317 research outputs found

    Recent advances in industrial wireless sensor networks towards efficient management in IoT

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    With the accelerated development of Internet-of- Things (IoT), wireless sensor networks (WSN) are gaining importance in the continued advancement of information and communication technologies, and have been connected and integrated with Internet in vast industrial applications. However, given the fact that most wireless sensor devices are resource constrained and operate on batteries, the communication overhead and power consumption are therefore important issues for wireless sensor networks design. In order to efficiently manage these wireless sensor devices in a unified manner, the industrial authorities should be able to provide a network infrastructure supporting various WSN applications and services that facilitate the management of sensor-equipped real-world entities. This paper presents an overview of industrial ecosystem, technical architecture, industrial device management standards and our latest research activity in developing a WSN management system. The key approach to enable efficient and reliable management of WSN within such an infrastructure is a cross layer design of lightweight and cloud-based RESTful web service

    Research and Technology 1996: Innovation in Time and Space

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    As the NASA Center responsible for assembly, checkout, servicing, launch, recovery, and operational support of Space Transportation System elements and payloads, the John F. Kennedy Space Center is placing increasing emphasis on its advanced technology development program. This program encompasses the efforts of the Engineering Development Directorate laboratories, most of the KSC operations contractors, academia, and selected commercial industries - all working in a team effort within their own areas of expertise. This edition of the Kennedy Space Center Research and Technology 1996 Annual Report covers efforts of all these contributors to the KSC advanced technology development program, as well as our technology transfer activities

    The Design and Implementation of an Over-the-top Cloud-based Vertical Handover Decision Service for Heterogeneous Wireless Networks

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    The widespread availability of heterogeneous wireless networks (hetnets) presents a resource allocation challenge to network operators and administrators. Overlapping network coverage should be utilized to its fullest extent, providing users with a fair share of bandwidth while maximizing the efficient use of the operator\u27s resources. Currently, network selection occurs locally at the mobile device and does not take into account factors such as the state of other networks that might be available in the device\u27s location. The local decision made by the device can often result in underutilization of network resources and a degraded user experience. This type of selfish network selection might not result in optimal bandwidth allocation when compared to approaches that make use of a centralized resource controller \cite{gpf}. The decision making process behind the selection of these networks continues to be an open area of research, and a variety of algorithms have been proposed to solve this problem. An over-the-top handover decision service treats each wireless access network in a hetnet as a black box, assuming detailed network topology and state information is unavailable to the handover decision algorithm. The algorithm then uses network data gathered empirically from users to provide them with a network selection service that considers the current conditions of available networks in a given location. This is a departure from past designs of vertical handover decision algorithms, which tend to approach the problem from the perspective of individual network operators. The wide range of radio access technologies operated by different network operators that are available to a device within a hetnet, coupled with the mobile data offload effort, is the primary motivator behind our novel choice in direction. This thesis documents the design and implementation of such an over-the-top vertical handover decision service

    Automated software upgrade for reconfigurable mobile devices.

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    Due to rapid advancement of the mobile communication technologies and the existence of multi-standards, the demands for managing mobile device effectively to fulfill various functionalities are on the rise. With the development of firmware over-the-air (FOTA) technology, the reconfigurable feature of mobile device provided by Software Defined Radio (SDR) technology offers a new way to realize the multi-functionalities of mobile devices. Therefore, based on the reconfigurable feature provided by SDR devices and the FOTA technology standardized by Open Mobile Alliance Device Management (OMA DM) standard, in this thesis, a framework of Modulation Module Update (MMU) is proposed for upgrading the modulation module on the mobile device over-the-air. As the modulation module is a vital module for radio devices, the upgrade or reconfiguration of modulation module can be extremely helpful for the realization of multi-functionalities. Therefore, in this thesis, the management object for updating modulation module are defined based on OMA DM standard, and three operation phases are defined in this framework as well. Compared with the original framework provide by OMA DM standard, the MMU framework is significantly improved from both the logical structure design aspect and the operation mechanism design aspect. The download operation of the firmware upgrade is optimized by the download mechanism proposed in this thesis, which is an over-the-air (OTA) software download mechanism combining the centralized download method and the decentralized download method for different circumstances. An important module named Central Information Controller (CIC) is also proposed to realize the control of the decentralized download method. The implementation of the MMU is achieved in this thesis as well. The server side and the client side of the framework as well as the CIC are simulated to test and verify the framework we proposed for the modulation module OTA upgrade

