7 research outputs found

    Telecommunication Systems

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    This book is based on both industrial and academic research efforts in which a number of recent advancements and rare insights into telecommunication systems are well presented. The volume is organized into four parts: "Telecommunication Protocol, Optimization, and Security Frameworks", "Next-Generation Optical Access Technologies", "Convergence of Wireless-Optical Networks" and "Advanced Relay and Antenna Systems for Smart Networks." Chapters within these parts are self-contained and cross-referenced to facilitate further study

    Photonic Millimeter Wave Signal Generation and Transmission Over Hybrid Links in 5G Communication Networks

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    [ES] El est谩ndar de quinta generaci贸n (5G) es la clave potencial para satisfacer el aumento exponencial en la demanda de nuevas aplicaciones, servicios y usuarios. La tecnolog铆a 5G ofrecer谩 una latencia extremadamente baja de 1 ms, una velocidad m谩xima de datos de 10 Gbit/s, una alta densidad de conexi贸n de hasta 106 dispositivos/km2 y permitir谩 una alta movilidad de los dispositivos de hasta 500 km/h. En esta Tesis se proponen varias soluciones basadas en tecnolog铆as habilitadoras para el despliegue de redes 5G. La arquitectura de la red de acceso de radio en la nube (C-RAN) se emplea junto con las t茅cnicas de Fot贸nica de Microondas como una soluci贸n prometedora para generar y transmitir se帽ales de ondas milim茅tricas (mmW) en la pr贸xima generaci贸n de comunicaciones m贸viles. La tecnolog铆a radio sobre fibra (RoF) ha demostrado ser una buena opci贸n para enfrentarse al desaf铆o de la distribuci贸n inal谩mbrica mmW debido a la gran distancia de transmisi贸n, el gran ancho de banda y la inmunidad a las interferencias electromagn茅ticas, entre algunas de las principales ventajas. Adem谩s, esta tecnolog铆a se puede ampliar con comunicaciones 贸pticas de espacio libre (FSO) en sistemas de radio sobre FSO (RoFSO) en las redes inal谩mbricas. En esta Tesis, las se帽ales mmW se generan fot贸nicamente mediante modulaci贸n externa de doble banda lateral con supresi贸n de portadora (CS-DSB) y se distribuyen a trav茅s de enlaces fronthaul h铆bridos RoF/FSO. Adem谩s, la generaci贸n m煤ltiple de se帽ales permite la distribuci贸n reconfigurable en canales multiplexados por divisi贸n de longitud de onda (WDM) desde una oficina central hasta las estaciones base, y se ha evaluado el impacto de las turbulencias producidas en los canales FSO sobre las se帽ales mmW generadas fot贸nicamente en t茅rminos de fluctuaciones de potencia y ruido de fase de la se帽al. Se propone la t茅cnica de modulaci贸n directa de un l谩ser (DML) como soluci贸n principal para la transmisi贸n de datos a trav茅s de enlaces 贸pticos h铆bridos que emplean un esquema de multiplicaci贸n de frecuencias 贸pticas, es decir, CS-DSB, para la generaci贸n de se帽ales de mmW. En concreto, se eval煤an te贸rica y experimentalmente los esquemas de generaci贸n fot贸nica local y remoto de se帽ales mmW y se comparan para su implementaci贸n pr谩ctica en la red frontal de la C-RAN y, adem谩s, se estudia experimentalmente el impacto de la distorsi贸n arm贸nica y de la intermodulaci贸n en la transmisi贸n de datos. Igualmente, con el fin de obtener la capacidad que ofrece el DML en t茅rminos de ancho de banda, tambi茅n se presenta una evaluaci贸n te贸rica y experimental del efecto de la dispersi贸n de la fibra y el chirp sobre diferentes anchos de banda de se帽ales de M-modulaci贸n de amplitud en cuadratura (QAM). No obstante, la Tesis tambi茅n incluye otro enfoque para la transmisi贸n de datos basado en el uso de otro modulador externo. En este caso, la demostraci贸n experimental de la generaci贸n de se帽ales 贸pticas empleando CS-DSB y la transmisi贸n de se帽ales a trav茅s de fibra h铆brida y red frontal FSO se completa con un enlace de antena que permite transmitir se帽ales 5G 64/256-QAM. La investigaci贸n realizada con los sistemas CS-DSB y DSB tambi茅n permiten comparar la robustez frente al desvanecimiento inducido por la dispersi贸n crom谩tica de la fibra. Adem谩s, se ha realizado una evaluaci贸n experimental impacto las turbulencias producidas en los canales FSO sobre las se帽ales mmW generadas fot贸nicamente con diferentes distribuciones t茅rmicas y se ha cuantificado la degradaci贸n de la se帽al de datos de acuerdo con las condiciones de la turbulencia. Como demostradores finales, esta Tesis incluye un sistema de transmisi贸n full-d煤plex que emplea se帽ales 5G en enlace descendente (DL) a 39 GHz y en enlace ascendente (UL) a 37 GHz; y la transmisi贸n de se帽ales OFDM LTE de 60 GHz (DL) y 25 GHz (UL) sobre una infraestructura heterog茅nea de frontal 贸ptico que consiste en fibra 贸ptica de 10 km, un canal FSO de 100 m y un enlace de radio inal谩mbrico de 2 m.[CA] L'est脿ndard de quinta generaci贸 (5G) 茅s la clau potencial per a satisfer l'augment exponencial en la demanda de noves aplicacions, serveis i usuaris. La tecnologia 5G oferir脿 una lat猫ncia extremadament baixa d'1 ms, una velocitat m脿xima de dades de 10 Gbit/s, una alta densitat de connexi贸 de fins a 106 dispositius/km2 i permetr脿 una alta mobilitat dels dispositius de fins a 500 km/h. En aquesta tesi es proposen diverses solucions basades en tecnologies habilitadores per al desplegament de xarxes 5G. L'arquitectura de la xarxa d'acc茅s de r脿dio en el n煤vol (CRAN) s'empra junt amb les t猫cniques de Fot貌nica de Microones com una soluci贸 prometedora per a generar i transmetre senyals d'ones mil路lim猫triques (mmW) en la pr貌xima generaci贸 de comunicacions m貌bils. La tecnologia r脿dio sobre fibra ( RoF) ha demostrat ser una bona opci贸 per a enfrontar-se al desafiament de la distribuci贸 sense fil mmW a causa de la gran dist脿ncia de transmissi贸, el gran ample de banda i la immunitat a les interfer猫ncies electromagn猫tiques, entre alguns dels principals avantatges. A m茅s, aquesta tecnologia es pot ampliar amb comunicacions 貌ptiques d'espai lliure (FSO) en sistemes de r脿dio sobre FSO (RoFSO) en les xarxes sense fil. En aquesta Tesi, els senyals mmW es generen fot貌nicament per mitj脿 de modulaci贸 externa de doble banda lateral amb supressi贸 de portadora (CS-DSB) i es distribueixen a trav茅s d'enlla莽os frontals h铆brids RoF/FSO.. A m茅s, la generaci贸 m煤ltiple de senyals permet la distribuci贸 reconfigurable