995 resultados para Progettazione e Sviluppo di un Multiplayer Online Game su Reti Peer-to-Peer


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A new multi-energy CT for small animals is being developed at the Physics Department of the University of Bologna, Italy. The system makes use of a set of quasi-monochromatic X-ray beams, with energy tunable in a range from 26 KeV to 72 KeV. These beams are produced by Bragg diffraction on a Highly Oriented Pyrolytic Graphite crystal. With quasi-monochromatic sources it is possible to perform multi-energy investigation in a more effective way, as compared with conventional X-ray tubes. Multi-energy techniques allow extracting physical information from the materials, such as effective atomic number, mass-thickness, density, that can be used to distinguish and quantitatively characterize the irradiated tissues. The aim of the system is the investigation and the development of new pre-clinic methods for the early detection of the tumors in small animals. An innovative technique, the Triple-Energy Radiography with Contrast Medium (TER), has been successfully implemented on our system. TER consist in combining a set of three quasi-monochromatic images of an object, in order to obtain a corresponding set of three single-tissue images, which are the mass-thickness map of three reference materials. TER can be applied to the quantitative mass-thickness-map reconstruction of a contrast medium, because it is able to remove completely the signal due to other tissues (i.e. the structural background noise). The technique is very sensitive to the contrast medium and is insensitive to the superposition of different materials. The method is a good candidate to the early detection of the tumor angiogenesis in mice. In this work we describe the tomographic system, with a particular focus on the quasi-monochromatic source. Moreover the TER method is presented with some preliminary results about small animal imaging.

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La necessità di sviluppare questo progetto è nata dal fatto che quando due aziende desiderano collaborare in maniera costruttiva con rapporti di fornitura di materiali o lavorazioni, bisogna evitare che si verifichino scostamenti nei rapporti a discapito di uno dei due contraenti. La coscienza dell'inefficienza di un rapporto squilibrato ha portato le due aziende a intavolare un progetto migliorativo basato sulla massima trasparenza e propositività. Quando G.D ha deciso di avvalersi della fornitura da parte di Transmec per quanto riguarda il servizio di taglio del materiale, l'ha fatto per andare a cercare un miglior livello di efficacia ed efficienza. Il raggiungimento degli attuali livelli di performance non sarebbe stato possibile se entrambe le aziende non avessero collaborato attivamente nell'ottenimento degli standard desiderati. Questo studio è nato dal fatto che il modello interno adottato precedentemente da G.D per la ripartizione dei costi delle Business Unit non era più efficace se utilizzato come strumento di pagamento. Si rendeva quindi necessaria un'analisi accurata della situazione produttiva utilizzando gli approcci analitici resi disponibili nel corso degli anni come lo strumento per l'allocazione dei costi secondo le attività (Activity Based Costing) e la mappatura dei processi utilizzata nei casi di re-ingegnerizzazione dei reparti.

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The Department of Mechanical and Civil Engineering (DIMeC) of the University of Modena and Reggio Emilia is developing a new type of small capacity HSDI 2-Stroke Diesel engine (called HSD2), featuring a specifically designed combustion system, aimed to reduce weight, size and manufacturing costs, and improving pollutant emissions at partial load. The present work is focused on the analysis of the combustion and the scavenging process, investigated by means of a version of the KIVA-3V code customized by the University of Chalmers and modified by DIMeC. The customization of the KIVA-3V code includes a detailed combustion chemistry approach, coupled with a comprehensive oxidation mechanism for diesel oil surrogate and the modeling of turbulence/chemistry interaction through the PaSR (Partially Stirred Reactor) model. A four stroke automobile Diesel engine featuring a very close bore size is taken as a reference, for both the numerical models calibration and for a comparison with the 2-Stroke engine. Analysis is carried out trough a comparison between HSD2 and FIAT 1300 MultiJet in several operating conditions, at full and partial load. Such a comparison clearly demonstrates the effectiveness of the two stroke concept in terms of emissions reduction and high power density. However, HSD2 is still a virtual engine, and experimental results are needed to assume the reliability of numerical results.

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The control of a proton exchange membrane fuel cell system (PEM FC) for domestic heat and power supply requires extensive control measures to handle the complicated process. Highly dynamic and non linear behavior, increase drastically the difficulties to find the optimal design and control strategies. The objective is to design, implement and commission a controller for the entire fuel cell system. The fuel cell process and the control system are engineered simultaneously; therefore there is no access to the process hardware during the control system development. Therefore the method of choice was a model based design approach, following the rapid control prototyping (RCP) methodology. The fuel cell system is simulated using a fuel cell library which allowed thermodynamic calculations. In the course of the development the process model is continuously adapted to the real system. The controller application is designed and developed in parallel and thereby tested and verified against the process model. Furthermore, after the commissioning of the real system, the process model can be also better identified and parameterized utilizing measurement data to perform optimization procedures. The process model and the controller application are implemented in Simulink using Mathworks` Real Time Workshop (RTW) and the xPC development suite for MiL (model-in-theloop) and HiL (hardware-in-the-loop) testing. It is possible to completely develop, verify and validate the controller application without depending on the real fuel cell system, which is not available for testing during the development process. The fuel cell system can be immediately taken into operation after connecting the controller to the process.

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Analisi, progettazione e realizzazione di un applicativo per la distribuzione di dati finanziari in realtime attraverso l'utilizzo della tecnologia multicast in contesto produttivo reale con studio grafico dei miglioramenti qualitativi ottenuti.

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