18 resultados para COMPUTAÇÃO EVOLUTIVA
Resumo:
Recentemente assistimos a uma evolução da relação do Homem com a tecnologia, em larga medida acompanhada por novos modelos de interacção que modificam a forma de conceber os artefactos e constroem novos contextos de uso. Procuramos investigar, na presente tese, uma das abordagens emergentes, o universo dos media tangíveis, articulando a perspectiva do design da tecnologia orientada para a Human-Computer Interation (HCI), com a dimensão social, cultural e estética no uso da tecnologia. Os media tangíveis, ao contrário do que sucede com os conteúdos digitais convencionais, têm espessura e expressão física e, porque são dotados de um corpo que habita o espaço das disposições físicas, estão sujeitos à acção do mundo cultural e das práticas sociais que regem os demais objectos físicos que podemos encontrar no nosso quotidiano. Esta nova relação com a tecnologia digital obrigará as disciplinas que se encontram mais próximas do desenvolvimento tecnológico, tais como o Design de Interacção e a HCI, a abrirem-se aos contributos e abordagens das ciências humanas. Admitindo que a natureza subjacente ao processo da adaptabilidade no ambiente doméstico altera o equilíbrio da relação entre o design e o uso da tecnologia, julgamos ser essencial o desenvolvimento de uma fenomenologia da interação. Por outro lado, a adaptabilidade dos media tangíveis apresenta um conjunto de dificuldades, não apenas de ordem técnica, mas também de natureza conceptual, que têm dificultado o desenvolvimento e a implementação no terreno de tecnologias personalizáveis. Um dos objectivos da presente tese consiste em investigar um quadro conceptual capaz de enquadrar o fenómeno da adaptabilidade dos media tangíveis, e desenvolver uma tecnologia que possa servir de objecto a um estudo empírico com base numa abordagem etnográfica.
Resumo:
When developing software for autonomous mobile robots, one has to inevitably tackle some kind of perception. Moreover, when dealing with agents that possess some level of reasoning for executing their actions, there is the need to model the environment and the robot internal state in a way that it represents the scenario in which the robot operates. Inserted in the ATRI group, part of the IEETA research unit at Aveiro University, this work uses two of the projects of the group as test bed, particularly in the scenario of robotic soccer with real robots. With the main objective of developing algorithms for sensor and information fusion that could be used e ectively on these teams, several state of the art approaches were studied, implemented and adapted to each of the robot types. Within the MSL RoboCup team CAMBADA, the main focus was the perception of ball and obstacles, with the creation of models capable of providing extended information so that the reasoning of the robot can be ever more e ective. To achieve it, several methodologies were analyzed, implemented, compared and improved. Concerning the ball, an analysis of ltering methodologies for stabilization of its position and estimation of its velocity was performed. Also, with the goal keeper in mind, work has been done to provide it with information of aerial balls. As for obstacles, a new de nition of the way they are perceived by the vision and the type of information provided was created, as well as a methodology for identifying which of the obstacles are team mates. Also, a tracking algorithm was developed, which ultimately assigned each of the obstacles a unique identi er. Associated with the improvement of the obstacles perception, a new algorithm of estimating reactive obstacle avoidance was created. In the context of the SPL RoboCup team Portuguese Team, besides the inevitable adaptation of many of the algorithms already developed for sensor and information fusion and considering that it was recently created, the objective was to create a sustainable software architecture that could be the base for future modular development. The software architecture created is based on a series of di erent processes and the means of communication among them. All processes were created or adapted for the new architecture and a base set of roles and behaviors was de ned during this work to achieve a base functional framework. In terms of perception, the main focus was to de ne a projection model and camera pose extraction that could provide information in metric coordinates. The second main objective was to adapt the CAMBADA localization algorithm to work on the NAO robots, considering all the limitations it presents when comparing to the MSL team, especially in terms of computational resources. A set of support tools were developed or improved in order to support the test and development in both teams. In general, the work developed during this thesis improved the performance of the teams during play and also the e ectiveness of the developers team when in development and test phases.
Resumo:
Optical networks are under constant evolution. The growing demand for dynamism require devices that can accommodate different types of traffic. Thus the study of transparent optical networks arises. This approach makes optical networks more "elegant" , due to a more efficient use of network resources. In this thesis, the author proposes devices that intend to form alternative approaches both in the state of art of these same technologies both in the fitting of this technologies in transparent optical networks. Given that full transparency is difficult to achieve with current technology (perhaps with more developed optical computing this is possible), the author proposes techniques with different levels of transparency. On the topic of performance of optical networks, the author proposes two techniques for monitoring chromatic dispersion with different levels of transparency. In Chapter 3 the proposed technique seems to make more sense for long-haul optical transmission links and high transmission rates, not only due to its moderate complexity but also to its potential moderate/high cost. However it is proposed to several modulation formats, particularly those that have a protruding clock component. In Chapter 4 the transparency level was not tested for various modulation formats, however some transparency is achieved by not adding any electrical device after the receiver (other than an analog-digital converter). This allows that this technique can operate at high transmission rates in excess of 100 Gbit / s, if electro-optical asynchronous sampling is used before the optical receiver. Thus a low cost and low bandwidth photo-detector can be used. In chapter 5 is demonstrated a technique for simultaneously monitoring multiple impairments of the optical network by generating novel performance analysis diagrams and by use of artificial neural networks. In chapter 6 the author demonstrates an all-optical technique for controlling the optical state of polarization and an example of how all-optical signal processing can fully cooperate with optical performance monitoring.