944 resultados para Convergence (Telecommunication)


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Ce mémoire s’intéresse à la relation entre des archéologues et des Atikamekw de la communauté de Wemotaci, située en Haute-Mauricie. Cette relation est abordée sous l’angle de la transmission des savoirs. En effet, archéologues et Amérindiens possèdent des systèmes de connaissances distincts et c’est de la dynamique de rencontre entre ces deux corpus de savoirs dont il est ici question. Contrairement à ce que décrit généralement la littérature, les différences de conceptions à divers niveaux comme le rapport au passé, au territoire ou à l’objet n’empêchent pas une reconnaissance mutuelle des savoirs entre les archéologues et les Atikamekw. Chacun des groupes acquiert et intègre même les connaissances de l’autre selon ses préoccupations et ses besoins. Cette transmission des connaissances ne se limite pas à l’échange entre les archéologues et les Atikamekw, elle a également eu lieu entre les différentes générations amérindiennes. À travers une histoire où se conjuguent colonisation, éducation et sédentarisation, les savoirs des Atikamekw se trouvent au cœur du changement. C’est ainsi que la pratique archéologique peut devenir un moyen pour mettre en valeur des connaissances autochtones en permettant une rencontre intergénérationnelle sur un terrain de fouilles archéologiques. Enfin, dans un contexte où les nations autochtones désirent participer à tout ce qui concerne la protection de leur patrimoine culturel, l’archéologie peut également devenir un outil de réappropriation culturelle.

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Travail réalisé à l’EBSI, Université de Montréal, sous la direction de M. Yvon Lemay dans le cadre du cours SCI6111 – Politique de gestion des archives, à l'automne 2010.

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Ce mémoire est consacré à la production culturelle en contexte de convergence au Québec. Dans le premier chapitre, je démontre comment différents éléments en sont venus à façonner la production culturelle contemporaine québécoise et comment la convergence médiatique est susceptible d’orienter la production et la parution de textes culturels. J'y expose aussi les bases d'une approche de la circulation par le biais de laquelle je propose de construire théoriquement mon objet d'étude. Le deuxième chapitre est consacré à la démarche méthodologique qui a présidé ma recherche. J'y présente d'abord le terrain de l'analyse, soit la téléréalité Occupation Double, en tant que phénomène intertextuel dont j'étudie les diverses configurations sur et à travers les principales plates-formes de Quebecor. Je poursuis en décrivant la constitution du corpus de textes à l'étude ainsi que les principaux paramètres d'analyse inspirés de la théorie de la circulation et de la méthode intertextuelle privilégiée. Le troisième chapitre rend compte des résultats d’analyse, présentant deux circuits médiatiques m’ayant permis d’observer les possibilités d’émergence de personnages construits autour des concurrents de la téléréalité Occupation Double. J’initie par la suite une piste de réflexion sur la création de zones d’intimité performées par ces mêmes personnages. En conclusion, je fais un retour sur l’évolution de mes recherches et constats et propose une réflexion sur l’intimité performée et les genres possiblement pressentis pour l’endosser.

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Mémoire numérisé par la Division de la gestion de documents et des archives de l'Université de Montréal

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Le développement exponentiel des réseaux informatiques a largement contribué à augmenter le volume des renseignements personnels disponibles et à remplacer les méthodes désuètes de collecte des renseignements par des méthodes plus rapides et plus efficaces. La vie privée et le contrôle sur les informations personnelles, tels que nous les connaissions il y a quelques décennies, sont des notions difficilement compatibles avec la société ouverte et commerciale comme la nôtre. Face à cette nouvelle réalité menaçante pour les droits et libertés de l’homme, il est essentiel de donner un cadre technique et légal stable qui garantisse une protection adéquate de ces données personnelles. Pour rester dans le marché ou bénéficier de la confiance des individus, les entreprises et les gouvernements doivent posséder une infrastructure de sécurité efficace. Cette nouvelle donne a tendance à devenir plus qu’une règle de compétitivité, elle se transforme en une authentique obligation légale de protéger les données à caractère personnel par des mesures de sécurité adéquates et suffisantes. Ce mémoire aborde justement ces deux points, soit l’étude du développement d’une obligation légale de sécurité et l’encadrement juridique de la mise en place d’un programme de sécurisation des données personnelles par des mesures de sécurités qui respectent les standards minimaux imposés par les textes législatifs nationaux et internationaux.

