633 resultados para Tcp


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Recent technological developments are pulling fieldbus networks to support a new wide class of applications, such as industrial multimedia applications. These applications are usually supported by the widely used TCP/IP stack. It is thus essential to provide support to TCP/IP based applications, in fieldbus networks. This paper presents an effort that is being carried out to integrate the TCP/IP and PROFIBUS stacks, in order to support industrial multimedia applications, whilst guarantying the timing requirements of control-related traffic.

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In IP networks, most of packets, that have been dropped, are recovered after the expiration of retransmission timeouts. These can result in unnecessary retransmissions and needless reduction of congestion window. An inappropriate retransmission timeout has a huge impact on TCP performance. In this paper we have proved that CSMA/CA mechanism can cause TCP retransmissions due to CSMA/CA effects. For this we have observed three wireless connections that use CSMA/CA: with good link quality, poor link quality and in presence of cross traffic. The measurements have been performed using real devices. Through tracking of each transmitted packet it is possible to analyze the relation between one-way delay and packet loss probability and the cumulative distribution of distances between peaks of OWDs. The distribution of OWDs and the distances between peaks of OWDs are the most important parameters of tuning TCP retransmission timeout on CSMA/CA networks. A new perspective through investigating the dynamical relation between one-way delay and packet loss ratio depending on the link quality to enhance the TCP performance has been provided.

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TCP flows from applications such as the web or ftp are well supported by a Guaranteed Minimum Throughput Service (GMTS), which provides a minimum network throughput to the flow and, if possible, an extra throughput. We propose a scheme for a GMTS using Admission Control (AC) that is able to provide different minimum throughput to different users and that is suitable for "standard" TCP flows. Moreover, we consider a multidomain scenario where the scheme is used in one of the domains, and we propose some mechanisms for the interconnection with neighbor domains. The whole scheme uses a small set of packet classes in a core-stateless network where each class has a different discarding priority in queues assigned to it. The AC method involves only edge nodes and uses a special probing packet flow (marked as the highest discarding priority class) that is sent continuously from ingress to egress through a path. The available throughput in the path is obtained at the egress using measurements of flow aggregates, and then it is sent back to the ingress. At the ingress each flow is detected using an implicit way and then it is admission controlled. If it is accepted, it receives the GMTS and its packets are marked as the lowest discarding priority classes; otherwise, it receives a best-effort service. The scheme is evaluated through simulation in a simple "bottleneck" topology using different traffic loads consisting of "standard" TCP flows that carry files of varying sizes

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Este proyecto pretende ofrecer un sistema para almacenar, localizar y recuperar objetos de aprendizaje (LO) desde la red Internet.

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We report that caveolin-1, one of the major structural protein of caveolae, interacts with TCP-1, a hetero-oligomeric chaperone complex present in all eukaryotic cells that contributes mainly to the folding of actin and tubulin. The caveolin-TCP-1 interaction entails the first 32 amino acids of the N-terminal segment of caveolin. Our data show that caveolin-1 expression is needed for the induction of TCP-1 actin folding function in response to insulin stimulation. Caveolin-1 phosphorylation at tyrosine residue 14 induces the dissociation of caveolin-1 from TCP-1 and activates actin folding. We show that the mechanism by which caveolin-1 modulates TCP-1 activity is indirect and involves the cytoskeleton linker filamin. Filamin is known to bind caveolin-1 and to function as a negative regulator of insulin-mediated signaling. Our data support the notion that the caveolin-filamin interaction contributes to restore insulin-mediated phosphorylation of caveolin, thus allowing the release of active TCP-1.

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Prosessitietoliikenneverkko toimii mm. energian tuotannon, siirron ja jakelun käytönvalvontajärjestelmien tiedonsiirron alustana. Tietoliikenneverkkojen rooli osana yrityksen operatiivisia prosesseja kasvaa järjestelmäuusintojen myötä ja järjestelmien tehokas hyödyntäminen vaatii luotettavat sekä nopeat tietoverkot. Uusittavien järjestelmien tietoliikenneratkaisut perustuvat pääsääntöisesti Ethernetpohjaiseen TCP/IP-verkkotekniikkaan. Tällä hetkellä prosessijärjestelmien tiedonsiirtoyhteydet kenttälaitteiden ja valvomojärjestelmien välillä on pääsääntöisesti toteutettu PCM-siirtojärjestelmällä tai kiinteän yhteyden modeemeilla. Käytössä oleva PCM-tekniikka on elinkaarensa loppupuolella ja tiedonsiirtonopeudet sekä liityntärajapinnat eivät täytä nykyaikaisten prosessijärjestelmien tiedonsiirto¬vaatimuksia. Työssä käytiin läpikeskeisimmät Ethernet-tekniikkaan ja TCP/IP-protokollaperheeseen liittyvät standardit ja verkon aktiivilaitteet. Vaatimusmäärittelyissä selvitettiin Helsingin Energian eri liiketoimintayksiköiden tarpeita sekä energia-alan lainsäädännön vaatimuksia prosessitietoliikenneverkolle. Tarpeiden ja vaatimusten pohjalta verrattiin kolmea eri vaihtoehtoista verkkotekniikkaa: kytkintekniikkaa, reititintekniikkaa ja MPLS-tekniikkaa. Vertailun perusteella valitulla verkkotekniikalla tehtiin suunnitelma avoimesta, valmistajasta riippumattomasta standardeihin perustuvasta yritystason Ethernet-pohjaisesta TCP/IP prosessiverkkoratkaisusta. Johtopäätöksissä pohditaan valitun ratkaisun käytettävyyttä, tietoturvaa sekä toimenpiteitä niiden kehittämiseksi.

