5.1.- SMART GRIDS UND POWER SYSTEMS

Smart Grids sind das Ergebnis der Entwicklung von Stromversorgungssystemen. Es sind gewachsene Netze, die StromNachfrage nachhaltig, zuverlässig und wirtschaftlich verwalten. Sie zeichnen sich durch eine strongchrittliche Infrastruktur aus, die die Integration neuer Komponenten in das schlaue Netz.

Mehr sehen

Aufgrund der Einbeziehung von erneuerbaren Energien in Stromerzeugungssysteme wird der dezentrale Charakter der Stromerzeugung immer deutlicher. Deshalb ist die Verteilung von Stromflüssen zu einer großen Herausforderung geworden, weil nach den Kirchhoffschen Gesetzen der Strom in verstärktem Maße durch Stromleitungen mit geringerer Impedanz zirkuliert. Dies führt zu einem großen Ungleichgewicht in den elektrischen Netzen und der damit verbundenen Wirkungsgradminderung. Die grossen strongchritte, die in der Leistungselektronik erzielt wurden, haben es ermöglicht, die Kirchhoffschen Gesetze erfolgreich in Frage zu stellen, indem es gelungen ist, Leistungsflüsse in den komplexesten Stromnetzen zu kontrollieren.

Zu den technologischen Spitzenentwicklungen, die heutzutage in die schlauen Netze integriert sind, um die Leistungsflüsse zu kontrollieren, gibt es einige: Phasenschiebertransformatoren (PST), flexible Wechselstromübertragungssysteme (FACTS), statische Synchronkompensatoren (STATCOM), thyristorgesteuerte Reihenkondensatoren (TCSC) und statische Frequenzumrichter (SFC). Diese Technologien werden in bestimmten elektrischen Unterstationen installiert, um den Leistungsfluss des Netzes sowie den Leistungsfaktor zu regeln. Dadurch wird der Wirkungsgrad des gesamten elektrischen Systems erheblich verbessert.

Dank dieser technologischen Evolution, die zu intelligenten Netzen geführt hat, ist es gelungen, erneuerbare Energiequellen wie Windkraft und Photovoltaik in das Netz zu integrieren und Elektrofahrzeuge in die heutige Gesellschaft einzubinden. Dies wiederum hat die Treibhausgase (CO2) signifikant reduziert.

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SMART GRIDS UND POWER SYSTEMS SYSTEME FÜR TECHNISCHE AUSBILDUNG

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POWER PLANTS SIMULATION SOFTWARE - PSV-PPSS
  • PSV-PPSS
Available
5.1.3.1.- STROMERZEUGUNG

PSV-PPSS

Software zur Simulation von Kraftwerken

To understand the impact of power plants as well as in order to improve its operation, EDIBON has developed a set of SCADA software to simulate power plants, through which teachers, researchers and students will be able to experiment with a wide...
HYDROELECTRIC POWER PLANTS SIMULATOR - PSV-HPPS-SOF
Available
5.1.3.1.- STROMERZEUGUNG

PSV-HPPS-SOF

Simulator für Wasserkraftwerke

Zubehör von PSV-PPSS
Energy generation from water flows is the most exploited renewable energy source in the world for obtaining electricity, due to its simplicity of operation and its adaptability to different environments. The orography of the terrain is essential...
GAS POWER PLANTS SIMULATOR - PSV-GSPP-SOF
Available
5.1.3.1.- STROMERZEUGUNG

PSV-GSPP-SOF

Simulator für Gaskraftwerke

Zubehör von PSV-PPSS
The PSV-GSPP-SOF software has been designed by EDIBON with the aim of showing the user the basic principles of operation of Brayton cycle gas turbine power plants, exposing in a didactic way the elements and parameters present in the generation...
WIND POWERED POWER PLANT SIMULATOR - PSV-WPPP-SOF
Available
5.1.3.1.- STROMERZEUGUNG

PSV-WPPP-SOF

Simulator für Windkraftwerke

Zubehör von PSV-PPSS
Wind power is the conversion of wind energy into a useful form of energy, whether using wind turbines to produce electricity, windmills for mechanical power, wind pumps to pump water or sewage, or sails to move boats. The most significant use of...
BIOMASS POWER PLANT SIMULATOR - PSV-BPP-SOF
Available
5.1.3.1.- STROMERZEUGUNG

PSV-BPP-SOF

Simulator für Biomassekraftwerke

Zubehör von PSV-PPSS
The operation and structure of biomass plants are based on the Rankine steam cycle, with the characteristic that the fuel burned in the boiler is organic matter called biomass, serving as a type of energy that can be considered renewable. In this...
GEOTHERMAL POWER PLANTS SIMULATOR - PSV-GPP-SOF
Available
5.1.3.1.- STROMERZEUGUNG

PSV-GPP-SOF

Simulator für Geothermiekraftwerke

Zubehör von PSV-PPSS
In certain areas of the earth there are geothermal fields where the area of land has a higher than normal thermal gradient, i.e. a much greater increase in temperature at depth. These areas are home to the high-temperature geothermal steam...
HELIOTHERMIC SOLAR POWER PLANTS SIMULATOR - PSV-HSPP-SOF
Available
5.1.3.1.- STROMERZEUGUNG

