18 research outputs found

    Communication coopérative, codage distribué, réseaux sans fil de relais

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    With the rapid growth of wireless technologies, devices and mobile applications, the quest of high throughput and omnipresent connectivity in wireless networks increases rapidly as well. It is well known that cooperation increases significantly the spectral efficiency (coding gain) and the reliability (diversity gain) of the transmission between the nodes. The concept of cooperation in wireless relays network is still one of the most active research topics in wireless communication, scientists are still searching for the optimal cooperation strategies that make the possible gains at the maximum. Cooperation results when nodes in a network share their power and/or bandwidth resources to mutually enhance their transmissions and receptions. In wireless relay networks, the relays are special nodes that are used to improve the quality of communication between the source nodes and the destination nodes. In particular, the use of relays guarantees more efficient and reliable networks. In this work, we focus on a special wireless relay network where a set of sources (mobiles) want to communicate their messages to a common destination (base station) with the help of a set of relaysAt the beginning of this work, we focused on the cooperative scheme where the relay, after a fixed portion of time, tries to understand (decode) the source’s messages and forwards helpful signals for the correctly decoded ones. One of the limitations of the previous cooperative scheme is the fixe listening time of the relays, which cannot be adapted to the quality of the instantaneous sources-relays links. To solve this problem we propose a more advanced cooperative scheme where the listening time of each relay can be dynamic and not fixed in advanced. So the relay that has strong links with the sources can start cooperating earlier than the other relays with weak links. Currently, we are investigating other directions of possible improvements, for example, how can we use feedback signals to improve the efficiency of the network.Avec la croissance rapide des appareils et des applications mobiles, les besoins en dĂ©bit et en connectivitĂ© dans les rĂ©seaux sans fil augmentent rapidement. Il est prouvĂ© que les communications coopĂ©ratives peuvent augmenter significativement l’efficacitĂ© spectrale et la fiabilitĂ© des transmissions entre les nƓuds extrĂ©maux. Le concept de coopĂ©ration dans un rĂ©seau sans fil compte parmi les sujets de recherche les plus actifs en tĂ©lĂ©communications, le but Ă©tant d'identifier les stratĂ©gies de coopĂ©ration qui maximiseraient les gains en efficacitĂ© spectrale et en puissance d'Ă©mission. Pour coopĂ©rer, les nƓuds du rĂ©seau partagent leurs ressources (Ă©nergie, bande de frĂ©quence, etc. ...) pour amĂ©liorer mutuellement leurs transmissions et leurs rĂ©ceptions. Dans les rĂ©seaux sans fil avec relais, les relais sont des nƓuds dĂ©diĂ©s Ă  amĂ©liorer la qualitĂ© de la communication entre les nƓuds sources et destination.Dans la premiĂšre partie de la thĂšse, nous nous concentrons sur un rĂ©seau sans fil avec relais spĂ©cifique oĂč l'ensemble de sources (mobiles) veulent communiquer leurs messages Ă  une destination commune (station de base) avec l'aide d'un ensemble de relais (contexte cellulaire, sens montant). Nous Ă©tudions, sur les plans thĂ©orique et pratique, un schĂ©ma coopĂ©ratif dans lequel les relais, aprĂšs une durĂ©e d'Ă©coute fixĂ©e a priori, essayent de dĂ©coder les messages des sources et commencent Ă  transmettre des signaux utiles pour ceux qui sont dĂ©codĂ©s correctement. Ces signaux utiles sont le rĂ©sultat d'un codage canal-rĂ©seau conjoint.Une des limitations du systĂšme coopĂ©ratif prĂ©cĂ©dent est prĂ©cisĂ©ment que le temps d'Ă©coute des relais est figĂ© et ne peut pas ĂȘtre adaptĂ© Ă  la qualitĂ© fluctuante (alĂ©atoire) des liens instantanĂ©s sources-relais. Pour pallier cette difficultĂ©, nous proposons et analysons, dans une seconde partie de la thĂšse, un schĂ©ma de coopĂ©ration plus avancĂ© oĂč le temps d'Ă©coute de chaque relais peut ĂȘtre dynamique. Dans ces conditions, un relais bĂ©nĂ©ficiant d'une meilleure qualitĂ© de rĂ©ception des sources peut commencer Ă  coopĂ©rer plus tĂŽt que d'autres relais ayant une qualitĂ© de rĂ©ception moindre.Enfin, dans la troisiĂšme et derniĂšre partie de la thĂšse, nous considĂ©rons la prĂ©sence d'une information de retour limitĂ©e (limited feedback) entre la destination et les sources et les relais, et tentons de caractĂ©riser l'efficacitĂ© spectrale d'un tel systĂšme

    Spatial Modulation for Generalized MIMO:Challenges, Opportunities, and Implementation

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    A key challenge of future mobile communication research is to strike an attractive compromise between wireless network's area spectral efficiency and energy efficiency. This necessitates a clean-slate approach to wireless system design, embracing the rich body of existing knowledge, especially on multiple-input-multiple-output (MIMO) technologies. This motivates the proposal of an emerging wireless communications concept conceived for single-radio-frequency (RF) large-scale MIMO communications, which is termed as SM. The concept of SM has established itself as a beneficial transmission paradigm, subsuming numerous members of the MIMO system family. The research of SM has reached sufficient maturity to motivate its comparison to state-of-the-art MIMO communications, as well as to inspire its application to other emerging wireless systems such as relay-aided, cooperative, small-cell, optical wireless, and power-efficient communications. Furthermore, it has received sufficient research attention to be implemented in testbeds, and it holds the promise of stimulating further vigorous interdisciplinary research in the years to come. This tutorial paper is intended to offer a comprehensive state-of-the-art survey on SM-MIMO research, to provide a critical appraisal of its potential advantages, and to promote the discussion of its beneficial application areas and their research challenges leading to the analysis of the technological issues associated with the implementation of SM-MIMO. The paper is concluded with the description of the world's first experimental activities in this vibrant research field

