767 resultados para WIRELESS NETWORKING
Resumo:
A wireless mesh network is a mesh network implemented over a wireless network system such as wireless LANs. Wireless Mesh Networks(WMNs) are promising for numerous applications such as broadband home networking, enterprise networking, transportation systems, health and medical systems, security surveillance systems, etc. Therefore, it has received considerable attention from both industrial and academic researchers. This dissertation explores schemes for resource management and optimization in WMNs by means of network routing and network coding.^ In this dissertation, we propose three optimization schemes. (1) First, a triple-tier optimization scheme is proposed for load balancing objective. The first tier mechanism achieves long-term routing optimization, and the second tier mechanism, using the optimization results obtained from the first tier mechanism, performs the short-term adaptation to deal with the impact of dynamic channel conditions. A greedy sub-channel allocation algorithm is developed as the third tier optimization scheme to further reduce the congestion level in the network. We conduct thorough theoretical analysis to show the correctness of our design and give the properties of our scheme. (2) Then, a Relay-Aided Network Coding scheme called RANC is proposed to improve the performance gain of network coding by exploiting the physical layer multi-rate capability in WMNs. We conduct rigorous analysis to find the design principles and study the tradeoff in the performance gain of RANC. Based on the analytical results, we provide a practical solution by decomposing the original design problem into two sub-problems, flow partition problem and scheduling problem. (3) Lastly, a joint optimization scheme of the routing in the network layer and network coding-aware scheduling in the MAC layer is introduced. We formulate the network optimization problem and exploit the structure of the problem via dual decomposition. We find that the original problem is composed of two problems, routing problem in the network layer and scheduling problem in the MAC layer. These two sub-problems are coupled through the link capacities. We solve the routing problem by two different adaptive routing algorithms. We then provide a distributed coding-aware scheduling algorithm. According to corresponding experiment results, the proposed schemes can significantly improve network performance.^
Resumo:
The promise of Wireless Sensor Networks (WSNs) is the autonomous collaboration of a collection of sensors to accomplish some specific goals which a single sensor cannot offer. Basically, sensor networking serves a range of applications by providing the raw data as fundamentals for further analyses and actions. The imprecision of the collected data could tremendously mislead the decision-making process of sensor-based applications, resulting in an ineffectiveness or failure of the application objectives. Due to inherent WSN characteristics normally spoiling the raw sensor readings, many research efforts attempt to improve the accuracy of the corrupted or "dirty" sensor data. The dirty data need to be cleaned or corrected. However, the developed data cleaning solutions restrict themselves to the scope of static WSNs where deployed sensors would rarely move during the operation. Nowadays, many emerging applications relying on WSNs need the sensor mobility to enhance the application efficiency and usage flexibility. The location of deployed sensors needs to be dynamic. Also, each sensor would independently function and contribute its resources. Sensors equipped with vehicles for monitoring the traffic condition could be depicted as one of the prospective examples. The sensor mobility causes a transient in network topology and correlation among sensor streams. Based on static relationships among sensors, the existing methods for cleaning sensor data in static WSNs are invalid in such mobile scenarios. Therefore, a solution of data cleaning that considers the sensor movements is actively needed. This dissertation aims to improve the quality of sensor data by considering the consequences of various trajectory relationships of autonomous mobile sensors in the system. First of all, we address the dynamic network topology due to sensor mobility. The concept of virtual sensor is presented and used for spatio-temporal selection of neighboring sensors to help in cleaning sensor data streams. This method is one of the first methods to clean data in mobile sensor environments. We also study the mobility pattern of moving sensors relative to boundaries of sub-areas of interest. We developed a belief-based analysis to determine the reliable sets of neighboring sensors to improve the cleaning performance, especially when node density is relatively low. Finally, we design a novel sketch-based technique to clean data from internal sensors where spatio-temporal relationships among sensors cannot lead to the data correlations among sensor streams.
