which can freely join and leave the networks. Because several different wireless communication technologies are involved, flexible changing of the networking technology must be handled in order to enable seamless communication between these networks. This thesis presents a transparent network interface to mobile Peer-to-Peer environment which is named as Virtual PeerHood. Different wireless technologies and aspects of providing a seamless connectivity between these technologies are explored. The result is a middleware platform for mobile Peer-to-Peer environment, capable of handling several networking technologies.
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The emergence of smartphones with Wireless LAN (WiFi) network interfaces brought new challenges to application developers. The expected increase of users connectivity will impact their expectations for example on the performance of background applications. Unfortunately, the number and breadth of the studies on the new patterns of user mobility and connectivity that result from the emergence of smartphones is still insufficient to support this claim. This paper contributes with preliminary results on a large scale study of the usage pattern of about 49000 devices and 31000 users who accessed at least one access point of the eduroam WiFi network on the campuses of the Lisbon Polytechnic Institute. Results confirm that the increasing number of smartphones resulted in significant changes to the pattern of use, with impact on the amount of traffic and users connection time.
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Dissertação para obtenção do Grau de Doutor em Engenharia Electrotécnica e de Computadores Especialidade: Robótica e Manufactura Integrada
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Multimedia-sanomanvälityspalvelu (MMS) on matkapuhelinten väliseen viestintään kehitetty palvelu, joka mahdollistaa yhteyden Internet maailmaan. Multimedia-sanomanvälityspalvelua voidaan käyttää luomaan yhteys matkapuhelimen käyttäjän ja ulkoisen sovelluspalvelimen välille. MMS voidaan nähdä sovelluksena, joka yhdistää multimediaviestin luonnin, käsittelyn sekä toimituksen monelle eri sisältö tyypille. Multimedia-viestikeskus (MMSC) on uusi verkkoelementti, joka on vastuussa multimediaviestien varastoinnista ja toimituksesta. Multimedia-viestikeskuksella on kolme loogista elementtiä, jotka ovat välityspalvelin, sovellusrajapinnat ja matkapuhelinverkkorajapinta. Operaattorit sekä kolmannen osapuolen sovelluskehittäjät voivat kehittää lisäarvopalveluita multimedia-sanomanvälityspalvelulle hyödyntämällä sovellusrajapintoja. Sovellusrajapinnat perustuvat olemassa oleviin Internet protokolliin. Tämä diplomityö tutkii Multimedia-sanomanvälityspalvelun verkkoelementtien rajapintoja. Tulevaisuudessa on tarkoitus lisätä Multimedia-sanomanvälityspalvelun verkkoelementtejä sähköisen kaupankäynnin kehysarkkitehtuuriin, joka perustuu komponentteihin.
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Langattomien lähiverkkotekniikoiden yleistyessä langattomien verkkojen ja palveluiden kysyntä on kasvanut nopeasti. Varsinkin vuonna 1997 julkistettu IEEE:n 802.11b-standardi on mahdollistanut langattomien verkkotekniikoiden nopean kehityksen. Tässä työssä esitetään suunnitelma kahden verkon välisen rajapinnan rakenteesta ja to-teutuksesta. Rajapintaa kutsutaan yhdysliikennepisteeksi. Sen pääasiallisena tehtävänä on toimia solmupisteenä kaikelle verkkojen väliselle tietoliikenteelle ja hallinnoida niin sisäverkkoa käyttäjineen kuin ulkoverkon puolelle kytkettyjä operaattoreita. Yhdyslii-kennepisteen tehtävänä on tunnistaa sisäverkon käyttäjät, auktorisoida heidät yhteis-työssä operaattorien kanssa, huolehtia sisäverkon käyttäjien verkko-osoitteista ja toimia verkkoliikenteen välittäjänä. Yhdysliikennepiste kykenee reitittämään käyttäjän oikealle operaattorille ja huolehtii siitä, että käyttäjällä on pääsy palveluihin, joiden käyttämiseen tällä on valtuutus. Työssä määritellään yhdysliikennepisteen rajapinnat sekä siihen liitettäviä operaattoreita että sisäverkkoon tarjottavia peruspalveluita varten. Lisäksi määritellään yhdysliikenne-pisteen sisäiset rajapinnat. Yhdysliikennepiste ei rajoita käytettyä verkkotekniikkaa, mutta tässä työssä keskitytään IEEE 802.11b -standardin mukaisiin WLAN-verkkoihin. Yhden tai useamman operaattorin verkkoja on olemassa sekä langallisessa että langat-tomissa ympäristöissä. Näissä verkoissa jokainen Internet-operaattori huolehtii kuiten-kin vain omista asiakkaistaan. Sisäverkko on suljettu, siihen pääsevät liittymään vain operaattorin omat asiakkaat. Työn tuloksena syntynyt yhdysliikennepiste on ratkaisu, jonka avulla voidaan rakentaa monioperaattorialueverkko, joka on avoin kaikille sen käyttäjille.
