594 research outputs found
Mobile Edge Computing
This is an open access book. It offers comprehensive, self-contained knowledge on Mobile Edge Computing (MEC), which is a very promising technology for achieving intelligence in the next-generation wireless communications and computing networks. The book starts with the basic concepts, key techniques and network architectures of MEC. Then, we present the wide applications of MEC, including edge caching, 6G networks, Internet of Vehicles, and UAVs. In the last part, we present new opportunities when MEC meets blockchain, Artificial Intelligence, and distributed machine learning (e.g., federated learning). We also identify the emerging applications of MEC in pandemic, industrial Internet of Things and disaster management. The book allows an easy cross-reference owing to the broad coverage on both the principle and applications of MEC. The book is written for people interested in communications and computer networks at all levels. The primary audience includes senior undergraduates, postgraduates, educators, scientists, researchers, developers, engineers, innovators and research strategists
On Content-centric Wireless Delivery Networks
The flux of social media and the convenience of mobile connectivity has
created a mobile data phenomenon that is expected to overwhelm the mobile
cellular networks in the foreseeable future. Despite the advent of 4G/LTE, the
growth rate of wireless data has far exceeded the capacity increase of the
mobile networks. A fundamentally new design paradigm is required to tackle the
ever-growing wireless data challenge.
In this article, we investigate the problem of massive content delivery over
wireless networks and present a systematic view on content-centric network
design and its underlying challenges. Towards this end, we first review some of
the recent advancements in Information Centric Networking (ICN) which provides
the basis on how media contents can be labeled, distributed, and placed across
the networks. We then formulate the content delivery task into a content rate
maximization problem over a share wireless channel, which, contrasting the
conventional wisdom that attempts to increase the bit-rate of a unicast system,
maximizes the content delivery capability with a fixed amount of wireless
resources. This conceptually simple change enables us to exploit the "content
diversity" and the "network diversity" by leveraging the abundant computation
sources (through application-layer encoding, pushing and caching, etc.) within
the existing wireless networks. A network architecture that enables wireless
network crowdsourcing for content delivery is then described, followed by an
exemplary campus wireless network that encompasses the above concepts.Comment: 20 pages, 7 figures,accepted by IEEE Wireless
Communications,Sept.201
Two Time-Scale Caching Placement and User Association in Dynamic Cellular Networks
With the rapid growth of data traffic in cellular networks, edge caching has become an emerging technology for traffic offloading. We investigate the caching placement and content delivery in cache-enabling cellular networks. To cope with the time-varying content popularity and user location in practical scenarios, we formulate a long-term joint dynamic optimization problem of caching placement and user association for minimizing the content delivery delay which considers both content transmission delay and content update delay. To solve this challenging problem, we decompose the optimization problem into two sub-problems, the user association sub-problem in a short time scale and the caching placement in a long time scale. Specifically, we propose a low complexity user association algorithm for a given caching placement in the short time scale. Then we develop a deep deterministic policy gradient based caching placement algorithm which involves the short time-scale user association decisions in the long time scale. Finally, we propose a joint user association and caching placement algorithm to obtain a sub-optimal solution for the proposed problem. We illustrate the convergence and performance of the proposed algorithm by simulation results. Simulation results show that compared with the benchmark algorithms, the proposed algorithm reduces the long-term content delivery delay in dynamic networks effectively
Distribuição de conteúdos over-the-top multimédia em redes sem fios
mestrado em Engenharia Eletrónica e TelecomunicaçõesHoje em dia a Internet é considerada um bem essencial devido ao facto de
haver uma constante necessidade de comunicar, mas também de aceder e
partilhar conteúdos. Com a crescente utilização da Internet, aliada ao aumento
da largura de banda fornecida pelos operadores de telecomunicações,
criaram-se assim excelentes condições para o aumento dos serviços multimédia
Over-The-Top (OTT), demonstrado pelo o sucesso apresentado
pelos os serviços Netflix e Youtube.