    Cooperative Radio Communications for Green Smart Environments

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    The demand for mobile connectivity is continuously increasing, and by 2020 Mobile and Wireless Communications will serve not only very dense populations of mobile phones and nomadic computers, but also the expected multiplicity of devices and sensors located in machines, vehicles, health systems and city infrastructures. Future Mobile Networks are then faced with many new scenarios and use cases, which will load the networks with different data traffic patterns, in new or shared spectrum bands, creating new specific requirements. This book addresses both the techniques to model, analyse and optimise the radio links and transmission systems in such scenarios, together with the most advanced radio access, resource management and mobile networking technologies. This text summarises the work performed by more than 500 researchers from more than 120 institutions in Europe, America and Asia, from both academia and industries, within the framework of the COST IC1004 Action on "Cooperative Radio Communications for Green and Smart Environments". The book will have appeal to graduates and researchers in the Radio Communications area, and also to engineers working in the Wireless industry. Topics discussed in this book include: ‱ Radio waves propagation phenomena in diverse urban, indoor, vehicular and body environments‱ Measurements, characterization, and modelling of radio channels beyond 4G networks‱ Key issues in Vehicle (V2X) communication‱ Wireless Body Area Networks, including specific Radio Channel Models for WBANs‱ Energy efficiency and resource management enhancements in Radio Access Networks‱ Definitions and models for the virtualised and cloud RAN architectures‱ Advances on feasible indoor localization and tracking techniques‱ Recent findings and innovations in antenna systems for communications‱ Physical Layer Network Coding for next generation wireless systems‱ Methods and techniques for MIMO Over the Air (OTA) testin

    Cooperative Radio Communications for Green Smart Environments

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    The demand for mobile connectivity is continuously increasing, and by 2020 Mobile and Wireless Communications will serve not only very dense populations of mobile phones and nomadic computers, but also the expected multiplicity of devices and sensors located in machines, vehicles, health systems and city infrastructures. Future Mobile Networks are then faced with many new scenarios and use cases, which will load the networks with different data traffic patterns, in new or shared spectrum bands, creating new specific requirements. This book addresses both the techniques to model, analyse and optimise the radio links and transmission systems in such scenarios, together with the most advanced radio access, resource management and mobile networking technologies. This text summarises the work performed by more than 500 researchers from more than 120 institutions in Europe, America and Asia, from both academia and industries, within the framework of the COST IC1004 Action on "Cooperative Radio Communications for Green and Smart Environments". The book will have appeal to graduates and researchers in the Radio Communications area, and also to engineers working in the Wireless industry. Topics discussed in this book include: ‱ Radio waves propagation phenomena in diverse urban, indoor, vehicular and body environments‱ Measurements, characterization, and modelling of radio channels beyond 4G networks‱ Key issues in Vehicle (V2X) communication‱ Wireless Body Area Networks, including specific Radio Channel Models for WBANs‱ Energy efficiency and resource management enhancements in Radio Access Networks‱ Definitions and models for the virtualised and cloud RAN architectures‱ Advances on feasible indoor localization and tracking techniques‱ Recent findings and innovations in antenna systems for communications‱ Physical Layer Network Coding for next generation wireless systems‱ Methods and techniques for MIMO Over the Air (OTA) testin

    MIMO Systems

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    In recent years, it was realized that the MIMO communication systems seems to be inevitable in accelerated evolution of high data rates applications due to their potential to dramatically increase the spectral efficiency and simultaneously sending individual information to the corresponding users in wireless systems. This book, intends to provide highlights of the current research topics in the field of MIMO system, to offer a snapshot of the recent advances and major issues faced today by the researchers in the MIMO related areas. The book is written by specialists working in universities and research centers all over the world to cover the fundamental principles and main advanced topics on high data rates wireless communications systems over MIMO channels. Moreover, the book has the advantage of providing a collection of applications that are completely independent and self-contained; thus, the interested reader can choose any chapter and skip to another without losing continuity

    D 3. 3 Final performance results and consolidated view on the most promising multi -node/multi -antenna transmission technologies

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    This document provides the most recent updates on the technical contributions and research challenges focused in WP3. Each Technology Component (TeC) has been evaluated under possible uniform assessment framework of WP3 which is based on the simulation guidelines of WP6. The performance assessment is supported by the simulation results which are in their mature and stable state. An update on the Most Promising Technology Approaches (MPTAs) and their associated TeCs is the main focus of this document. Based on the input of all the TeCs in WP3, a consolidated view of WP3 on the role of multinode/multi-antenna transmission technologies in 5G systems has also been provided. This consolidated view is further supported in this document by the presentation of the impact of MPTAs on METIS scenarios and the addressed METIS goals.Aziz, D.; Baracca, P.; De Carvalho, E.; Fantini, R.; Rajatheva, N.; Popovski, P.; SĂžrensen, JH.... (2015). D 3. 3 Final performance results and consolidated view on the most promising multi -node/multi -antenna transmission technologies. http://hdl.handle.net/10251/7675

    Emulation of Narrowband Powerline Data Transmission Channels and Evaluation of PLC Systems

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    This work proposes advanced emulation of the physical layer behavior of NB-PLC channels and the application of a channel emulator for the evaluation of NB-PLC systems. In addition, test procedures and reference channels are proposed to improve efficiency and accuracy in the system evaluation and classification. This work shows that the channel emulator-based solution opens new ways toward flexible, reliable and technology-independent performance assessment of PLC modems

    Improving the Performance of Wireless Links Using Hybrid ARQ Based on RSM and Turbo Codes

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