14 resultados para IPC, passive, port-hamiltonian, hamiltonian, RCC, KUKA, ROS


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La teleoperación o telerobótica es un campo de la robótica que se basa en el control remoto de robots esclavo por parte de un usuario encargado de gobernar, mediante un dispositivo maestro, la fuerza y movimiento del robot. Sobre dicho usuario recaen también las tareas de percepción del entorno, planificación y manipulación compleja. Concretamente se pretende desarrollar el control software necesario para teleoperar un manipulador esclavo, Kuka Lightweigh mediante un dispositivo háptico Phamton Omni, que se comporta como maestro, sin que afecten las diferencias dinámicas y estructurales existentes entre ambos dispositivos, aportando información adicional al operador para facilitar la operación. La principal motivación de la evolución de esta tecnología se debe a la necesidad de realizar trabajos en entornos hostiles, de difícil acceso, o perjudiciales para la salud del usuario.

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Eguíluz, Federico; Merino, Raquel; Olsen, Vickie; Pajares, Eterio; Santamaría, José Miguel (eds.)

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We identify an intriguing feature of the electron-vibrational dynamics of molecular systems via a computational examination of trans-polyacetylene oligomers. Here, via the vibronic interactions, the decay of an electron in the conduction band resonantly excites an electron in the valence band, and vice versa, leading to oscillatory exchange of electronic population between two distinct electronic states that lives for up to tens of picoseconds. The oscillatory structure is reminiscent of beating patterns between quantum states and is strongly suggestive of the presence of long-lived molecular electronic coherence. Significantly, however, a detailed analysis of the electronic coherence properties shows that the oscillatory structure arises from a purely incoherent process. These results were obtained by propagating the coupled dynamics of electronic and vibrational degrees of freedom in a mixed quantum-classical study of the Su-Schrieffer-Heeger Hamiltonian for polyacetylene. The incoherent process is shown to occur between degenerate electronic states with distinct electronic configurations that are indirectly coupled via a third auxiliary state by vibronic interactions. A discussion of how to construct electronic superposition states in molecules that are truly robust to decoherence is also presented

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The combination of remotely sensed gappy Sea surface temperature (SST) images with the missing data filling DINEOF (data interpolating empirical orthogonal functions) technique, followed by a principal component analysis of the reconstructed data, has been used to identify the time evolution and the daily scale variability of the wintertime surface signal of the Iberian Poleward Current (IPC), or Navidad, during the 1981-2010 period. An exhaustive comparison with the existing bibliography, and the vertical temperature and salinity profiles related to its extremes over the Bay of Biscay area, show that the obtained time series accurately reflect the IPC-Navidad variability. Once a time series for the evolution of the SST signal of the current over the last decades is well established, this time series is used to propose a physical mechanism in relation to the variability of the IPC-Navidad, involving both atmospheric and oceanic variables. According to the proposed mechanism, an atmospheric circulation anomaly observed in both the 500 hPa and the surface levels generates atmospheric surface level pressure, wind-stress and heat-flux anomalies. In turn, those surface level atmospheric anomalies induce mutually coherent SST and sea level anomalies over the North Atlantic area, and locally, in the Bay of Biscay area. These anomalies, both locally over the Bay of Biscay area and over the North Atlantic, are in agreement with several mechanisms that have separately been related to the variability of the IPC-Navidad, i.e. the south-westerly winds, the joint effect of baroclinicity and relief (JEBAR) effect, the topographic beta effect and a weakened North Atlantic gyre.

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Txosten honetan azaltzen den proiektua, auto itxurako robot baten eraikuntzan oinarritzen da. Arduino plataforman oinarritutako robot mugikor baten sorkuntza burutuko da hutsetik, honen kontrola Raspberry Pi ordenagailu txikiaren bitartez eginez. Gainera, azken gailu honi ahalmen handiagoa emateko asmoz, ROS plataforma instalatuko da bertan. Duten kostu baxua dela eta, gaur egun izugarrizko arrakasta lortu dute plataforma guzti hauek, baina proiektu honetan beraien ahalmena neurtu nahi dugu ezaugarri zehatz batzuk dituen robota sortuz.

