108 research outputs found
Mobile Autonomous Sensing Unit (MASU): a framework that supports distributed pervasive data sensing
Pervasive data sensing is a major issue that transverses various research areas and application domains. It allows identifying people’s behaviour and patterns without overwhelming the monitored persons. Although there are many pervasive data sensing applications, they are typically focused on addressing specific problems in a single application domain, making them difficult to generalize or reuse. On the other hand, the platforms for supporting pervasive data sensing impose restrictions to the devices and operational environments that make them unsuitable for monitoring loosely-coupled or fully distributed work. In order to help address this challenge this paper present a framework that supports distributed pervasive data sensing in a generic way. Developers can use this framework to facilitate the implementations of their applications, thus reducing complexity and effort in such an activity. The framework was evaluated using simulations and also through an empirical test, and the obtained results indicate that it is useful to support such a sensing activity in loosely-coupled or fully distributed work scenarios.Peer ReviewedPostprint (published version
Actas da 10ª Conferência sobre Redes de Computadores
Universidade do MinhoCCTCCentro AlgoritmiCisco SystemsIEEE Portugal Sectio
Estabelecimento de redes de comunidades sobreponíveis
Doutoramento em Engenharia InformáticaUma das áreas de investigação em Telecomunicações de interesse crescente
prende-se com os futuros sistemas de comunicações móveis de 4a geração
e além destes. Nos últimos anos tem sido desenvolvido o conceito de redes
comunitárias, no qual os utilizadores se agregam de acordo com interesses
comuns. Estes conceitos têm sido explorados de uma forma horizontal em
diferentes camadas da comunicação, desde as redes comunitárias de comunicação
(Seattle Wireless ou Personal Telco, p.ex.) até às redes de interesses
peer-to-peer. No entanto, estas redes são usualmente vistas como redes de
overlay, ou simplesmente redes de associação livre. Na prática, a noção de
uma rede auto-organizada, completamente orientada ao serviço/comunidade,
integralmente suportada em termos de arquitetura, não existe. Assim este
trabalho apresenta uma realização original nesta área de criação de redes
comunitárias, com uma arquitetura subjacente orientada a serviço, e que suporta
integralmente múltiplas redes comunitárias no mesmo dispositivo, com
todas as características de segurança, confiança e disponibilização de serviço
necessárias neste tipo de cenários (um nó pode pertencer simultaneamente
a mais do que uma rede comunitária). Devido à sua importância para
os sistemas de redes comunitárias, foi dado particular atenção a aspetos de
gestão de recursos e controlo de acessos. Ambos realizados de uma forma
descentralizada e considerando mecanismos dotados de grande escalabilidade.
Para isso, é apresentada uma linguagem de políticas que suporta a
criação de comunidades virtuais. Esta linguagem não é apenas utilizada para
o mapeamento da estrutura social dos membros da comunidade, como para,
gerir dispositivos, recursos e serviços detidos pelos membros, de uma forma
controlada e distribuída.One of the research areas with increasing interest in the field of telecommunications,
are the ones related to future telecommunication systems, both 4th
generation and beyond. In parallel, during the last years, several concepts
have been developed related to clustering of users according to their interested,
in the form of community networks. Solutions proposed for these concepts
tackle the challenges horizontally, for each layer of the communication
stack, ranging from community based communication networks (e.g. Seattle
Wireless, or Personal Telco), to interest networks based on peer-to-peer protocols.
However, these networks are presented either as free joining, or overlay
networks. In practice, the notion of a self-organized, service and community
oriented network, with these principles embedded in its design principles, is
yet to be developed. This work presents an novel instantiation of a solution in
the area of community networks, with a underlying architecture which is fully
service oriented, and envisions the support for multiple community networks
in the same device. Considerations regarding security, trust and service availability
for this type of environments are also taken. Due to the importance of
resource management and access control, in the context of community driven
communication networks, a special focus was given to the support of scalable
and decentralized management and access control methods. For this
purpose, it is presented a policy language which supports the creation and
management of virtual communities. The language is not only used for mapping
the social structure of the community members, but also to, following
a distributed approach, manage devices, resources and services owned by
each community member
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MapReduce based RDF assisted distributed SVM for high throughput spam filtering
This thesis was submitted for the degree of Doctor of Philosophy and was awarded by Brunel UniversityElectronic mail has become cast and embedded in our everyday lives. Billions of legitimate emails are sent on a daily basis. The widely established underlying infrastructure, its widespread availability as well as its ease of use have all acted as catalysts to such pervasive proliferation. Unfortunately, the same can be alleged about unsolicited bulk email, or rather spam. Various methods, as well as enabling architectures are available to try to mitigate spam permeation. In this respect, this dissertation compliments existing survey work in this area by contributing an extensive literature review of traditional and emerging spam filtering approaches. Techniques, approaches and architectures employed for spam filtering are appraised, critically assessing respective strengths and weaknesses.