Resumo:
Wireless sensor networks (WSNs) have shown wide applicability to many fields including monitoring of environmental, civil, and industrial settings. WSNs however are resource constrained by many competing factors that span their hardware, software, and networking. One of the central resource constrains is the charge consumption of WSN nodes. With finite energy supplies, low charge consumption is needed to ensure long lifetimes and success of WSNs. This thesis details the design of a power system to support long-term operation of WSNs. The power system’s development occurs in parallel with a custom WSN from the Queen’s MEMS Lab (QML-WSN), with the goal of supporting a 1+ year lifetime without sacrificing functionality. The final power system design utilizes a TPS62740 DC-DC converter with AA alkaline batteries to efficiently supply the nodes while providing battery monitoring functionality and an expansion slot for future development. Testing tools for measuring current draw and charge consumption were created along with analysis and processing software. Through their use charge consumption of the power system was drastically lowered and issues in QML-WSN were identified and resolved including the proper shutdown of accelerometers, and incorrect microcontroller unit (MCU) power pin connection. Controlled current profiling revealed unexpected behaviour of nodes and detailed current-voltage relationships. These relationships were utilized with a lifetime projection model to estimate a lifetime between 521-551 days, depending on the mode of operation. The power system and QML-WSN were tested over a long term trial lasting 272+ days in an industrial testbed to monitor an air compressor pump. Environmental factors were found to influence the behaviour of nodes leading to increased charge consumption, while a node in an office setting was still operating at the conclusion of the trail. This agrees with the lifetime projection and gives a strong indication that a 1+ year lifetime is achievable. Additionally, a light-weight charge consumption model was developed which allows charge consumption information of nodes in a distributed WSN to be monitored. This model was tested in a laboratory setting demonstrating +95% accuracy for high packet reception rate WSNs across varying data rates, battery supply capacities, and runtimes up to full battery depletion.
Resumo:
In recent years, there has been an enormous growth of location-aware devices, such as GPS embedded cell phones, mobile sensors and radio-frequency identification tags. The age of combining sensing, processing and communication in one device, gives rise to a vast number of applications leading to endless possibilities and a realization of mobile Wireless Sensor Network (mWSN) applications. As computing, sensing and communication become more ubiquitous, trajectory privacy becomes a critical piece of information and an important factor for commercial success. While on the move, sensor nodes continuously transmit data streams of sensed values and spatiotemporal information, known as ``trajectory information". If adversaries can intercept this information, they can monitor the trajectory path and capture the location of the source node. This research stems from the recognition that the wide applicability of mWSNs will remain elusive unless a trajectory privacy preservation mechanism is developed. The outcome seeks to lay a firm foundation in the field of trajectory privacy preservation in mWSNs against external and internal trajectory privacy attacks. First, to prevent external attacks, we particularly investigated a context-based trajectory privacy-aware routing protocol to prevent the eavesdropping attack. Traditional shortest-path oriented routing algorithms give adversaries the possibility to locate the target node in a certain area. We designed the novel privacy-aware routing phase and utilized the trajectory dissimilarity between mobile nodes to mislead adversaries about the location where the message started its journey. Second, to detect internal attacks, we developed a software-based attestation solution to detect compromised nodes. We created the dynamic attestation node chain among neighboring nodes to examine the memory checksum of suspicious nodes. The computation time for memory traversal had been improved compared to the previous work. Finally, we revisited the trust issue in trajectory privacy preservation mechanism designs. We used Bayesian game theory to model and analyze cooperative, selfish and malicious nodes' behaviors in trajectory privacy preservation activities.
Resumo:
Mobile and wireless networks have long exploited mobility predictions, focused on predicting the future location of given users, to perform more efficient network resource management. In this paper, we present a new approach in which we provide predictions as a probability distribution of the likelihood of moving to a set of future locations. This approach provides wireless services a greater amount of knowledge and enables them to perform more effectively. We present a framework for the evaluation of this new type of predictor, and develop 2 new predictors, HEM and G-Stat. We evaluate our predictors accuracy in predicting future cells for mobile users, using two large geolocation data sets, from MDC [11], [12] and Crawdad [13]. We show that our predictors can successfully predict with as low as an average 2.2% inaccuracy in certain scenarios.
