5 resultados para one-person household

em Universidad Politécnica de Madrid


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En este trabajo de tesis se propone un esquema de votación telemática, de carácter paneuropeo y transnacional, que es capaz de satisfacer las más altas exigencias en materia de seguridad. Este enfoque transnacional supone una importante novedad que obliga a identificar a los ciudadanos más allá de las fronteras de su país, exigencia que se traduce en la necesidad de que todos los ciudadanos europeos dispongan de una identidad digital y en que ésta sea reconocida más allá de las fronteras de su país de origen. Bajo estas premisas, la propuesta recogida en esta tesis se aborda desde dos vertientes complementarias: por una parte, el diseño de un esquema de votación capaz de conquistar la confianza de gobiernos y ciudadanos europeos y, por otra, la búsqueda de una respuesta al problema de interoperabilidad de Sistemas de Gestión de Identidad (IDMs), en consonancia con los trabajos que actualmente realiza la UE para la integración de los servicios proporcionados por las Administraciones Públicas de los distintos países europeos. El punto de partida de este trabajo ha sido la identificación de los requisitos que determinan el adecuado funcionamiento de un sistema de votación telemática para, a partir de ellos,proponer un conjunto de elementos y criterios que permitan, por una parte, establecer comparaciones entre distintos sistemas telemáticos de votación y, por otra, evaluar la idoneidad del sistema propuesto. A continuación se han tomado las más recientes y significativas experiencias de votación telemática llevadas a cabo por diferentes países en la automatización de sus procesos electorales, analizándolas en profundidad para demostrar que, incluso en los sistemas más recientes, todavía subsisten importantes deficiencias relativas a la seguridad. Asimismo, se ha constatado que un sector importante de la población se muestra receloso y, a menudo, cuestiona la validez de los resultados publicados. Por tanto, un sistema que aspire a ganarse la confianza de ciudadanos y gobernantes no sólo debe operar correctamente, trasladando los procesos tradicionales de votación al contexto telemático, sino que debe proporcionar mecanismos adicionales que permitan superar los temores que inspira el nuevo sistema de votación. Conforme a este principio, el enfoque de esta tesis, se orienta, en primer lugar, hacia la creación de pruebas irrefutables, entendibles y auditables a lo largo de todo el proceso de votación, que permitan demostrar con certeza y ante todos los actores implicados en el proceso (gobierno, partidos políticos, votantes, Mesa Electoral, interventores, Junta Electoral,jueces, etc.) que los resultados publicados son fidedignos y que no se han violado los principios de anonimato y de “una persona, un voto”. Bajo este planteamiento, la solución recogida en esta tesis no sólo prevé mecanismos para minimizar el riesgo de compra de votos, sino que además incorpora mecanismos de seguridad robustos que permitirán no sólo detectar posibles intentos de manipulación del sistema, sino también identificar cuál ha sido el agente responsable. De forma adicional, esta tesis va más allá y traslada el escenario de votación a un ámbito paneuropeo donde aparecen nuevos problemas. En efecto, en la actualidad uno de los principales retos a los que se enfrentan las votaciones de carácter transnacional es sin duda la falta de procedimientos rigurosos y dinámicos para la actualización sincronizada de los censos de votantes de los distintos países que evite la presencia de errores que redunden en la incapacidad de controlar que una persona emita más de un voto, o que se vea impedido del todo a ejercer su derecho. Este reconocimiento de la identidad transnacional requiere la interoperabilidad entre los IDMs de los distintos países europeos. Para dar solución a este problema, esta tesis se apoya en las propuestas emergentes en el seno de la UE, que previsiblemente se consolidarán en los próximos años, tanto en materia de identidad digital (con la puesta en marcha de la Tarjeta de Ciudadano Europeo) como con el despliegue de una infraestructura de gestión de identidad que haga posible la interoperabilidad de los IDMs de los distintos estados miembros. A partir de ellas, en esta tesis se propone una infraestructura