O serviço OTT engloba a entrega de vídeo e áudio através da Internet sem
um controlo direto dos operadores de telecomunicações, apresentando uma
proposta atractiva de baixo custo e lucrativa.
Embora a entrega OTT seja cativante, esta padece de algumas limitações.
Para que a proposta se mantenha em crescimento e com elevados padrões de
Qualidade-de-Experiência (QoE) para os consumidores, é necessário investir
na arquitetura da rede de distribuição de conteúdos, para que esta seja capaz
de se adaptar aos diversos tipos de conteúdo e obter um modelo otimizado
com um uso cauteloso dos recursos, tendo como objectivo fornecer serviços
OTT com uma boa qualidade para o utilizador, de uma forma eficiente e
escalável indo de encontro aos requisitos impostos pelas redes móveis atuais
e futuras.
Esta dissertação foca-se na distribuição de conteúdos em redes sem fios,
através de um modelo de cache distribuída entre os diferentes pontos de
acesso, aumentando assim o tamanho da cache e diminuindo o tráfego
necessário para os servidores ou caches da camada de agregação acima.
Assim, permite-se uma maior escalabilidade e aumento da largura de banda
disponível para os servidores de camada de agregação acima. Testou-se
o modelo de cache distribuída em três cenários: o consumidor está em
casa em que se considera que tem um acesso fixo, o consumidor tem um
comportamento móvel entre vários pontos de acesso na rua, e o consumidor
está dentro de um comboio em alta velocidade.
Testaram-se várias soluções como Redis2, Cachelot e Memcached para servir
de cache, bem como se avaliaram vários proxies para ir de encontro ás características necessárias. Mais ainda, na distribuição de conteúdos testaram-se
dois algoritmos, nomeadamente o Consistent e o Rendezvouz Hashing.
Ainda nesta dissertação utilizou-se uma proposta já existente baseada na
previsão de conteúdos (prefetching ), que consiste em colocar o conteúdo
nas caches antes de este ser requerido pelos consumidores.
No final, verificou-se que o modelo distribuído com a integração com prefecthing
melhorou a qualidade de experiência dos consumidores, bem como
reduziu a carga nos servidores de camada de agregação acima.Nowadays, the Internet is considered an essential good, due to the fact that
there is a need to communicate, but also to access and share information.
With the increasing use of the Internet, allied with the increased bandwidth
provided by telecommunication operators, it has created conditions for the
increase of Over-the-Top (OTT) Multimedia Services, demonstrated by the
huge success of Net
ix and Youtube.
The OTT service encompasses the delivery of video and audio through the
Internet without direct control of telecommunication operators, presenting
an attractive low-cost and pro table proposal.
Although the OTT delivery is captivating, it has some limitations. In order
to increase the number of clients and keep the high Quality of Experience
(QoE) standards, an enhanced architecture for content distribution network
is needed. Thus, the enhanced architecture needs to provide a good quality
for the user, in an e cient and scalable way, supporting the requirements
imposed by future mobile networks.
This dissertation aims to approach the content distribution in wireless networks,
through a distributed cache model among the several access points,
thus increasing the cache size and decreasing the load on the upstream
servers. The proposed architecture was tested in three di erent scenarios:
the consumer is at home and it is considered that it has a xed access, the
consumer is mobile between several access points in the street, the consumer
is in a high speed train.
Several solutions were evaluated, such as Redis2, Cachelot and Memcached
to serve as caches, along with the evaluation of several proxies server in order
to ful ll the required features. Also, it was tested two distributed algorithms,
namely the Consistent and Rendezvous Hashing.
Moreover, in this dissertation it was integrated a prefetching mechanism,
which consists of inserting the content in caches before being requested by
the consumers.
At the end, it was veri ed that the distributed model with prefetching improved
the consumers QoE as well as it reduced the load on the upstream
servers
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