Resumo:
Wireless Sensor Networks (WSNs) have a vast field of applications, including deployment in hostile environments. Thus, the adoption of security mechanisms is fundamental. However, the extremely constrained nature of sensors and the potentially dynamic behavior of WSNs hinder the use of key management mechanisms commonly applied in modern networks. For this reason, many lightweight key management solutions have been proposed to overcome these constraints. In this paper, we review the state of the art of these solutions and evaluate them based on metrics adequate for WSNs. We focus on pre-distribution schemes well-adapted for homogeneous networks (since this is a more general network organization), thus identifying generic features that can improve some of these metrics. We also discuss some challenges in the area and future research directions. (C) 2010 Elsevier B.V. All rights reserved.
Resumo:
The suitable use of an array antenna at the base station of a wireless communications system can result in improvement in the signal-to-interference ratio (SIR). In general, the SIR is a function of the direction of arrival of the desired signal and depends on the configuration of the array, the number of elements, and their spacing. In this paper, we consider a uniform linear array antenna and study the effect of varying the number of its elements and inter-element spacing on the SIR performance. (C) 2002 Wiley Periodicals, Inc.
Resumo:
The goal of the present study is mapping the nature of possible contributions of participatory online platforms in citizen actions that may contribute in the fight against cancer and its associated consequences. These platforms are usually associated with entertainment: in that sense, we intent to test their validity in other domains such as health, as well as contribute to an expanded perception of their potential by their users. The research is based on the analysis of online solidarity networks, namely the ones residing on Facebook, Orkut and the blogosphere, that citizens have been gradually resorting to. The research is also based on the development of newer and more efficient solutions that provide the individual (directly or indirectly affected by issues of oncology) with the means to overcome feelings of impotence and fatality. In this article, we aim at summarizing the processes of usage of these decentralized, freer participatory platforms by citizens and institutions, while attempting to unravel existing hype and stigma; we also provide a first survey of the importance and the role of institutions in this kind of endeavor; lastly, we present a prototype, developed in the context of the present study, that is specifically dedicated to addressing oncology through social media. This prototype is already available online at www.talkingaboutcancer.org, however, still under development and testing. The main objective of this platform is to allow every citizen to freely build their network of contacts and information, according to their own individual and/ or collective needs and desires.
Resumo:
Wireless medical systems are comprised of four stages, namely the medical device, the data transport, the data collection and the data evaluation stages. Whereas the performance of the first stage is highly regulated, the others are not. This paper concentrates on the data transport stage and argues that it is necessary to establish standardized tests to be used by medical device manufacturers to provide comparable results concerning the communication performance of the wireless networks used to transport medical data. Besides, it suggests test parameters and procedures to be used to produce comparable communication performance results.
Resumo:
This paper proposes a wireless EEG acquisition platform based on Open Multimedia Architecture Platform (OMAP) embedded system. A high-impedance active dry electrode was tested for improving the scalp- electrode interface. It was used the sigma-delta ADS1298 analog-to-digital converter, and developed a “kernelspace” character driver to manage the communications between the converter unit and the OMAP’s ARM core. The acquired EEG signal data is processed by a “userspace” application, which accesses the driver’s memory, saves the data to a SD-card and transmits them through a wireless TCP/IP-socket to a PC. The electrodes were tested through the alpha wave replacement phenomenon. The experimental results presented the expected alpha rhythm (8-13 Hz) reactiveness to the eyes opening task. The driver spends about 725 μs to acquire and store the data samples. The application takes about 244 μs to get the data from the driver and 1.4 ms to save it in the SD-card. A WiFi throughput of 12.8Mbps was measured which results in a transmission time of 5 ms for 512 kb of data. The embedded system consumes about 200 mAh when wireless off and 400 mAh when it is on. The system exhibits a reliable performance to record EEG signals and transmit them wirelessly. Besides the microcontroller-based architectures, the proposed platform demonstrates that powerful ARM processors running embedded operating systems can be programmed with real-time constrains at the kernel level in order to control hardware, while maintaining their parallel processing abilities in high level software applications.