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Dans le cadre d’une sociologie des organisations portant sur les liens entre organisations télévisuelles et environnement, la présente thèse a pour objectif de cerner les modalités du développement récent de la télévision au Québec en le comparant à celui de la Belgique francophone et de la Suisse. Une telle comparaison repose sur un principe méthodologique simple: on cerne d’autant mieux la réalité que l’on étudie si on peut la comparer à une réalité équivalente d’autres sociétés. En s’appuyant sur des théories de développement organisationnel reliées au courant néo-fonctionnaliste et en adaptant des « histoires de cas » d’études organisationnelles à la réalité télévisuelle des années 90 et 2000, le chercheur a mis au point une grille de classification des données permettant d’étudier les composantes du développement de la télévision dans trois « petites » sociétés industrialisées. Dans un premier temps, il a pu constater une augmentation très importante du nombre de chaînes de télévision par rapport à ce qu’il était dans les années 50 à 70, le tout encadré par les autorités réglementaires en place. Par la suite, dans chacune de ces trois sociétés et sur une période de vingt-cinq ans, il a pu préciser les interactions et échanges entre organisations télévisuelles et environnement lesquels ont été, selon les cas, harmonieux, difficiles, voire même conflictuels. Après avoir comparé les modalités d’une telle augmentation entre les trois sociétés, le chercheur a pu constater une convergence de surface. On note bien quelques similitudes entre les trois sociétés, mais, surtout, chacune d’entre elles est restée sur son quant-à-soi. En Suisse, l’importance accordée au consensus social a favorisé un développement équilibré de l’augmentation des chaines. En Belgique, pays aux divisions profondes constamment réaffirmées, les oppositions ont permis, malgré tout, l’édification d’un ensemble audiovisuel relativement stable. Au Québec, avec une augmentation exponentielle du nombre de chaines, on a assisté à un véritable surdéveloppement de la télévision encouragé et planifié par les autorités gouvernementales canadiennes en réaction à un supposé envahissement culturel américain. Le CRTC, la régie des ondes canadiennes, a pesé de tout son poids pour favoriser l’augmentation du contenu canadien et de la production locale. Par ailleurs, cette augmentation s’est faite avec des ressources limitées. On en fait trop avec trop peu. C’est ce qui permettrait d’expliquer la baisse de qualité de la télévision québécoise contemporaine. Comme élément de solution aux problèmes que la télévision québécoise connait présentement, il faudrait considérer cette dernière pour ce qu’elle est véritablement: une petite télévision dans un univers industriellement hautement développé. Si une telle conception est très bien acceptée aussi bien en Belgique qu’en Suisse, elle ne l’est pas au Québec

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Rapport de recherche présenté à la Faculté des arts et des sciences en vue de l'obtention du grade de Maîtrise en sciences économiques.

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Microwave ceramic dielectric materials Ca5Nb2TiO12 and Ca5Ta2TiO12 have been prepared by a conventional solid-state ceramic process. The structure was studied by X-ray diffraction and the dielectric properties were characterized at microwave frequencies. The ceramics posses a relatively high dielectric constant, very low dielectric loss (Q5 x f > 30000GHz) and small temperature variation of resonant frequency. These materials are potential candidates for dielectric resonator applications in microwave integrated circuits. [DOI: 10. 1 143/JJAP.41.3834]