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Matkapuhelinverkot kehittyvät jatkuvasti tarjoten asiakkailleen uusia palveluja ja nopeampia datayhteyksiä. Verkkojen eri protokollien testaamisessa käytetään apuna tietoliikenneanalysaattoreita, joiden avulla matkapuhelinverkkojen eri rajapinnoissa liikkuvaa informaatiota voidaan tutkia yksityiskohtaisesti. Tämän työn tarkoituksena oli suunnitella ja toteuttaa etämonitorointianalysaattorin testauksessa käytettävä testausohjelmisto ICONIX-prosessin avulla. Suunnitteluun katsottiin kuuluvan prosessiin mukaiset vaatimusmäärittelyn, analyysin ja alustavan suunnittelun sekä yksityiskohtaisen suunnittelun vaiheet. Toteutus muodostui vastaavasti ohjelmointityöstä ja yksikkötestauksesta. Työn tuloksena saatiin suunnittelun ja toteutuksen aikana syntyneet erilaiset kaaviot ja ohjelmakoodi. Lisäksi testausohjelmistoa käytettiin etämonitorointianalysaattorin toiminnallisuus- ja suorituskykytesteissä, joiden perusteella arvioitiin toteutetun testausohjelmiston toimivuutta. Testausohjelmiston todettiin sopivan etämonitorointianalysaattorin testaukseen, sillä niin toiminnallisuustestit kuin kuormitustestitkin saatiin suoritettua onnistuneesti toteutetun testausohjelmiston avulla. ICONIX-prosessin todettiin sopivan testausohjelmiston suunnitteluun, vaikka testausohjelmisto onkin toimintaperiaatteeltaan erilainen, kuin prosessia esittelevissä lähteissä esimerkkeinä käytetyt ohjelmistot. Eri suunnitteluvaiheisiin kului prosessiin tottumattomalta aikaa, mutta toisaalta laadittuja suunnitelmia ei tarvinnut enää toteutusvaiheen aikana muuttaa ja ohjelmointityö oli hyvin suoraviivaista.