    Building the Future Internet through FIRE

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    The Internet as we know it today is the result of a continuous activity for improving network communications, end user services, computational processes and also information technology infrastructures. The Internet has become a critical infrastructure for the human-being by offering complex networking services and end-user applications that all together have transformed all aspects, mainly economical, of our lives. Recently, with the advent of new paradigms and the progress in wireless technology, sensor networks and information systems and also the inexorable shift towards everything connected paradigm, first as known as the Internet of Things and lately envisioning into the Internet of Everything, a data-driven society has been created. In a data-driven society, productivity, knowledge, and experience are dependent on increasingly open, dynamic, interdependent and complex Internet services. The challenge for the Internet of the Future design is to build robust enabling technologies, implement and deploy adaptive systems, to create business opportunities considering increasing uncertainties and emergent systemic behaviors where humans and machines seamlessly cooperate

    Optimização de recursos para difusão em redes de próxima geração

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    Doutoramento em ElectrotecniaEsta tese aborda o problema de optimização de recursos de rede, na entrega de Serviços de Comunicação em Grupo, em Redes de Próxima Geração que suportem tecnologias de difusão. De acordo com esta problemática, são feitas propostas que levam em atenção a evolução espectável das redes 3G em Redes Heterogéneas de Próxima Geração que incluam tecnologias de difusão tais como o DVB. A optimização de recursos em Comunicações em Grupo é apresentada como um desafio vertical que deve cruzar diversas camadas. As optimizações aqui propostas cobrem tanto a interface entre Aplicação e a Plataforma de Serviços para a disponibilização de serviços de comunicação em grupo, como as abstracções e mapeamentos feitos na interface entre a Rede Central e a Rede de Acesso Rádio. As optimizações propostas nesta tese, assumem que o caminho evolutivo na direcção de uma Rede de Próxima Geração é feito através do IP. Em primeiro lugar são endereçadas as optimizações entre a Aplicação e a Plataforma de Serviços que já podem ser integradas nas redes 3G existentes. Estas optimizações podem potenciar o desenvolvimento de novas e inovadoras aplicações, que através do uso de mecanismos de distribuição em difusão podem fazer um uso mais eficiente dos recursos de rede. De seguida são apresentadas optimizações ao nível da interface entre a Rede Central e a Rede de Acesso Rádio que abordam a heterogeneidade das redes futuras assim como a necessidade de suportar tecnologias de difusão. É ainda considerada a possibilidade de aumentar a qualidade de serviço de serviços de difusão através do mapeamento do IP multicast em portadoras unidireccionais. Por forma a validar todas estas optimizações, vários protótipos foram desenvolvidos com base num router avançado para redes de acesso de próxima geração. As funcionalidades e arquitectura de software desse router são também aqui apresentadas.This thesis addresses the problem of optimizing network resource usage, for the delivery of Group Services, in Next Generation Networks featuring broadcast technologies. In this scope, proposals are made according to the expected evolution of 3G networks into Next Generation Heterogeneous Networks that include broadcast technologies such as DVB. Group Communication resource optimization is considered a vertical challenge that must cross several layers. The optimizations here proposed cover both Application to Service Platform interfaces for group communication services, and Core Network to Radio Access Network interface abstractions and mappings. The proposed optimizations are also presented taking into consideration network evolution path towards an All-IP based Next Generation Network. First it is addressed the Application to Service Platform optimization, which can already be deployed over 3G networks. This optimization could potentiate the development of new and innovative applications that through the use of broadcast/multicast service delivery mechanisms could be more efficient network wise. Next proposals are made on the Core Network to Radio Access Network interfaces that address the heterogeneity of future networks and consider the need to support broadcast networks. It is also considered the possibility to increase the Quality of Service of broadcast/multicast services based on the dynamic mapping of IP multicast into unicast radio bearers. In order to validate these optimizations, several prototypes were built based on an advanced access router for next generation networks. Such access router functionalities and software architecture are also presented here