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The scope of this work is the fundamental growth, tailoring and characterization of self-organized indium arsenide quantum dots (QDs) and their exploitation as active region for diode lasers emitting in the 1.55 µm range. This wavelength regime is especially interesting for long-haul telecommunications as optical fibers made from silica glass have the lowest optical absorption. Molecular Beam Epitaxy is utilized as fabrication technique for the quantum dots and laser structures. The results presented in this thesis depict the first experimental work for which this reactor was used at the University of Kassel. Most research in the field of self-organized quantum dots has been conducted in the InAs/GaAs material system. It can be seen as the model system of self-organized quantum dots, but is not suitable for the targeted emission wavelength. Light emission from this system at 1.55 µm is hard to accomplish. To stay as close as possible to existing processing technology, the In(AlGa)As/InP (100) material system is deployed. Depending on the epitaxial growth technique and growth parameters this system has the drawback of producing a wide range of nano species besides quantum dots. Best known are the elongated quantum dashes (QDash). Such structures are preferentially formed, if InAs is deposited on InP. This is related to the low lattice-mismatch of 3.2 %, which is less than half of the value in the InAs/GaAs system. The task of creating round-shaped and uniform QDs is rendered more complex considering exchange effects of arsenic and phosphorus as well as anisotropic effects on the surface that do not need to be dealt with in the InAs/GaAs case. While QDash structures haven been studied fundamentally as well as in laser structures, they do not represent the theoretical ideal case of a zero-dimensional material. Creating round-shaped quantum dots on the InP(100) substrate remains a challenging task. Details of the self-organization process are still unknown and the formation of the QDs is not fully understood yet. In the course of the experimental work a novel growth concept was discovered and analyzed that eases the fabrication of QDs. It is based on different crystal growth and ad-atom diffusion processes under supply of different modifications of the arsenic atmosphere in the MBE reactor. The reactor is equipped with special valved cracking effusion cells for arsenic and phosphorus. It represents an all-solid source configuration that does not rely on toxic gas supply. The cracking effusion cell are able to create different species of arsenic and phosphorus. This constitutes the basis of the growth concept. With this method round-shaped QD ensembles with superior optical properties and record-low photoluminescence linewidth were achieved. By systematically varying the growth parameters and working out a detailed analysis of the experimental data a range of parameter values, for which the formation of QDs is favored, was found. A qualitative explanation of the formation characteristics based on the surface migration of In ad-atoms is developed. Such tailored QDs are finally implemented as active region in a self-designed diode laser structure. A basic characterization of the static and temperature-dependent properties was carried out. The QD lasers exceed a reference quantum well laser in terms of inversion conditions and temperature-dependent characteristics. Pulsed output powers of several hundred milli watt were measured at room temperature. In particular, the lasers feature a high modal gain that even allowed cw-emission at room temperature of a processed ridge wave guide device as short as 340 µm with output powers of 17 mW. Modulation experiments performed at the Israel Institute of Technology (Technion) showed a complex behavior of the QDs in the laser cavity. Despite the fact that the laser structure is not fully optimized for a high-speed device, data transmission capabilities of 15 Gb/s combined with low noise were achieved. To the best of the author`s knowledge, this renders the lasers the fastest QD devices operating at 1.55 µm. The thesis starts with an introductory chapter that pronounces the advantages of optical fiber communication in general. Chapter 2 will introduce the fundamental knowledge that is necessary to understand the importance of the active region`s dimensions for the performance of a diode laser. The novel growth concept and its experimental analysis are presented in chapter 3. Chapter 4 finally contains the work on diode lasers.

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High-speed semiconductor lasers are an integral part in the implemen- tation of high-bit-rate optical communications systems. They are com- pact, rugged, reliable, long-lived, and relatively inexpensive sources of coherent light. Due to the very low attenuation window that exists in the silica based optical fiber at 1.55 μm and the zero dispersion point at 1.3 μm, they have become the mainstay of optical fiber com- munication systems. For the fabrication of lasers with gratings such as, distributed bragg reflector or distributed feedback lasers, etching is the most critical step. Etching defines the lateral dimmensions of the structure which determines the performance of optoelectronic devices. In this thesis studies and experiments were carried out about the exist- ing etching processes for InP and a novel dry etching process was de- veloped. The newly developed process was based on Cl2/CH4/H2/Ar chemistry and resulted in very smooth surfaces and vertical side walls. With this process the grating definition was significantly improved as compared to other technological developments in the respective field. A surface defined grating definition approach is used in this thesis work which does not require any re-growth steps and makes the whole fabrication process simpler and cost effective. Moreover, this grating fabrication process is fully compatible with nano-imprint lithography and can be used for high throughput low-cost manufacturing. With usual etching techniques reported before it is not possible to etch very deep because of aspect ratio dependent etching phenomenon where with increasing etch depth the etch rate slows down resulting in non-vertical side walls and footing effects. Although with our de- veloped process quite vertical side walls were achieved but footing was still a problem. To overcome the challenges related to grating defini- tion and deep etching, a completely new three step gas chopping dry etching process was developed. This was the very first time that a time multiplexed etching process for an InP based material system was demonstrated. The developed gas chopping process showed extra ordinary results including high mask selectivity of 15, moderate etch- ing rate, very vertical side walls and a record high aspect ratio of 41. Both the developed etching processes are completely compatible with nano imprint lithography and can be used for low-cost high-throughput fabrication. A large number of broad area laser, ridge waveguide laser, distributed feedback laser, distributed bragg reflector laser and coupled cavity in- jection grating lasers were fabricated using the developed one step etch- ing process. Very extensive characterization was done to optimize all the important design and fabrication parameters. The devices devel- oped have shown excellent performance with a very high side mode suppression ratio of more than 52 dB, an output power of 17 mW per facet, high efficiency of 0.15 W/A, stable operation over temperature and injected currents and a threshold current as low as 30 mA for almost 1 mm long device. A record high modulation bandwidth of 15 GHz with electron-photon resonance and open eye diagrams for 10 Gbps data transmission were also shown.