telemática que facilita la interoperabilidad de los sistemas de gestión de los censos de los distintos estados europeos en los que se lleve a cabo conjuntamente la votación. El resultado es un sistema versátil, seguro, totalmente robusto, fiable y auditable que puede ser aplicado en elecciones paneuropeas y que contempla la actualización dinámica del censo como una parte crítica del proceso de votación. ABSTRACT: This Ph. D. dissertation proposes a pan‐European and transnational system of telematic voting that is capable of meeting the strictest security standards. This transnational approach is a significant innovation that entails identifying citizens beyond the borders of their own country,thus requiring that all European citizens must have a digital identity that is recognized beyond the borders of their country of origin. Based on these premises, the proposal in this thesis is analyzed in two mutually‐reinforcing ways: first, a voting system is designed that is capable of winning the confidence of European governments and citizens and, second, a solution is conceived for the problem of interoperability of Identity Management Systems (IDMs) that is consistent with work being carried out by the EU to integrate the services provided by the public administrations of different European countries. The starting point of this paper is to identify the requirements for the adequate functioning of a telematic voting system and then to propose a set of elements and criteria that will allow for making comparisons between different such telematic voting systems for the purpose of evaluating the suitability of the proposed system. Then, this thesis provides an in‐depth analysis of most recent significant experiences in telematic voting carried out by different countries with the aim of automating electoral processes, and shows that even the most recent systems have significant shortcomings in the realm of security. Further, a significant portion of the population has shown itself to be wary,and they often question the validity of the published results. Therefore, a system that aspires to win the trust of citizens and leaders must not only operate correctly by transferring traditional voting processes into a telematic environment, but must also provide additional mechanisms that can overcome the fears aroused by the new voting system. Hence, this thesis focuses, first, on creating irrefutable, comprehensible and auditable proof throughout the voting process that can demonstrate to all actors in the process – the government, political parties, voters, polling station workers, electoral officials, judges, etc. ‐that the published results are accurate and that the principles of anonymity and one person,one vote, have not been violated. Accordingly, the solution in this thesis includes mechanisms to minimize the risk of vote buying, in addition to robust security mechanisms that can not only detect possible attempts to manipulate the system, but also identify the responsible party. Additionally, this thesis goes one step further and moves the voting scenario to a pan‐European scale, in which new problems appear. Indeed, one of the major challenges at present for transnational voting processes is the lack of rigorous and dynamic procedures for synchronized updating of different countries’ voter rolls, free from errors that may make the system unable to keep an individual from either casting more than one vote, or from losing the effective exercise of the right to vote. This recognition of transnational identity requires interoperability between the IDMs of different European countries. To solve the problem, this thesis relies on proposals emerging within the EU that are expected to take shape in the coming years, both in digital identity – with the launch of the European Citizen Card – and in the deployment of an identity management infrastructure that will enable interoperability of the IDMs of different member states. Based on these, the thesis proposes a telematic infrastructure that will achieve interoperability of the census management systems of European states in which voting processes are jointly carried out. The result is a versatile, secure, totally robust, reliable and auditable system that can be applied in pan‐European election, and that includes dynamic updating of the voter rolls as a critical part of the voting process.