Resumo:
Business social networking is a facilitator of several business activities, such as market studies, communication with clients, and identification of business partners. This paper traduces the results of a study undertaken with the purpose of getting to know how the potential of networking is perceived in the promotion of business by participants of the LinkedIn network, and presents two main contributions: (1) to disseminate within the business community which is the relevance given to social networking; and (2) which are the social networks best suitable to the promotion of business, to support the definition of strategies and approaches accordingly. The results confirm that LinkedIn is the most suitable network to answer the needs of those that look for professional contacts and for the promotion of business, while innovation is the most recognized factor in the promotion of business through social networking. This study contributes to a better understanding of the potential of different business social networking sites, to support organizations and professionals to align their strategies with the perceived potential of each network.
Resumo:
A rápida evolução dos dispositivos móveis e das tecnologias de comunicação sem fios transformou o telemóvel num poderoso dispositivo de computação móvel. A necessidade de estar sempre contactável, comum à civilização moderna, tem aumentado a dependência deste dispositivo, sendo transportado pela maioria das pessoas num ambiente urbano e assumindo um papel talvez mais importante que a própria carteira. A ubiquidade e capacidade de computação dos telemóveis aumentam o interesse no desenvolvimento de serviços móveis, além de tradicionais serviços de voz. Um telemóvel pode em breve tornar-se um elemento activo nas nossas tarefas diárias, servindo como um instrumento de pagamento e controlo de acessos, proporcionando assim novas interfaces para serviços existentes. A unificação de vários serviços num único dispositivo é um desafio que pode simplificar a nossa rotina diária e aumentar o conforto, no limite deixaremos de necessitar de dinheiro físico, cartões de crédito ou débito, chaves de residência e de veículos automóveis, ou inclusive documentos de identificação como bilhetes de identidade ou passaportes. O interesse demonstrado pelos intervenientes, desde os fabricantes de telemóveis e operadores de rede móvel até às instituições financeiras, levaram ao aparecimento de múltiplas soluções de serviços móveis. Porém estas soluções respondem geralmente a problemas específicos, apenas contemplando um fornecedor de serviços ou uma determinada operação de pagamento, como seja a compra de bilhetes ou pagamento de estacionamento. Estas soluções emergentes consistem também tipicamente em especificações fechadas e protocolos proprietários. A definição de uma arquitectura genérica, aberta interoperável e extensível é necessária para que os serviços móveis possam ser adoptados de uma forma generalizada por diferentes fornecedores de serviços e para diversos tipos de pagamento. A maior parte das soluções actuais de pagamento móvel depende de comunicações através da rede móvel, algumas utilizam o telemóvel apenas como uma interface de acesso à internet enquanto outras possibilitam o envio de um SMS (Short Message Service) para autorizar uma transacção, o que implica custos de comunicação em todas as operações de pagamento. Este custo de operação torna essas soluções inadequadas para a realização de micropagamentos e podem por isso ter uma aceitação limitada por parte dos clientes. As soluções existentes focam-se maioritariamente em pagamentos à distância, não tirando partido das características do pagamento presencial e não oferecendo por isso uma verdadeira alternativa ao modelo actual de pagamento com cartões de crédito/débito. As capacidades computacionais dos telemóveis e suporte de diversos protocolos de comunicação sem fio local não têm sido aproveitadas, vendo o telemóvel apenas como um terminal GSM (Global System for Mobile Communications) e não oferecendo serviços adicionais como seja a avaliação dinâmica de risco ou controlo de despesas. Esta dissertação propõe e valida, através de um demonstrador, uma aquitectua aberta para o pagamento e controlo de acesso baseado em dispositivos móveis, intitulada WPAC (Wireless Payment and Access Control). Para chegar à solução apresentada foram estudadas outras soluções de pagamento, desde o aparecimento dos cartões de débito até a era de pagamentos electrónicos móveis, passando pelas soluções de pagamento através da internet. As capacidades dos dispositivos móveis, designadamente os telemóveis, e tecnologias de comunicação sem fios foram também analisadas a fim de determinar o estado tecnológico actual. A arquitectura WPAC utiliza padrões de desenho utilizados pela indústria em