Velocity, volume and variety are key characteristics of the spam challenge. MapReduce (M/R) has become increasingly popular as an Internet scale, data intensive processing platform. In the context of machine learning based spam filter training, support vector machine (SVM) based techniques have been proven effective. SVM training is however a computationally intensive process. In this dissertation, a M/R based distributed SVM algorithm for scalable spam filter training, designated MRSMO, is presented. By distributing and processing subsets of the training data across multiple participating computing nodes, the distributed SVM reduces spam filter training time significantly. To mitigate the accuracy degradation introduced by the adopted approach, a Resource Description Framework (RDF) based feedback loop is evaluated. Experimental results demonstrate that this improves the accuracy levels of the distributed SVM beyond the original sequential counterpart.
Effectively exploiting large scale, ‘Cloud’ based, heterogeneous processing capabilities for M/R in what can be considered a non-deterministic environment requires the consideration of a number of perspectives. In this work, gSched, a Hadoop M/R based, heterogeneous aware task to node matching and allocation scheme is designed. Using MRSMO as a baseline, experimental evaluation indicates that gSched improves on the performance of the out-of-the box Hadoop counterpart in a typical Cloud based infrastructure.
The focal contribution to knowledge is a scalable, heterogeneous infrastructure and machine learning based spam filtering scheme, able to capitalize on collaborative accuracy improvements through RDF based, end user feedback. MapReduce based RDF Assisted Distributed SVM for High Throughput Spam Filterin
Conceptual Models for Assessment & Assurance of Dependability, Security and Privacy in the Eternal CONNECTed World
This is the first deliverable of WP5, which covers Conceptual Models for Assessment & Assurance of Dependability, Security and Privacy in the Eternal CONNECTed World. As described in the project DOW, in this document we cover the following topics: • Metrics definition • Identification of limitations of current V&V approaches and exploration of extensions/refinements/ new developments • Identification of security, privacy and trust models WP5 focus is on dependability concerning the peculiar aspects of the project, i.e., the threats deriving from on-the-fly synthesis of CONNECTors. We explore appropriate means for assessing/guaranteeing that the CONNECTed System yields acceptable levels for non-functional properties, such as reliability (e.g., the CONNECTor will ensure continued communication without interruption), security and privacy (e.g., the transactions do not disclose confidential data), trust (e.g., Networked Systems are put in communication only with parties they trust). After defining a conceptual framework for metrics definition, we present the approaches to dependability in CONNECT, which cover: i) Model-based V&V, ii) Security enforcement and iii) Trust management. The approaches are centered around monitoring, to allow for on-line analysis. Monitoring is performed alongside the functionalities of the CONNECTed System and is used to detect conditions that are deemed relevant by its clients (i.e., the other CONNECT Enablers). A unified lifecycle encompassing dependability analysis, security enforcement and trust management is outlined, spanning over discovery time, synthesis time and execution time
Next Generation Internet of Things – Distributed Intelligence at the Edge and Human-Machine Interactions
This book provides an overview of the next generation Internet of Things (IoT), ranging from research, innovation, development priorities, to enabling technologies in a global context. It is intended as a standalone in a series covering the activities of the Internet of Things European Research Cluster (IERC), including research, technological innovation, validation, and deployment.The following chapters build on the ideas put forward by the European Research Cluster, the IoT European Platform Initiative (IoT–EPI), the IoT European Large-Scale Pilots Programme and the IoT European Security and Privacy Projects, presenting global views and state-of-the-art results regarding the next generation of IoT research, innovation, development, and deployment.The IoT and Industrial Internet of Things (IIoT) are evolving towards the next generation of Tactile IoT/IIoT, bringing together hyperconnectivity (5G and beyond), edge computing, Distributed Ledger Technologies (DLTs), virtual/ andaugmented reality (VR/AR), and artificial intelligence (AI) transformation.Following the wider adoption of consumer IoT, the next generation of IoT/IIoT innovation for business is driven by industries, addressing interoperability issues and providing new end-to-end security solutions to face continuous treats.The advances of AI technology in vision, speech recognition, natural language processing and dialog are enabling the development of end-to-end intelligent systems encapsulating multiple technologies, delivering services in real-time using limited resources. These developments are focusing on designing and delivering embedded and hierarchical AI solutions in IoT/IIoT, edge computing, using distributed architectures, DLTs platforms and distributed end-to-end security, which provide real-time decisions using less data and computational resources, while accessing each type of resource in a way that enhances the accuracy and performance of models in the various IoT/IIoT applications.The convergence and combination of IoT, AI and other related technologies to derive insights, decisions and revenue from sensor data provide new business models and sources of monetization. Meanwhile, scalable, IoT-enabled applications have become part of larger business objectives, enabling digital transformation with a focus on new services and applications.Serving the next generation of Tactile IoT/IIoT real-time use cases over 5G and Network Slicing technology is essential for consumer and industrial applications and support reducing operational costs, increasing efficiency and leveraging additional capabilities for real-time autonomous systems.New IoT distributed architectures, combined with system-level architectures for edge/fog computing, are evolving IoT platforms, including AI and DLTs, with embedded intelligence into the hyperconnectivity infrastructure.The next generation of IoT/IIoT technologies are highly transformational, enabling innovation at scale, and autonomous decision-making in various application domains such as healthcare, smart homes, smart buildings, smart cities, energy, agriculture, transportation and autonomous vehicles, the military, logistics and supply chain, retail and wholesale, manufacturing, mining and oil and gas
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