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Ubiquitous computing (one person, many computers) is the third era in the history of computing. It follows the mainframe era (many people, one computer) and the PC era (one person, one computer). Ubiquitous computing empowers people to communicate with services by interacting with their surroundings. Most of these so called smart environments contain sensors sensing users’ actions and try to predict the users’ intentions and necessities based on sensor data. The main drawback of this approach is that the system might perform unexpected or unwanted actions, making the user feel out of control. In this master thesis we propose a different procedure based on Interactive Spaces: instead of predicting users’ intentions based on sensor data, the system reacts to users’ explicit predefined actions. To that end, we present REACHeS, a server platform which enables communication among services, resources and users located in the same environment. With REACHeS, a user controls services and resources by interacting with everyday life objects and using a mobile phone as a mediator between himself/herself, the system and the environment. REACHeS’ interfaces with a user are built upon NFC (Near Field Communication) technology. NFC tags are attached to objects in the environment. A tag stores commands that are sent to services when a user touches the tag with his/her NFC enabled device. The prototypes and usability tests presented in this thesis show the great potential of NFC to build such user interfaces.

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La Ciencia Ciudadana nace del resultado de involucrar en las investigaciones científicas a todo tipo de personas, las cuales pueden participar en un determinado experimento analizando o recopilando datos. No hace falta que tengan una formación científica para poder participar, es decir cualquiera puede contribuir con su granito de arena. La ciencia ciudadana se ha convertido en un elemento a tener en cuenta a la hora de realizar tareas científicas que requieren mucha dedicación, o que simplemente por el volumen de trabajo que estas implican, resulta casi imposible que puedan ser realizadas por una sola persona o un pequeño grupo de trabajo. El proyecto GLORIA (GLObal Robotic-telescopes Intelligent Array) es la primera red de telescopios robóticos del mundo de acceso libre que permite a los usuarios participar en la investigación astronómica mediante la observación con telescopios robóticos, y/o analizando los datos que otros usuarios han adquirido con GLORIA, o desde otras bases de datos de libre acceso. Con el objetivo de contribuir a esta iniciativa se ha propuesto crear una plataforma web que pasará a formar parte del Proyecto GLORIA, en la que se puedan realizar experimentos astronómicos. Con el objetivo de fomentar la ciencia y el aprendizaje colaborativo se propone construir una aplicación web que se ejecute en la plataforma Facebook. Los experimentos los proporciona la red de telescopios del proyecto GLORIA mediante servicios web y están definidos mediante XML. La aplicación web recibe el XML con la descripción del experimento, lo interpreta y lo representa en la plataforma Facebook para que los usuarios potenciales puedan realizar los experimentos. Los resultados de los experimentos realizados se envían a una base de datos de libre acceso que será gestionada por el proyecto GLORIA, para su posterior análisis por parte de expertos. ---ABSTRACT---The citizen’s science is born out of the result of involving all type of people in scientific investigations, in which, they can participate in a determined experiment analyzing or compiling data. There is no need to have a scientific training in order to participate, but, anyone could contribute doing one’s bit. The citizen’s science has become an element to take into account when carrying out scientific tasks that require a lot dedication, or that, for the volume of work that these involve, are nearly impossible to be carried out by one person or a small working group. The GLORIA Project (Global Robotic-Telescopes Intelligent Array) is the first network of free access robotic telescopes in the world that permits the users to participate in the astronomic investigation by means of observation with robotic telescopes, and/or analyzing data from other users that have obtained through GLORIA, or from other free-access databases. With the aim of contributing to this initiative, a web platform has been created and will be part of the GLORIA Project, in which astronomic experiments can be carried out. With the objective of promoting science and collaborative apprenticeship, a web application carried out in the FACEBOOK platform is to be built. The experiments are founded by the telescopes network of the GLORIA project by means of web services and are defined through XML. The web application receives the XML with the description of the experiment, interprets it and represents it in the FACEBOOK platform in order for potential users may perform the experiments. The results of the experiments carried out are sent to a free-access database that will be managed by the GLORIA Project for its analysis on the part of experts.

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One of the major problems related to cancer treatment is its recurrence. Without knowing in advance how likely the cancer will relapse, clinical practice usually recommends adjuvant treatments that have strong side effects. A way to optimize treatments is to predict the recurrence probability by analyzing a set of bio-markers. The NeoMark European project has identified a set of preliminary bio-markers for the case of oral cancer by collecting a large series of data from genomic, imaging, and clinical evidence. This heterogeneous set of data needs a proper representation in order to be stored, computed, and communicated efficiently. Ontologies are often considered the proper mean to integrate biomedical data, for their high level of formality and for the need of interoperable, universally accepted models. This paper presents the NeoMark system and how an ontology has been designed to integrate all its heterogeneous data. The system has been validated in a pilot in which data will populate the ontology and will be made public for further research.

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More than 2.5 billion people are still unbanked and they do not access or use financial services. In this paper, we present an innovative service that allows Santander University Smart Card holders to make person-to-person payments to their friends, using different social channels, such as Telegram, Facebook or Twitter. Our first implementation is based on Facebook, one of the most used social networks. This approach allows the service to reach a great number of potential users but the delivery and stability of the service depends on an external provider. We include the description of the service architecture, its implementation, tests, and the lessons learned from the development. We also discuss pros and cons of the third party service dependency from the technical and business viewpoints.