    Building the Future Internet through FIRE

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    The Internet as we know it today is the result of a continuous activity for improving network communications, end user services, computational processes and also information technology infrastructures. The Internet has become a critical infrastructure for the human-being by offering complex networking services and end-user applications that all together have transformed all aspects, mainly economical, of our lives. Recently, with the advent of new paradigms and the progress in wireless technology, sensor networks and information systems and also the inexorable shift towards everything connected paradigm, first as known as the Internet of Things and lately envisioning into the Internet of Everything, a data-driven society has been created. In a data-driven society, productivity, knowledge, and experience are dependent on increasingly open, dynamic, interdependent and complex Internet services. The challenge for the Internet of the Future design is to build robust enabling technologies, implement and deploy adaptive systems, to create business opportunities considering increasing uncertainties and emergent systemic behaviors where humans and machines seamlessly cooperate

    Non-Orthogonal Multiple Access for 5G: Design and Performance Enhancement

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    PhDSpectrum scarcity is one of the most important challenges in wireless communications networks due to the sky-rocketing growth of multimedia applications. As the latest member of the multiple access family, non-orthogonal multiple access (NOMA) has been recently proposed for 3GPP Long Term Evolution (LTE) and envisioned to be a key component of the 5th generation (5G) mobile networks for its potential ability on spectrum enhancement. The feature of NOMA is to serve multiple users at the same time/frequency/code, but with di erent power levels, which yields a signi cant spectral e ciency gain over conventional orthogonal multiple access (OMA). This thesis provides a systematic treatment of this newly emerging technology, from the basic principles of NOMA, to its combination with simultaneously information and wireless power transfer (SWIPT) technology, to apply in cognitive radio (CR) networks and Heterogeneous networks (HetNets), as well as enhancing the physical layer security and addressing the fairness issue. First, this thesis examines the application of SWIPT to NOMA networks with spatially randomly located users. A new cooperative SWIPT NOMA protocol is proposed, in which near NOMA users that are close to the source act as energy harvesting relays in the aid of far NOMA users. Three user selection schemes are proposed to investigate the e ect of locations on the performance. Besides the closed-form expressions in terms of outage probability and throughput, the diversity gain of the considered networks is determined. Second, when considering NOMA in CR networks, stochastic geometry tools are used to evaluate the outage performance of the considered network. New closed-form expressions are derived for the outage probability. Diversity order of NOMA users has been analyzed based on the derived outage probability, which reveals important design insights regarding the interplay between two power constraints scenarios. Third, a new promising transmission framework is proposed, in which massive multipleinput multiple-output (MIMO) is employed in macro cells and NOMA is adopted in small cells. For maximizing the biased average received power at mobile users, a massive MIMO and NOMA based user association scheme is developed. Analytical expressions for the spectrum e ciency of each tier are derived using stochastic geometry. It is con rmed that NOMA is capable of enhancing the spectrum e ciency of the network compared to the OMA based HetNets. Fourth, this thesis investigates the physical layer security of NOMA in large-scale networks with invoking stochastic geometry. Both single-antenna and multiple-antenna aided transmission scenarios are considered, where the base station (BS) communicates with randomly distributed NOMA users. In addition to the derived exact analytical expressions for each scenario, some important insights such as secrecy diversity order and large antenna array property are obtained by carrying the asymptotic analysis. Fifth and last, the fundamental issues of fairness surrounding the joint power allocation and dynamic user clustering are addressed in MIMO-NOMA systems in this thesis. A two-step optimization approach is proposed to solve the formulated problem. Three e cient suboptimal algorithms are proposed to reduce the computational complexity. To further improve the performance of the worst user in each cluster, power allocation coe cients are optimized by using bi-section search. Important insights are concluded from the generated simulate results

    Electro-optic frequency combs and their applications in high-precision metrology and high-speed communications

