5 resultados para Physical layer security

em Archivo Digital para la Docencia y la Investigación - Repositorio Institucional de la Universidad del País Vasco


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The smart grid is a highly complex system that is being formed from the traditional power grid, adding new and sophisticated communication and control devices. This will enable integrating new elements for distributed power generation and also achieving an increasingly automated operation so for actions of the utilities as for customers. In order to model such systems a bottom-up method is followed, using only a few basic elements which are structured into two layers: a physical layer for the electrical power transmission, and one logical layer for element communication. A simple case study is presented to analyse the possibilities of simulation. It shows a microgrid model with dynamic load management and an integrated approach that can process both electrical and communication flows.

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[EN]The purpose of this project is to study and analyse signals of digital television, provided for mobile services, by using LDM technology. In order to achieve this, it will be needed the use of different transmission configurations (modulation, code rate…) suitable for this type of service, as well as propagation channels showing movement situations, such as pedestrian or mobile. This project comes as a response of recent research in LDM technology, which has been proposed as a Physical Layer technology to the ATSC 3.0 Next Generation Digital TV standard.

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[Es]En este Trabajo de Fin de Grado se estudia el comportamiento de LDM (Layered Division Multiplexing) para la radiodifusión digital terrestre en los casos de recepción fijo y portátil. Para ello, se adapta un programa que recrea, de la forma más fiel posible, la capa física del sistema LDM. Este programa consta de múltiples parámetros que determinan las características de funcionamiento del sistema. Una vez adaptado, el programa se utiliza para simular el comportamiento del sistema en diferentes entornos de trabajo o canales (Gauss, Rice y Rayleigh) consiguiendo unos resultados que nos permiten evaluar las prestaciones del sistema en cada entorno.

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The evolution of the railway sector depends, to a great extent, on the deployment of advanced railway signalling systems. These signalling systems are based on communication architectures that must cope with complex electromagnetical environments. This paper is outlined in the context of developing the necessary tools to allow the quick deployment of these signalling systems by contributing to an easier analysis of their behaviour under the effect of electromagnetical interferences. Specifically, this paper presents the modelling of the Eurobalise-train communication flow in a general purpose simulation tool. It is critical to guarantee this communication link since any lack of communication may lead to a stop of the train and availability problems. In order to model precisely this communication link we used real measurements done in a laboratory equipped with elements defined in the suitable subsets. Through the simulation study carried out, we obtained performance indicators of the physical layer such as the received power, SNR and BER. The modelling presented in this paper is a required step to be able to provide quality of service indicators related to perturbed scenarios.