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TCP flows from applications such as the web or ftp are well supported by a Guaranteed Minimum Throughput Service (GMTS), which provides a minimum network throughput to the flow and, if possible, an extra throughput. We propose a scheme for a GMTS using Admission Control (AC) that is able to provide different minimum throughput to different users and that is suitable for "standard" TCP flows. Moreover, we consider a multidomain scenario where the scheme is used in one of the domains, and we propose some mechanisms for the interconnection with neighbor domains. The whole scheme uses a small set of packet classes in a core-stateless network where each class has a different discarding priority in queues assigned to it. The AC method involves only edge nodes and uses a special probing packet flow (marked as the highest discarding priority class) that is sent continuously from ingress to egress through a path. The available throughput in the path is obtained at the egress using measurements of flow aggregates, and then it is sent back to the ingress. At the ingress each flow is detected using an implicit way and then it is admission controlled. If it is accepted, it receives the GMTS and its packets are marked as the lowest discarding priority classes; otherwise, it receives a best-effort service. The scheme is evaluated through simulation in a simple "bottleneck" topology using different traffic loads consisting of "standard" TCP flows that carry files of varying sizes

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En aquesta tesi proposem dos esquemes de xarxa amb control d'admissió per al trànsit elàstic TCP amb mecanismes senzills. Ambdós esquemes són capaços de proporcionar throughputs diferents i aïllament entre fluxos, on un "flux" es defineix com una seqüència de paquets relacionats dins d'una connexió TCP. Quant a l'arquitectura, ambdós fan servir classes de paquets amb diferents prioritats de descart, i un control d'admissió implícit, edge-to-edge i basat en mesures. En el primer esquema, les mesures són per flux, mentre que en el segon, les mesures són per agregat. El primer esquema aconsegueix un bon rendiment fent servir una modificació especial de les fonts TCP, mentre que el segon aconsegueix un bon rendiment amb fonts TCP estàndard. Ambdós esquemes han estat avaluats satisfactòriament a través de simulació en diferents topologies de xarxa i càrregues de trànsit.

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Sterners Specialfabrik AB tillverkar bland annat mynt- och biljettautomater. För att underlätta felsökning, underhåll, avläsning av statistik med mera på en automat är det lämpligt att detta utförs på en PC över Internet. Det innebär att automaten inte behöver besökas då dessa uppgifter skall utföras. Examensarbetet går ut på att få en PIC mikrokontroller att kommunicera med en användare vid en PC över internet. För detta krävs att en TCP/IP stack implementeras på PICmikrokontrollern. Arbetet ledde till en fungerande demoapplikation som klarar av att kommunicera över TCP/IP. Demoapplikationen innehåller diverse olika funktioner för att demonstrera hur en automat skulle kunna styras och övervakas.

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Baseado na tecnologia de interligação de redes, este trabalho apresenta uma proposta de conexão de dois sistemas com processamento próprio com o intuito de troca de informações, utilizando a pilha de protocolos TCP/IP. Este sistema será empregado em ambientes de controle industrial, permitindo o envio de informações do servidor de dados para o cliente. Os dados são constituídos de leituras feitas em equipamentos de campo, apresentando ao cliente remoto, medições dos mais diversos tipos. Por outro lado, o cliente poderá enviar comandos aos equipamentos de campo visando o telecontrole. Como ponto de partida para a elaboração do trabalho prático, foi utilizado o ambiente de controle do sistema de potência da companhia energética do estado do Rio Grande do Sul (CEEE). Um microcomputador com um browser acessa, através de uma rede local, os equipamentos controlados, que poderão ser qualquer tipo de equipamento de campo empregado em subestações de energia elétrica, como disjuntores, transformadores ou chaves. Para permitir o acesso remoto de tais equipamentos, foi elaborado um servidor de dados constituído de um controlador de rede do tipo Ethernet e um microcontrolador de aplicação específica que se encarrega do processamento da pilha de protocolos. O controlador Ethernet utilizado é um circuito integrado dedicado comercial, que executa o tratamento dos sinais de nível físico e de enlace de dados conforme o padrão IEEE 802.2. O processador TCP/IP, enfoque principal deste trabalho, foi elaborado através da linguagem de programação C, e a seguir traduzido para o Java, que é o ponto de partida para a ferramenta SASHIMI, de geração da descrição em VHDL do microcontrolador de aplicação específica utilizado. O processador TCP/IP encarrega-se da aquisição de dados do equipamento de campo, do processamento da pilha de protocolos TCP/IP, e do gerenciamento do controlador Ethernet. A partir desta descrição VHDL, foi sintetizado o hardware do microcontrolador em um FPGA, que juntamente com o software aplicativo, também fornecido pela ferramenta utilizada, desempenha o papel de processador TCP/IP para o sistema proposto. Neste ambiente, então, o cliente localizado no centro de operação, acessa através de um browser o equipamento de campo, visando obter suas medições, bem como enviar comandos, destacando o aspecto bidirecional para a troca de dados e a facilidade de conexão de dois sistemas heterogêneos. Este sistema pretende apresentar baixo custo de aquisição e de instalação, facilidade de interconexão local ou remota e transparência ao usuário final.