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In this work investigation of the QDs formation and the fabrication of QD based semiconductor lasers for telecom applications are presented. InAs QDs grown on AlGaInAs lattice matched to InP substrates are used to fabricate lasers operating at 1.55 µm, which is the central wavelength for far distance data transmission. This wavelength is used due to its minimum attenuation in standard glass fibers. The incorporation of QDs in this material system is more complicated in comparison to InAs QDs in the GaAs system. Due to smaller lattice mismatch the formation of circular QDs, elongated QDs and quantum wires is possible. The influence of the different growth conditions, such as the growth temperature, beam equivalent pressure, amount of deposited material on the formation of the QDs is investigated. It was already demonstrated that the formation process of QDs can be changed by the arsenic species. The formation of more round shaped QDs was observed during the growth of QDs with As2, while for As4 dash-like QDs. In this work only As2 was used for the QD growth. Different growth parameters were investigated to optimize the optical properties, like photoluminescence linewidth, and to implement those QD ensembles into laser structures as active medium. By the implementation of those QDs into laser structures a full width at half maximum (FWHM) of 30 meV was achieved. Another part of the research includes the investigation of the influence of the layer design of lasers on its lasing properties. QD lasers were demonstrated with a modal gain of more than 10 cm-1 per QD layer. Another achievement is the large signal modulation with a maximum data rate of 15 Gbit/s. The implementation of optimized QDs in the laser structure allows to increase the modal gain up to 12 cm-1 per QD layer. A reduction of the waveguide layer thickness leads to a shorter transport time of the carriers into the active region and as a result a data rate up to 22 Gbit/s was achieved, which is so far the highest digital modulation rate obtained with any 1.55 µm QD laser. The implementation of etch stop layers into the laser structure provide the possibility to fabricate feedback gratings with well defined geometries for the realization of DFB lasers. These DFB lasers were fabricated by using a combination of dry and wet etching. Single mode operation at 1.55 µm with a high side mode suppression ratio of 50 dB was achieved.

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One objective of artificial intelligence is to model the behavior of an intelligent agent interacting with its environment. The environment's transformations can be modeled as a Markov chain, whose state is partially observable to the agent and affected by its actions; such processes are known as partially observable Markov decision processes (POMDPs). While the environment's dynamics are assumed to obey certain rules, the agent does not know them and must learn. In this dissertation we focus on the agent's adaptation as captured by the reinforcement learning framework. This means learning a policy---a mapping of observations into actions---based on feedback from the environment. The learning can be viewed as browsing a set of policies while evaluating them by trial through interaction with the environment. The set of policies is constrained by the architecture of the agent's controller. POMDPs require a controller to have a memory. We investigate controllers with memory, including controllers with external memory, finite state controllers and distributed controllers for multi-agent systems. For these various controllers we work out the details of the algorithms which learn by ascending the gradient of expected cumulative reinforcement. Building on statistical learning theory and experiment design theory, a policy evaluation algorithm is developed for the case of experience re-use. We address the question of sufficient experience for uniform convergence of policy evaluation and obtain sample complexity bounds for various estimators. Finally, we demonstrate the performance of the proposed algorithms on several domains, the most complex of which is simulated adaptive packet routing in a telecommunication network.

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"Expectation-Maximization'' (EM) algorithm and gradient-based approaches for maximum likelihood learning of finite Gaussian mixtures. We show that the EM step in parameter space is obtained from the gradient via a projection matrix $P$, and we provide an explicit expression for the matrix. We then analyze the convergence of EM in terms of special properties of $P$ and provide new results analyzing the effect that $P$ has on the likelihood surface. Based on these mathematical results, we present a comparative discussion of the advantages and disadvantages of EM and other algorithms for the learning of Gaussian mixture models.

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Recent developments in the area of reinforcement learning have yielded a number of new algorithms for the prediction and control of Markovian environments. These algorithms, including the TD(lambda) algorithm of Sutton (1988) and the Q-learning algorithm of Watkins (1989), can be motivated heuristically as approximations to dynamic programming (DP). In this paper we provide a rigorous proof of convergence of these DP-based learning algorithms by relating them to the powerful techniques of stochastic approximation theory via a new convergence theorem. The theorem establishes a general class of convergent algorithms to which both TD(lambda) and Q-learning belong.