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Proiektu honetan RSAIT ikerketa taldearen Marisorgin robotaren simulazioa eta nabigazioa landu dira Gazebo-ROS ingurunean. Robota UPV/EHUko Donostiako Informatika Fakultateko hirugarren solairuan zehar mugituko da, korridore, bulego eta gainontzeko geletatik igaroz. Bestalde, Marisorgin RWI etxeko B21 robota da, lau gurpil ditu eta mugimendu-sistema sinkronoa dauka. Nabigaziorako, robota bere kokapenetik (jatorriko puntua) guk adierazitako puntura (helburuko puntua) mugitu beharko da modu autonomoan.

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Proyecto de Fin de Grado, especialidad en Computación. Se ha desarrollado un software en ROS para detectar posturas y movimientos de personas. Para ello, se utiliza la información del esqueleto proporcionada por el sensor Kinect y la biblioteca OpenNI. Se ha realizado un enfoque basado en técnicas de aprendizaje supervisado para generar modelos que clasifiquen posturas estáticas. En el caso de los movimientos, el enfoque se ha basado en clustering. Estos modelos, una vez generados, se incluyen como parte del software, que reacciona ante las posturas y gestos que realice un usuario.

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LEGOko NXT plaka eta ROS sistemaren arteko konektagarritasuna landu da proiektu honetan. NXT eta ROSen arteko konektagarritasuna aztertu ez ezik, zabor biltzaile baten portaera inplementatu da.

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79 p.

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A realistic quantum many-body system, characterized by a generic microscopic Hamiltonian, is accessible only through approximation methods. The mean field theories, as the simplest practices of approximation methods, commonly serve as a powerful tool, but unfortunately often violate the symmetry of the Hamiltonian. The conventional BCS theory, as an excellent mean field approach, violates the particle number conservation and completely erases quantumness characterized by concurrence and quantum discord between different modes. We restore the symmetry by using the projected BCS theory and the exact numerical solution and find that the lost quantumness is synchronously reestablished. We show that while entanglement remains unchanged with the particle numbers, quantum discord behaves as an extensive quantity with respect to the system size. Surprisingly, discord is hardly dependent on the interaction strengths. The new feature of discord offers promising applications in modern quantum technologies.

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[ES]El objetivo de este Trabajo de Fin de Grado es estudiar el programa llamado ROS, un entorno para la programación de robots. Proporciona una serie de herramientas, librerías, drivers… que facilitan en gran medida la programación de sistemas robóticos. Para realizar este estudio se utilizará ROS para crear una aplicación para un robot LEGO Mindstorms NXT. Estos robots son pequeños y versátiles, y son adecuados para la investigación. La aplicación que se llevará a cabo será un seguidor de línea, un robot capaz de seguir una pista dibujada sobre una superficie de otro color. Para programar la aplicación, se utilizarán en la medida de lo posible las herramientas proporcionadas por ROS. De esta manera, se espera alcanzar una mayor comprensión de ROS y de su funcionamiento, con sus fortalezas y sus debilidades.

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[EN] A new concept for fluid flow manipulation in microfluidic paper-based analytical devices ( µPADs) is presented by introducing ionogel materials as passive pumps. µPADs were fabricated using a new doubleside contact stamping process and ionogels were precisely photopolymerised at the inlet of the µPADs.The ionogels remain mainly on the surface of the paper and get absorbed in the superficial paper-fibers allowing for the liquid to flow from the ionogel into the paper easily. As a proof of concept the fluid flow and mixing behaviour of two different ionogels µPADs were compared with the non-treated µPADs.It was demonstrated that both ionogels highly affect the fluid flow by delaying the flow due to their different physical and chemical properties and water holding capacities.