en canals multiplexats per divisi贸 de longitud d'ona ( WDM) des d'una oficina central fins a les estacions base, i s'ha avaluat l'impacte de les turbul猫ncies produ茂des en els canals FSO sobre els senyals mmW generades fot貌nicament en termes de fluctuacions de pot猫ncia i soroll de fase del senyal. Aquest treball proposa la t猫cnica de modulaci贸 directa d'un l脿ser (DML) com soluci贸 principal per a la transmissi贸 de dades a trav茅s d'enlla莽os 貌ptics h铆brids que fan servir un esquema de multiplicaci贸 de freq眉猫ncies 貌ptiques, 茅s a dir, CS-DSB, per a la generaci贸 de senyals de mmW. En concret, s'avalua te貌ric i experimentalment els esquemes de generaci贸 fot貌nica local i remota de senyals mmW i es comparen per a la seua implementaci贸 pr脿ctica a la xarxa frontal de la C-RAN i a m茅s, s'estudia experimentalment l'impacte de la distorsi贸 harm貌nica i de la intermodulaci贸 en la transmissi贸 de dades. Igualment, amb el fi d'obtindre la capacitat que ofereix el DML en termes d'amplada de banda, tamb茅 es presenta una avaluaci贸 te貌rica i experimental de l'efecte de la dispersi贸 de la fibra i el chirp sobre diferents amples de banda de senyals de M-modulaci贸 d'amplitud en quadratura (QAM). No obstant aix貌, la Tesis tamb茅 inclou altre enfocament per a la transmissi贸 de dades basat amb l驴煤s d'altre modulador extern. En aquest cas, la demostraci贸 experimental de la generaci贸 de senyals 貌ptics emprant CS-DSB i la transmissi贸 de senyals a trav茅s de fibra h铆brida i xarxa frontal FSO es completa com un enlla莽 d'antena que permet transmetre senyals 5G 64/256-QAM. La investigaci贸 realitzada amb els sistemes CS-DSB i DSB tamb茅 permet comparar la seua robustesa davant l驴esva茂ment indu茂t per la dispersi贸 crom脿tica. A m茅s, s'ha avaluat experimentalment l'impacte de les turbul猫ncies produ茂des en els canals FSO sobre els senyals mmW generades fot貌nicament amb diferents distribucions t猫rmiques i s'ha quantificat la degradaci贸 del senyal de dades d'acord amb les condicions de la turbul猫ncia. Com a demostradors finals, aquesta Tesi inclou un sistema de transmissi贸 full-d煤plex que empra senyals 5G en enlla莽 descendent (DL) a 39 GHz i en enlla莽 ascendent (UL) a 37 GHz; i la transmissi贸 de senyals OFDM LTE de 60 GHz (DL) i 25 GHz (UL) sobre una infraestructura heterog猫nia de frontal 貌ptic que consisteix en fibra 貌ptica de 10 km, un canal FSO de 100 m i un enlla莽 de r脿dio sense fil de 2 m.[EN] The fifth generation (5G) standard is the potential key to meet the exponentially increasing demand of the emerging applications, services and mobile end users. 5G technology will offer an extremely low latency of 1 ms, peak data rate of 10 Gbit/s, high contention density up to 106 devices/km2 and enable high mobility up to 500 km/h. This Thesis proposes several solutions based on enabling technologies for deploying 5G networks. Cloud-radio access network (C-RAN) architecture is employed in conjunction with microwave photonics techniques as a promising solution to generate and transmit millimeter wave (mmW) signals in the next generation of mobile communications. Radio over fiber (RoF) has been demonstrated as a good option to face the challenge of mmW wireless distribution, due to long transmission distance, large bandwidth and immunity to electromagnetic interference, as some of the main advantages. Moreover, this technology can be extended with free-space optical (FSO) communications in Radio over FSO systems (RoFSO) as wireless networks. In this Thesis, mmW signals are photonically generated by carrier suppressed double sideband (CS-DSB) external modulation and distributed over hybrid RoF/FSO fronthaul links. Moreover, multiple generated signals allow reconfigurable distribution in wavelength-division multiplexed (WDM) channels from a central office to the base stations, and the impact of turbulent FSO channels on photonically generated mmW signals has been evaluated in terms of power signal fluctuations and phase noise. A directly modulated laser (DML) is proposed as a major solution for signal transmission over hybrid optical links employing optical frequency multiplication scheme, i.e. CS-DSB, for mmW signal generation. Moreover, local and remote photonic mmW signal generation schemes are theoretically and experimentally evaluated and compared for practical deployment in C-RAN fronthaul network while the impact of harmonic and intermodulation distortion on data transmission is also experimentally studied. Furthermore, for the sake of obtaining the DML usability in terms of bandwidth, theoretical and experimental evaluation of the effect of fiber dispersion and chirp over different M-quadrature amplitude modulation (QAM) signals bandwidth is also presented. Another data transmission approach based on the cascade of two external modulators is also employed in the Thesis. In this case, the experimental demonstration of optical signal generation employing CS-DSB and signal transmission over hybrid fiber and FSO fronthaul network is completed with a seamless antenna link leading to successful transmission of 64/256-QAM 5G signals. The CS-DSB and DSB schemes are also investigated for the sake of comparison in terms of robustness against fiber chromatic dispersion-induced fading. Furthermore, experimental evaluation of the impact of turbulent FSO links on photonically generated mmW signals with different thermal distributions has been performed and data signal degradation has been quantified according to the turbulence conditions. As final demonstrators, the Thesis includes a full-duplex transmission system employing 39 GHz downlink (DL) and 37 GHz uplink (UL) 5G signals over hybrid links; and 60 GHz (DL) and 25 GHz (UL) OFDM LTE signal transmission over an heterogeneous optical fronthaul infrastructure consisting of 10 km optical fiber, 100 m FSO channel and 2 m wireless radio link.I would like to acknowledge the financial support given by Research Excellence Award Programme GVA PROMETEO 2017/103 Future Microwave Photonics and European Network for High Performance Integrated Microwave Photonics (EUIMWP) CA16220.Vallejo Castro, L. (2022). Photonic Millimeter Wave Signal Generation and Transmission Over Hybrid Links in 5G Communication Networks [Tesis doctoral]. Universitat Polit猫cnica de Val猫ncia. https://doi.org/10.4995/Thesis/10251/19025