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As technology geometries have shrunk to the deep submicron regime, the communication delay and power consumption of global interconnections in high performance Multi- Processor Systems-on-Chip (MPSoCs) are becoming a major bottleneck. The Network-on- Chip (NoC) architecture paradigm, based on a modular packet-switched mechanism, can address many of the on-chip communication issues such as performance limitations of long interconnects and integration of large number of Processing Elements (PEs) on a chip. The choice of routing protocol and NoC structure can have a significant impact on performance and power consumption in on-chip networks. In addition, building a high performance, area and energy efficient on-chip network for multicore architectures requires a novel on-chip router allowing a larger network to be integrated on a single die with reduced power consumption. On top of that, network interfaces are employed to decouple computation resources from communication resources, to provide the synchronization between them, and to achieve backward compatibility with existing IP cores. Three adaptive routing algorithms are presented as a part of this thesis. The first presented routing protocol is a congestion-aware adaptive routing algorithm for 2D mesh NoCs which does not support multicast (one-to-many) traffic while the other two protocols are adaptive routing models supporting both unicast (one-to-one) and multicast traffic. A streamlined on-chip router architecture is also presented for avoiding congested areas in 2D mesh NoCs via employing efficient input and output selection. The output selection utilizes an adaptive routing algorithm based on the congestion condition of neighboring routers while the input selection allows packets to be serviced from each input port according to its congestion level. Moreover, in order to increase memory parallelism and bring compatibility with existing IP cores in network-based multiprocessor architectures, adaptive network interface architectures are presented to use multiple SDRAMs which can be accessed simultaneously. In addition, a smart memory controller is integrated in the adaptive network interface to improve the memory utilization and reduce both memory and network latencies. Three Dimensional Integrated Circuits (3D ICs) have been emerging as a viable candidate to achieve better performance and package density as compared to traditional 2D ICs. In addition, combining the benefits of 3D IC and NoC schemes provides a significant performance gain for 3D architectures. In recent years, inter-layer communication across multiple stacked layers (vertical channel) has attracted a lot of interest. In this thesis, a novel adaptive pipeline bus structure is proposed for inter-layer communication to improve the performance by reducing the delay and complexity of traditional bus arbitration. In addition, two mesh-based topologies for 3D architectures are also introduced to mitigate the inter-layer footprint and power dissipation on each layer with a small performance penalty.
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Os Sistemas de Detecção e Prevenção de Intrusão (Intrusion Detection Systems – IDS e Intrusion Prevention Systems - IPS) são ferramentas bastante conhecidas e bem consagradas no mundo da segurança da informação. Porém, a falta de integração com os equipamentos de rede como switches e roteadores acaba limitando a atuação destas ferramentas e exige um bom dimensionamento de recursos de hardware como processamento, memória e interfaces de rede de alta velocidade, utilizados para implementá-las. Diante de diversas limitações deparadas por pesquisadores e administradores de redes, surgiu o conceito de Rede Definida por Software (Software Defined Network – SDN), que ao separar os planos de controle e de dados, permite adaptar o funcionamento da rede de acordo com as necessidades de cada um. Desta forma, devido à padronização e flexibilidade propostas pelas SDNs, e das limitações apresentadas dos IPSs, esta dissertação de mestrado propõe o IPSFlow, um framework que utiliza uma rede baseada na arquitetura SDN e o protocolo OpenFlow para a criação de um IPS com ampla cobertura e que permite bloquear um tráfego caracterizado pelos IDS(s) como malicioso no equipamento mais próximo da origem. Para validar o framework, experimentos no ambiente virtual Mininet foram realizados utilizando-se o Snort como IDS para analisar tráfego de varredura (scan) gerado pelo Nmap de um host ao outro. Os resultados coletados apresentam que o IPSFlow funcionou conforme planejado ao efetuar o bloqueio de 85% do tráfego de varredura.
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Today, many leading organizations are undertaking extensive research on a very broad range of new and evolving optical networking technologies. These efforts carry particular significance, especially in light of the “postbubble” dynamics of the optical networking market and have led to the investigation of various cost-efficient optical technologies. Today’s telecom carriers operate several independent optical domains based on diverse technologies, control solutions, standards, and protocols, making interdomain and intercarrier interworking extremely difficult. Standardized interworking across diverse multigranularity network interfaces, and interoperability across disparate vendor equipments and carrier domains are crucial to provisioning end-to-end services and achieving cost-efficient network operation. Needless to say, having an interoperable and standard control plane across multidomain optical networks can benefit carriers through the availability of a wide selection of network elements, platforms, and multiple vendor solutions resulting in faster deployment and reduced CAPEX and OPEX charges.
