3 resultados para Power line inspection system

em Consorci de Serveis Universitaris de Catalunya (CSUC), Spain


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This paper wants to show a solution for mobility in public transport. Nowadays, the high number of mobile devices with wireless geolocation and Internet data connection has become commonly used tools, as well as partial solutions to facilitate public transport focused on one means of transport (Bus, Underground ...). We collect information from public transport (means of transport, routes, schedules, fare information ...) and adapt it to different users (residents, visitors, public service staff ...). MoveOnApp is the solution adapting its user interface: finding nearby stops, planning a route, knowing schedules or real time service (connecting to the available services), or showing the route of the line. The system could incorporate new cities and regions, or new means of transport with updating service; at first we offered information of public transport from Palma (Majorca Island, Spain): moveOn Palma.

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This paper presents a complete control architecture that has been designed to fulfill predefined missions with an autonomous underwater vehicle (AUV). The control architecture has three levels of control: mission level, task level and vehicle level. The novelty of the work resides in the mission level, which is built with a Petri network that defines the sequence of tasks that are executed depending on the unpredictable situations that may occur. The task control system is composed of a set of active behaviours and a coordinator that selects the most appropriate vehicle action at each moment. The paper focuses on the design of the mission controller and its interaction with the task controller. Simulations, inspired on an industrial underwater inspection of a dam grate, show the effectiveness of the control architecture

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Fault location has been studied deeply for transmission lines due to its importance in power systems. Nowadays the problem of fault location on distribution systems is receiving special attention mainly because of the power quality regulations. In this context, this paper presents an application software developed in Matlabtrade that automatically calculates the location of a fault in a distribution power system, starting from voltages and currents measured at the line terminal and the model of the distribution power system data. The application is based on a N-ary tree structure, which is suitable to be used in this application due to the highly branched and the non- homogeneity nature of the distribution systems, and has been developed for single-phase, two-phase, two-phase-to-ground, and three-phase faults. The implemented application is tested by using fault data in a real electrical distribution power system