    Advanced Technique and Future Perspective for Next Generation Optical Fiber Communications

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    Optical fiber communication industry has gained unprecedented opportunities and achieved rapid progress in recent years. However, with the increase of data transmission volume and the enhancement of transmission demand, the optical communication field still needs to be upgraded to better meet the challenges in the future development. Artificial intelligence technology in optical communication and optical network is still in its infancy, but the existing achievements show great application potential. In the future, with the further development of artificial intelligence technology, AI algorithms combining channel characteristics and physical properties will shine in optical communication. This reprint introduces some recent advances in optical fiber communication and optical network, and provides alternative directions for the development of the next generation optical fiber communication technology

    Recent Trends in Communication Networks

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    In recent years there has been many developments in communication technology. This has greatly enhanced the computing power of small handheld resource-constrained mobile devices. Different generations of communication technology have evolved. This had led to new research for communication of large volumes of data in different transmission media and the design of different communication protocols. Another direction of research concerns the secure and error-free communication between the sender and receiver despite the risk of the presence of an eavesdropper. For the communication requirement of a huge amount of multimedia streaming data, a lot of research has been carried out in the design of proper overlay networks. The book addresses new research techniques that have evolved to handle these challenges

    Enabling Technology in Optical Fiber Communications: From Device, System to Networking

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    This book explores the enabling technology in optical fiber communications. It focuses on the state-of-the-art advances from fundamental theories, devices, and subsystems to networking applications as well as future perspectives of optical fiber communications. The topics cover include integrated photonics, fiber optics, fiber and free-space optical communications, and optical networking
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