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The evolution of the Next Generation Networks, especially the wireless broadband access technologies such as Long Term Evolution (LTE) and Worldwide Interoperability for Microwave Access (WiMAX), have increased the number of "all-IP" networks across the world. The enhanced capabilities of these access networks has spearheaded the cloud computing paradigm, where the end-users aim at having the services accessible anytime and anywhere. The services availability is also related with the end-user device, where one of the major constraints is the battery lifetime. Therefore, it is necessary to assess and minimize the energy consumed by the end-user devices, given its significance for the user perceived quality of the cloud computing services. In this paper, an empirical methodology to measure network interfaces energy consumption is proposed. By employing this methodology, an experimental evaluation of energy consumption in three different cloud computing access scenarios (including WiMAX) were performed. The empirical results obtained show the impact of accurate network interface states management and application network level design in the energy consumption. Additionally, the achieved outcomes can be used in further software-based models to optimized energy consumption, and increase the Quality of Experience (QoE) perceived by the end-users.
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Wireless Mesh Networks (WMNs), based on commodity hardware, present a promising technology for a wide range of applications due to their self-configuring and self-healing capabilities, as well as their low equipment and deployment costs. One of the key challenges that WMN technology faces is the limited capacity and scalability due to co-channel interference, which is typical for multi-hop wireless networks. A simple and relatively low-cost approach to address this problem is the use of multiple wireless network interfaces (radios) per node. Operating the radios on distinct orthogonal channels permits effective use of the frequency spectrum, thereby, reducing interference and contention. In this paper, we evaluate the performance of the multi-radio Ad-hoc On-demand Distance Vector (AODV) routing protocol with a specific focus on hybrid WMNs. Our simulation results show that under high mobility and traffic load conditions, multi-radio AODV offers superior performance as compared to its single-radio counterpart. We believe that multi-radio AODV is a promising candidate for WMNs, which need to service a large number of mobile clients with low latency and high bandwidth requirements.
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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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Dynamically reconfigurable time-division multiplexing (TDM) dense wavelength division multiplexing (DWDM) long-reach passive optical networks (PONs) can support the reduction of nodes and network interfaces by enabling a fully meshed flat optical core. In this paper we demonstrate the flexibility of the TDM-DWDM PON architecture, which can enable the convergence of multiple service types on a single physical layer. Heterogeneous services and modulation formats, i.e. residential 10G PON channels, business 100G dedicated channel and wireless fronthaul, are demonstrated co-existing on the same long reach TDM-DWDM PON system, with up to 100km reach, 512 users and emulated system load of 40 channels, employing amplifier nodes with either erbium doped fiber amplifiers (EDFAs) or semiconductor optical amplifiers (SOAs). For the first time end-to-end software defined networking (SDN) management of the access and core network elements is also implemented and integrated with the PON physical layer in order to demonstrate two service use cases: a fast protection mechanism with end-to-end service restoration in the case of a primary link failure; and dynamic wavelength allocation (DWA) in response to an increased traffic demand.
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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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The number of large research networks and programmes engaging in knowledge production for development has grown over the past years. One of these programmes devoted to generating knowledge about and for development is National Centre of Competence in Research (NCCR) North–South, a cross-disciplinary, international development research network funded by the Swiss Agency for Development and Cooperation and the Swiss National Science Foundation. Producing relevant knowledge for development is a core goal of the programme and an important motivation for many of the participating researchers. Over the years, the researchers have made use of various spaces for exchange and instruments for co-production of knowledge by academic and non-academic development actors. In this article we explore the characteristics of co-producing and sharing knowledge in interfaces between development research, policy and NCCR North–South practice. We draw on empirical material of the NCCR North–South programme and its specific programme element of the Partnership Actions. Our goal is to make use of the concept of the interface to reflect critically about the pursued strategies and instruments applied in producing and sharing knowledge for development across boundaries.