4 resultados para Munich

em AMS Tesi di Dottorato - Alm@DL - Università di Bologna


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This work has been realized by the author in his PhD course in Electrical, Computer Science and Telecommunication at the University of Bologna, Faculty of Engineering, Italy. All the documentation here reported is a summary of years of work, under the supervision of Prof. Oreste Andrisano, coordinator of Wireless Communication Laboratory - WiLab, in Bologna. The subject of this thesis is the transmission of video in a context of heterogeneous network, and in particular, using a wireless channel. All the instrumentation that has been used for the characterization of the telecommunication systems belongs to CNR (National Research Council), CNIT (Italian Inter- University Center), and DEIS (Dept. of Electrical, Computer Science, and Systems). From November 2009 to July 2010, the author spent his time abroad, working in collaboration with DLR - German Aerospace Center in Munich, Germany, on channel coding area, developing a general purpose decoder machine to decode a huge family of iterative codes. A patent concerning Doubly Generalized-Low Density Parity Check codes has been produced by the author as well as some important scientic papers, published on IEEE journals and conferences.

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This work has been realized by the author in his PhD course in Electronics, Computer Science and Telecommunication at the University of Bologna, Faculty of Engineering, Italy. The subject of this thesis regards important channel estimation aspects in wideband wireless communication systems, such as echo cancellation in digital video broadcasting systems and pilot aided channel estimation through an innovative pilot design in Multi-Cell Multi-User MIMO-OFDM network. All the documentation here reported is a summary of years of work, under the supervision of Prof. Oreste Andrisano, coordinator of Wireless Communication Laboratory - WiLab, in Bologna. All the instrumentation that has been used for the characterization of the telecommunication systems belongs to CNR (National Research Council), CNIT (Italian Inter-University Center), and DEIS (Dept. of Electronics, Computer Science, and Systems). From November 2009 to May 2010, the author spent his time abroad, working in collaboration with DOCOMO - Communications Laboratories Europe GmbH (DOCOMO Euro-Labs) in Munich, Germany, in the Wireless Technologies Research Group. Some important scientific papers, submitted and/or published on IEEE journals and conferences have been produced by the author.

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This thesis deals with the development of the upcoming aeronautical mobile airport communications system (AeroMACS) system. We analyzed the performance of AeroMACS and we investigated potential solutions for enhancing its performance. Since the most critical results correspond to the channel scenario having less diversity1, we tackled this problem investigating potential solutions for increasing the diversity of the system and therefore improving its performance. We accounted different forms of diversity as space diversity and time diversity. More specifically, space (antenna and cooperative) diversity and time diversity are analyzed as countermeasures for the harsh fading conditions that are typical of airport environments. Among the analyzed techniques, two novel concepts are introduced, namely unequal diversity coding and flexible packet level codes. The proposed techniques have been analyzed on a novel airport channel model, derived from a measurement campaign at the airport of Munich (Germany). The introduced techniques largely improve the performance of the conventional AeroMACS link; representing thus appealing solutions for the long term evolution of the system.

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La tesi analizza, nel quadro del secondo dopoguerra, quattro casi studio scelti tra le opere di ricostruzione dell’architetto Josef Wiedemann (1910-2001) nel centro di Monaco di Baviera: Odeon (1951-1952), Alte Akademie (1951-1955), Siegestor (1956-1958) e Glyptothek (1961-1972). L’architetto si occupa di opere simbolo della città di Monaco, affrontando la loro ricostruzione come un tema fondante per la storia e l’identità del popolo bavarese, ma soprattutto come un’occasione per definire un metodo d’intervento sulle rovine della guerra. Il suo lavoro è caratterizzato infatti per la ricerca costante di una sintesi tra interesse per la conservazione dell’antico e apertura al nuovo; ispirandosi all’insegnamento del maestro Hans Döllgast, Wiedemann traccia una nuova originale strada per l’intervento sull’antico, segnata da una profonda capacità tecnico-progettuale e dall'attenzione alle nuove esigenze a cui deve rispondere un’architettura contemporanea. Partendo dai suoi scritti e dalle sue opere, si può rilevare un percorso coerente che, partendo dalla conoscenza della storia dell'edificio, ripercorrendone l’evoluzione dallo stato che potremmo definire “originario” allo stato di rovina, giunge a produrre nel progetto realizzato una sintesi tra il passato e il futuro. L'architetto, nella visione di Wiedemann, è chiamato a un compito di grande responsabilità: conoscere per progettare (o ri-progettare) un edificio che porta impressi su di sé i segni della propria storia. Nel metodo che viene messo progressivamente a punto operando nel corpo vivo dei monumenti feriti dalla guerra, è percepibile fino a distinguerlo chiaramente l’interesse e l’influenza del dibattito italiano sul restauro. La conservazione “viva” dell'esistente, così come viene definita da Wiedemann stesso, si declina in modo diverso per ogni caso particolare, approdando a risultati differenti tra loro, ma che hanno in comune alcuni principi fondamentali: conoscere, ricordare, conservare e innovare.