5.1.- SMART GRIDS AND POWER SYSTEMS

Smart grids are the result of the evolution of electric power systems. They are evolved networks that manage electricity demand in a sustainable, reliable and economical way. They are characterized by an advanced infrastructure adapted to facilitate the integration of new components into the smart grid.

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Due to the inclusion of renewable energies in electric power systems, the decentralized nature of electricity generation is increasingly evident. That is why the distribution of power flows has become a great challenge because, according to Kirchhoff’s laws, the electric current tends to circulate, to a greater extent, by power lines with lower impedance. This causes a great imbalance in the electrical grids and the subsequent efficiency reduction. The great progress made in power electronics have allowed to challenge Kirchhoff’s laws successfully, managing to control power flows in the most complex power grids.

Among the cutting-edge technological developments integrated in the smart grids nowadays to control power flows, there are: phase-shifting transformers (PST), flexible AC transmission systems (FACTS), static synchronous compensators (STATCOM), thyristor controlled series capacitors (TCSC) and static frequency converters (SFC). These technologies are installed in certain electrical substations to control the power flows of the grid, as well as the power factor. Thus, it substantially improves the efficiency of the entire electrical system.

Thanks to this technological evolution, which has given rise to smart grids, it has been possible to integrate renewable energy sources, such as wind power and photovoltaic power, into the grid, as well as to include electric vehicles in today's society. In turn, this has significantly reduced greenhouse gases (CO2).

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SMART GRIDS AND POWER SYSTEMS UNITS
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FINAL USER SMART GRID - SMART ENERGY APPLICATION - AEL-FUSG-E
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Final User Smart Grid - Smart Energy Application, "AEL-FUSG-E", is a trainer that reflects the real operation of actual Home Energy Management Systems. The purpose of the "AEL-FUSG-E" trainer is to make the user understand how smart devices work...
FINAL USER SMART GRID - NET METERING APPLICATION - AEL-FUSG-N
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Final User Smart Grid - Net Metering Application
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The AEL-FUSG-N is a trainer that reflects actual operations about Net-Metering, auto-consumption and electricity selling. For that purpose, this trainer has a synchronous generator that simulates a wind turbine.The wind turbine will be controlled...
ENERGY POWER PLANTS APPLICATION - AEL-EPP
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5.1.3.1.- POWER GENERATION
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Energy Power Plants Application
The Energy Power Plants Application, "AEL-EPP", has been designed by EDIBON for the study of the basic principles of operation of power plants as well as of the substations in charge of receiving the energy produced by them.The "AEL-EPP"...
PUMPING STORAGE POWER PLANT APPLICATION, WITH SCADA - AEL-GAD-01S
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5.3.6.- HYDRAULIC ENERGY
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Pumping Storage Power Plant Application, with SCADA
The Pumping Storage Power Plant Application, with SCADA, "AEL-GAD-01S", has been developed by Edibon to study the pumped storage power stations and their applications. Pumping Storage Power Plants Applications are a type of hydroelectric energy...
MICROGRID POWER SYSTEMS - AEL-MGP
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5.2.- MICROGRIDS
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Microgrid Power Systems
The Microgrid Power System, "AEL-MGP", has been designed for the theoretical-practical training on microgrid power systems. This system allows studying the architecture, management and the main control maneuvers carried out in a hybrid context...
COMPUTER CONTROLLED SMART GRIDS APPLICATION - AEL-BSGC
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The Computer Controlled Smart Grids Application, "AEL-BSGC", has been designed to study the Smart Grids in the generation, transmission, distribution and load consumption fields.Students and teachers of universities and research laboratories...
HIGH POWER SYNCHRONOUS GENERATORS APPLICATION - AEL-HPSG
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LOW POWER SYNCHRONOUS GENERATORS APPLICATION - AEL-LPSG
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Low Power Synchronous Generators Application
The Low Power Synchronous Generators Application, "AEL-LPSG", has been designed to study the procedure and the maneuvers requiredfor the synchronization of synchronous generators with the grid, with the aim of delivering the generated energy as...
POWER TRANSMISSION APPLICATION WITH SYNCHRONOUS GENERATOR - AEL-TI-07
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5.1.3.1.- POWER GENERATION
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