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    Optische Frequenzkämme haben sich in den letzten Jahren zu einem vielseitigen Werkzeug im Bereich der Optik und Photonik entwickelt. Sie ermöglichen den Zugang zu einer Vielzahl von schmalbandigen Spektrallinien, die einen breiten Spektralbereich abdecken und gleichzeitig hochgenau definierte Frequenzen aufweisen. Dadurch wurden Experimente in vielfältigen Anwendungsgebieten ermöglicht, zum Beispiel in den Bereichen optischer Atomuhren, der Präzisionsspektroskopie, der Frequenzmesstechnik, der Distanzmesstechnik und der optischen Telekommunikation. Allerdings umfassen übliche Frequenzkammquellen und die jeweiligen Laboraufbauten typischerweise komplexe opto-elektronische und opto-mechanische Anordnungen, welche aufgrund von Baugröße und fehlender Robustheit gegenüber Umwelteinflüssen wie Temperatur bislang kaum Einzug in breitere industrielle Anwendungen gefunden haben. Diese Arbeit legt deshalb ein besonderes Augenmerk auf die praktische Nutzbarkeit von frequenzkamm-basierten Systemen in industriellen Anwendungen. Im Fokus stehen dabei Robustheit, Kompaktheit und flexible Anpassungsmöglichkeiten an die jeweilige Anwendung. Das bezieht sich sowohl auf die Frequenzkammquellen selbst, als auch auf die zugehörigen anwendungsspezifischen optischen Systeme, in welchen die Frequenzkämme genutzt werden. In der vorliegenden Arbeit wird das Potential elektro-optischer Frequenzkämme in der optischen Messtechnik sowie der optischen Kommunikationstechnik anhand ausgewählter experimenteller Demonstrationen untersucht. Als Mittel zur Realisierung miniaturisierter optischer Systeme mit einem Flächenbedarf von wenigen Quadratmillimetern wird die photonische Integration in Silizium verfolgt. Ein integriertes System zur Frequenzkamm-basierten Distanzmessung sowie integriert-optische Frequenzkammquellen werden demonstriert. Die Erzeugung von Frequenzkämmen durch Dauerstrichlaser in Kombination mit elektro-optischen Modulatoren ist dabei ein besonders vielversprechender Ansatz. Zwar werden dabei üblicherweise kleinere optische Bandbreiten erzielt als bei der weitverbreiteten Frequenzkammerzeugung durch modengekoppelte Ultrakurzpulslaser oder durch Kerr-Nichtlinearitäten, aber es bieten sich andere wertvolle Vorteile an. So erlaubt die elektro-optische Kammerzeugung beispielsweise eine nahezu freie Wahl der Mittenfrequenz durch Auswahl oder Einstellung des Dauerstrichlasers. Durch den Einsatz verschiedener Laser können sogar gleichzeitig mehrere Frequenzkämme unterschiedlicher Mittenfrequenz erzeugt werden, was sich in verschiedenen Anwendungen vorteilhaft ausnutzen lässt. Dies wird in dieser Arbeit anhand zweier Beispiele aus der optischen Messtechnik demonstriert, siehe Kapitel 3 und Kapitel 5. Der Kammlinienabstand ist bei elektro-optisch erzeugten Kämmen definiert durch die elektronisch erzeugte Modulationsfrequenz. Das bietet mehrere Vorteile: Der Linienabstand ist frei einstellbar, sehr stabil, und einfach rückführbar auf einen Frequenzstandard. Der Verzicht auf einen optischen Resonator macht die Kammquelle robust gegenüber Umwelteinflüssen wie z.B. Vibration. Zudem machen Fortschritte bei der Entwicklung von hochintegrierten optischen Modulatoren auf Silizium eine Umsetzung der Frequenzkammquellen in Siliziumphotonik möglich. Die erste derartige Komponente und deren Anwendung in der optischen Telekommunikation wird in Kapitel 6 vorgestellt. Photonische Integration in Silizium bietet außerdem das Potential, miniaturisierte optische Systeme mit vielfältiger Funktionalität zu realisieren. Solche Systeme zeichnen sich durch extrem kleinen Platzbedarf, Kompatibilität mit hochentwickelten und massentauglichen Fertigungstechniken aus der CMOS-(Complementary Metal-Oxide-Semiconductor)-Mikroelektronik und durch die Möglichkeit zur Kointegration elektronischer Schaltungen auf demselben Chip aus. Die hohe Integrationsdichte eröffnet die Perspektive, optische Systeme z.B. für Sensorik tief in industriellen Maschinen zu integrieren. Kapitel 1 gibt eine kurze Einführung in optische Frequenzkämme und deren vielfältige Anwendungen in Wissenschaft und Technik. Der Stand der Technik zu