PSV-HSPP-SOF

Simulator für heliothermische Kraftwerke

Zubehör von PSV-PPSS
There are certain areas of the earth where there is high solar radiation. This radiation can be used, for example, in the form of heat. This heat, in turn, is concentrated in certain points to obtain water vapour at high temperatures. This steam...
FINAL USER SMART GRID SYSTEM - AEL-FUSG
  • AEL-FUSG
Available
5.1.2.- INTELLIGENTE NETZE UND ENERGIESYSTEME (ENDBENUTZER)

AEL-FUSG

Smart-Grid-System (Endnutzer)

What is a Smart Grid? A smart grid is an electrical grid that uses information and communications technology to gather and act on information about the behaviours of suppliers and consumers, in an automated fashion to improve the efficiency,...
FINAL USER SMART GRID - SMART METER APPLICATION - AEL-FUSG-M
Available
5.1.2.- INTELLIGENTE NETZE UND ENERGIESYSTEME (ENDBENUTZER)

AEL-FUSG-M

Smart Grid (Endnutzer) - Anwendung Smart Meter

Zubehör von AEL-FUSG
Nowadays, the main goal of all major electric utilities is to achieve a perfect synchronization between power generation and consumption. For that purpose, some activities, such as real-time remote management and monitoring of the energy...
FINAL USER SMART GRID - SMART ENERGY APPLICATION - AEL-FUSG-E
Available
5.1.2.- INTELLIGENTE NETZE UND ENERGIESYSTEME (ENDBENUTZER)

AEL-FUSG-E

Smart Grid (Endnutzer) - Anwendung Energiemanagement

Zubehör von AEL-FUSG
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
Available
5.1.2.- INTELLIGENTE NETZE UND ENERGIESYSTEME (ENDBENUTZER)

AEL-FUSG-N

Smart Grid (Endnutzer) - Anwendung Net-Metering

Zubehör von AEL-FUSG
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
  • AEL-EPP
Available
5.1.3.1.- STROMERZEUGUNG

AEL-EPP

Anwendung von Kraftwerken

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
  • AEL-GAD-01S
Available
5.3.6.- HYDRAULISCHE ENERGIE

AEL-GAD-01S

Anwendung von Pumpspeicher-Hydraulikkraftwerken mit 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
  • AEL-MGP
Available
5.2.- MIKROGRIDE

AEL-MGP

Mikrogrid-Energiesysteme

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
  • AEL-BSGC
Available
5.1.3.1.- STROMERZEUGUNG

AEL-BSGC

Anwendung von Smart Grids, gesteuert vom Computer (PC)

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
  • AEL-HPSG
Available
5.1.3.1.- STROMERZEUGUNG

AEL-HPSG

Anwendung von Hochleistungs-Synchrongeneratoren

The High Power Synchronous Generators Application, "AEL-HPSG", has been designed by EDIBON to study the procedure and the maneuvers required for the synchronization of synchronous generators with the grid, with the aim of delivering the generated...
LOW POWER SYNCHRONOUS GENERATORS APPLICATION - AEL-LPSG
  • AEL-LPSG
Available
5.1.3.1.- STROMERZEUGUNG

AEL-LPSG

Anwendung von Niedrigleistungs-Synchrongeneratoren

The Low Power Synchronous Generators Unit, "AEL-LPSG", has been designed by EDIBON to study the procedure and the maneuvers required for the synchronization of synchronous generators with the grid, with the aim of delivering the generated energy...
ANALYSIS OF THREE-PHASE POWER LINES APPLICATION - AEL-TI-01
  • AEL-TI-01
Available
5.1.3.2.- KRAFTÜBERTRAGUNG

AEL-TI-01

Anwendung der Analyse dreiphasiger Leistungslinien

The Analysis of Three-phase Power Lines Application, "AEL-TI-01", includes a series of modules which allow the study of the most important characteristics of aerial lines.Among them we can find: the aerial line module, which is configurable with...
ARC SUPPRESSION COIL APPLICATION - AEL-TI-03
  • AEL-TI-03
Available
5.1.3.2.- KRAFTÜBERTRAGUNG

AEL-TI-03

Anwendung der Lichtbogenlöschspule

The Arc Suppression Coil Application, "AEL-TI- 03", has been designed by EDIBON to show the students how it is possible to neutralize an earth fault current with a Petersen Coil.For this purpose, this application includes a Petersen Coil module...
UNDERGROUND TRANSMISSION LINES APPLICATION - AEL-TI-04
  • AEL-TI-04
Available
5.1.3.2.- KRAFTÜBERTRAGUNG

AEL-TI-04

Anwendung von unterirdischen Übertragungsleitungen

The Underground Transmission Lines Application, "AEL-TI-04", has been designed to study the most important characteristics of underground transmission lines such as critical length, capacitive, characteristic impedance, energy losses, etc. Thus,...
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