RESUMOAtualmente, usuários de redes 4G, baseadas no protocolo IP, podem usufruir de diversas oportunidades de conectividade sem fio em um cenário heterogêneo formado por diversas tecnologias de acesso. Entretanto, para que a mobilidade e percepção dos serviços sejam transparentes e sem interrupções entre estas redes é necessário que mecanismos de seleção de rede garantam a continuidade de serviços durante o handover vertical. Este artigo propõe um mecanismo de seleção de rede de acesso sem fio baseado em qualidade de experiência (Quality of Experience -QoE) e na carga de tráfego das redes candidatas. O cenário avaliado é composto por redes WiMAX e Wi-Fi. O mecanismo proposto considera o uso do padrão IEEE 802.21 -(Media Independent Handover -MIH) para auxiliar no processo de handover. Resultados de simulação no ns-2 utilizando tráfego de vídeo demonstram a eficácia da proposta com o ganho de 12,5% na qualidade do vídeo. ABSTRACTCurrently, users of 4G networks, based on IP protocol, may take advantage of several opportunities for wireless connectivity in a heterogeneous scenario consisting of a range of access technologies. However, to make mobility and service perception transparent and uninterrupted between these networks it is necessary that network selection mechanisms ensure continuity of services during the vertical handover. This article proposes a selection mechanism of a wireless access network based on quality of experience (Quality of Experience -QoE) and on the traffic load of candidate networks. The scenario evaluated consists of WiMAX and Wi-Fi networks. The proposed mechanism envisages the use of IEEE 802.21 -(Media Independent Handover -MIH) to assist in the handover process. Simulation results in ns-2 using video traffic demonstrate the efficacy of the proposal, with 12,5% gain in video quality.
With the multimedia traffic and of the heterogeneous networks also referred as (4G) grows the need to maintain the video quality perception by the final user. This work presents a mechanism to select the ideal network based on Quality of Experience (QoE) to a better video quality in vertical handover. The simulation results presents that the minimum PSNR value of the selected networks was 29dB, which shows the selection of efficient network.
This article describes the implementation of an laboratory of dynamic routing for the purpose of helping Computer Network teachers to have, in classes, an environment closer to reallity for students experimentals and demonstrations. The used tools were FIBRE testbed infrastructure -an education project composed by 15 test places where complex scenarios can be developed in an environment close to production ones -and the Border Gateway Protocol (BGP) -the most used protocol in different Autonomous Systems connection.Resumo. Este artigo visa descrever a implementação de um laboratório educacional de roteamento dinâmico com finalidade de auxiliar os professores das disciplinas de Redes de Computadores a ter um ambiente mais próximo da realidade para demonstração e operação pelos alunos. As ferramentas utilizadas foram a Infraestrutura do testbed FIBRE -uma estrutura educacional composta por 15 locais de testes onde cenários mais complexos podem ser desenvolvidos em ambiente similar ao de produção -e o protocolo de roteamento BGPprotocolo mais utilizado para conexões entre Sistemas Autônomos distintos.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.
customersupport@researchsolutions.com
10624 S. Eastern Ave., Ste. A-614
Henderson, NV 89052, USA
This site is protected by reCAPTCHA and the Google Privacy Policy and Terms of Service apply.
Copyright © 2024 scite LLC. All rights reserved.
Made with 💙 for researchers
Part of the Research Solutions Family.