unterschiedlichen Ansätzen zur Frequenzkammerzeugung und deren jeweiligen Eigenschaften werden diskutiert, und es werden die Vorzüge der in dieser Arbeit verwendeten elektro-optischen Frequenzkämme erläutert. Des Weiteren wird die Integration photonischer Systeme und Bauelemente auf Silizium vorgestellt. Schließlich werden die sich ergebenden Vorteile bei der Anwendung in optischer Messtechnik und optischer Telekommunikation diskutiert. Kapitel 2 fasst die physikalischen Grundlagen der Arbeit zusammen. Die Funktionsprinzipien elektro-optischer Modulatoren werden beschrieben sowie deren Anwendung zur Erzeugung von Frequenzkämmen. Zusätzlich wird das Konzept sogenannter synthetischer Wellenlängen eingeführt, welches in der optischen Distanzmesstechnik Anwendung findet. Kapitel 3 beschreibt ein Prinzip zur Distanzmessung mittels zweier elektro-optischer Frequenzkämme zur kontaktlosen Vermessung technischer Objekte. Die Leistungsfähigkeit des Ansatzes wird durch eine Erfassung von ausgedehnten Oberflächenprofilen in Form von Punktwolken demonstriert, wobei eine verhältnismäßig kurze Messzeit von 9.1 µs pro Punkt ausreichend ist. Dabei wird der faseroptisch angebundene Sensorkopf von einer Koordinatenmessmaschine über die Oberfläche bewegt. Durch Temperaturschwankungen im faser-optischen Aufbau ausgelöste Messabweichungen werden durch die Messung mit Lasern unterschiedlicher Emissionsfrequenz kompensiert. Kapitel 4 beschreibt ein integriert-optisches System auf Silizium zur frequenzkamm-basierten Distanzmessung. Das System beinhaltet das zum Heterodynempfang genutzte Interferometer inklusive eines einstellbaren Leistungsteilers sowie der Photodetektoren. Der Platzbedarf aller Komponenten auf dem Siliziumchip beträgt 0.25 mm2^{2}. Der Chip wird in dem in Kapitel 3 eingeführten Messverfahren eingesetzt, wobei Distanzmessungen mit Root-mean-square-Fehlern von 3.2 µm und 14 µs Erfassungszeit demonstriert werden. Kapitel 5 stellt ein Distanzmesssystem vor, bei welchem eine grobauflösende Phasenlaufzeitmessung mit großem Eindeutigkeitsbereich mit einer interferometrischen Distanzmessung mit synthetischen Wellenlängen zur Verfeinerung der Messgenauigkeit kombiniert wird. Die durch vier Laser erzeugten synthetischen Wellenlängen bzw. die Frequenzabstände der Laser werden zeitgleich zur Distanzmessung mittels eines auf elektro-optischer Modulation basierenden Verfahrens vermessen. Durch diese Referenzierung wird der Einsatz freilaufender Laser ohne Wellenlängenstabilisierung ermöglicht. Es werden Messraten von 300 Hz und Genauigkeiten im Mikrometerbereich erreicht. Kapitel 6 beschreibt die weltweit erste Demonstration elektro-optischer Frequenzkammquellen auf Silizium und die hierzu genutzte hybride Materialplattform aus Silizium und organischen Materialien (Silicon-Organic Hybrid, SOH). Spektral flache Frequenzkämme mit 7 Linien innerhalb von 2 dB und Linienabständen von 25 GHz und 40 GHz werden erzeugt. Die praktische Anwendbarkeit solcher Frequenzkämme wird durch eine Reihe von Datenübertragungexperimenten demonstriert. Die einzelnen Kammlinien dienen als Träger für Daten in einem Wellenlängenmultiplex-System, womit eine spektral effiziente Datenübertragung mit Datenraten von über 1 Tbit/s über Distanzen von bis zu 300 km demonstriert wird. Kapitel 7 fasst die Ergebnisse der vorliegenden Arbeit zusammen und gibt einen Ausblick auf die Möglichkeiten, die sich durch weiterentwickelte Kammquellen und fortschreitende Möglichkeiten in der photonischen Integration ergeben

    Silicon-organic hybrid devices for high-speed electro-optic signal processing

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    Among the various elements of the silicon photonics platform, electro-optic IQ modulators play an important role. In this book, silicon-organic hybrid (SOH) integration is used to realize electro-optic IQ modulators for complex signal processing. Leveraging the high nonlinearity of organic materials, SOH IQ modulators provide low energy consumption for high-speed data transmission and frequency shifting. Furthermore, the device design is adapted for commercial foundry processes
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