6 resultados para Transmission network expansion planning (TNEP)

em Universitat de Girona, Spain


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El 17th Annual Meeting of the Florence Network (FN) va tenir lloc del 21 al 25 d’abril de 2009 a The Hague University of Applied Sciences (THU) Academy of Health-School of Nursing, sota el lema: “Patient/client centred healthcare”. The Ducht perspective with an international touch”, i es va centrar en l’actual situació dels drets dels pacients a Holanda aplicat en diferents camps de les cures infermeres. L’Escola d’Infermeria de la Universitat de Girona hi va participar amb l’assistència de dues professores i quatre estudiants. E nombre total d’estudiants que varen assistir a la FN es de 47. La procedència dels mateixos en total de 9 països diferents. De tots ells assistien per primer cop 18 persones 4 ho feien per segona vegada i 1 per tercera . Els objectius del treball que es presenta son els següents: 1, Conèixer l’opinió dels estudiants respecte a la seva participació a la Florence Network. 2, Saber quin perfil tenen els universitaris que hi assisteixen 3, Detectar els punts forts i els punts febles que destaquen els estudiants després de participar a la Florence Network

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A collection of slides from the authorpsilas seminar presentation is given

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This paper presents a study of connection availability in GMPLS over optical transport networks (OTN) taking into account different network topologies. Two basic path protection schemes are considered and compared with the no protection case. The selected topologies are heterogeneous in geographic coverage, network diameter, link lengths, and average node degree. Connection availability is also computed considering the reliability data of physical components and a well-known network availability model. Results show several correspondences between suitable path protection algorithms and several network topology characteristics

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We present a system for dynamic network resource configuration in environments with bandwidth reservation and path restoration mechanisms. Our focus is on the dynamic bandwidth management results, although the main goal of the system is the integration of the different mechanisms that manage the reserved paths (bandwidth, restoration, and spare capacity planning). The objective is to avoid conflicts between these mechanisms. The system is able to dynamically manage a logical network such as a virtual path network in ATM or a label switch path network in MPLS. This system has been designed to be modular in the sense that in can be activated or deactivated, and it can be applied only in a sub-network. The system design and implementation is based on a multi-agent system (MAS). We also included details of its architecture and implementation

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The work presented in this paper belongs to the power quality knowledge area and deals with the voltage sags in power transmission and distribution systems. Propagating throughout the power network, voltage sags can cause plenty of problems for domestic and industrial loads that can financially cost a lot. To impose penalties to responsible party and to improve monitoring and mitigation strategies, sags must be located in the power network. With such a worthwhile objective, this paper comes up with a new method for associating a sag waveform with its origin in transmission and distribution networks. It solves this problem through developing hybrid methods which hire multiway principal component analysis (MPCA) as a dimension reduction tool. MPCA reexpresses sag waveforms in a new subspace just in a few scores. We train some well-known classifiers with these scores and exploit them for classification of future sags. The capabilities of the proposed method for dimension reduction and classification are examined using the real data gathered from three substations in Catalonia, Spain. The obtained classification rates certify the goodness and powerfulness of the developed hybrid methods as brand-new tools for sag classification

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The design of control, estimation or diagnosis algorithms most often assumes that all available process variables represent the system state at the same instant of time. However, this is never true in current network systems, because of the unknown deterministic or stochastic transmission delays introduced by the communication network. During the diagnosing stage, this will often generate false alarms. Under nominal operation, the different transmission delays associated with the variables that appear in the computation form produce discrepancies of the residuals from zero. A technique aiming at the minimisation of the resulting false alarms rate, that is based on the explicit modelling of communication delays and on their best-case estimation is proposed