soluções de sucesso, a utilização de padrões testados e a reutilização de soluções com provas dadas permite aumentar a confiança nesta solução, um destes exemplos é a utilização de uma infra-estrutura de chave pública para o estabelecimento de um canal de comunicação seguro. Esta especificação é uma arquitectura orientada aos serviços que utiliza os Web Services para a definição do contracto do serviço de pagamento. A viabilidade da solução na orquestração de um conjunto de tecnologias e a prova de conceito de novas abordagens é alcançada com a construção de um protótipo e a realização de testes. A arquitectura WPAC possibilita a realização de pagamentos móveis presenciais, isto é, junto do fornecedor de bens ou serviços, seguindo o modelo de pagamento com cartões de crédito/débito no que diz respeito aos intervenientes e relações entre eles. Esta especificação inclui como aspecto inovador a avaliação dinâmica de risco, que utiliza o valor do pagamento, a existência de pagamentos frequentes num período curto de tempo, e a data, hora e local do pagamento como factores de risco; solicitando ao cliente o conjunto de credenciais adequado ao risco avaliado, desde códigos pessoais a dados biométricos. É também apresentada uma alternativa ao processo normal de pagamento, que apesar de menos cómoda permite efectuar pagamentos quando não é possível estabelecer um canal de comunicação sem fios, aumentando assim a tolerância a falhas. Esta solução não implica custos de operação para o cliente na comunicação com o ponto de venda do comerciante, que é realizada através de tecnologias de comunicação local sem fios, pode ser necessária a comunicação através da rede móvel com o emissor do agente de pagamento para a actualização do agente de software ou de dados de segurança, mas essas transmissões são ocasionais. O modelo de segurança recorre a certificados para autenticação dos intervenientes e a uma infra-estrutura de chave pública para cifra e assinatura de mensagens. Os dados de segurança incluídos no agente de software móvel, para desabilitar a cópia ou corrupção da aplicação mas também para a comparação com as credenciais inseridas pelo cliente, devem igualmente ser encriptados e assinados de forma a garantir a sua confidencialidade e integridade. A arquitectura de pagamento utiliza o standard de Web Services, que é amplamente conhecido, aberto e interoperável, para definição do serviço de pagamento. Existem extensões à especificação de Web Services relativas à segurança que permitem trocar itens de segurança e definem o modo de cifra e assinatura de mensagens, possibilitando assim a sua utilização em aplicações que necessitem de segurança como é o caso de serviços de pagamento e controlo de acesso. O contracto de um Web Service define o modo de invocação dos serviços, transmissão de informação e representação de dados, sendo normalmente utilizado o protocolo SOAP que na prática não é mais que um protocolo de troca de mansagens XML (eXtensible Markup Language). O envio e recepção de mensagens XML; ou seja, a transmissão de simples sequências de caracteres, é suportado pela maioria dos protocolos de comunicação, sendo portanto uma solução abrangente que permite a adopção de diversas tecnologias de comunicação sem fios. O protótipo inclui um agente de software móvel, implementado sobre a forma de uma MIDlet, aplicação Java para dispositivos móveis, que implementa o protocolo de pagamento comunicando sobre uma ligação Bluetooth com o ponto de venda do comerciante, simulado por uma aplicação desenvolvida sobre a plataforma .NET e que por isso faz prova da heterogeneidade da solução. A comunicação entre o comerciante e o seu banco para autorização do pagamento e transferência monetária utiliza o protocolo existente para a autorização de pagamentos, com base em cartões de crédito/débito. A definição desta especificação aberta e genérica em conjunto com o forte interesse demonstrado pelos intervenientes, proporciona uma boa perspectiva em termos de adopção da solução, o que pode impulsionar a implementação de serviços móveis e dessa forma simplificar as rotinas diárias das pessoas. Soluções móveis de pagamento reduzem a necessidade de transportar vários cartões de crédito/débito na nossa carteira. A avaliação dinâmica de risco permite aumentar a segurança dos pagamentos, com a solicitação de mais credenciais ao cliente para pagamentos com um maior risco associado, sendo um ponto importante quer para os clientes quer para as instituições financeiras pois diminui o risco de fraude e aumenta a confiança no sistema. Esta solução de pagamento electrónico pode também facilitar a consulta de pagamentos efectuados e saldos, mantendo um histórico dos movimentos, o que não é possível nos cartões de crédito/débito sem uma visita a uma ATM (Automated Teller Machine) ou utilização de homebanking.