5.- ENERGY

Energy is a natural resource extracted and transformed for a specific use in order to meet the services and goods production needs of the society. Regarding the primary energy sources, there are renewable energies and non-renewable energies.

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Renewable energies are those that come from inexhaustible sources or sources with regeneration capacity. Noteworthy renewable energies are: photovoltaic solar energy, solar thermal energy, wind power, marine energy, geothermal energy and biofuels.

Non-renewable or conventional energies are those that come from limited sources found in nature and, generally, cause a great environmental impact. The most common are fossil fuels such as coal, oil and natural gas. And, on the other hand, nuclear power obtained from nuclear fission and fusion.

Power plants are necessary to obtain electricity from these primary energy sources. Some examples are coal-fired power plants, combined cycle power plants, nuclear power plants, solar thermal power plants, photovoltaic power plants, hydroelectric power plants, wind power plants, etc.

Nowadays, non-renewable energies are increasingly scarce goods that, together with global warming, make the concept of energy efficiency more and more important. Increasingly advanced technological solutions are studied in order to obtain maximum efficiency in power generation, in the electric power systems to transport it, as well as in the energy consumption control and management. Technology and energy efficiency go hand in hand. An example is the growing expansion of smart grids. They cover from power generation with renewable energies and the power transmission and distribution systems to the management of energy consumption through smart metering systems, such as smart meters.

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ENERGY SUBCATEGORIES

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...
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5.2.- MICROGRIDS

Smart grids 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 componentsinto the smart grid.The conventional structure of the electrical system of...
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5.3.- RENEWABLE ENERGIES

Renewable energies are clean, unlimited and increasingly competitive sources of energy. They are energy sources based on the use of natural resources: sun, wind, water or plant or animal biomass. They differ from fossil fuels mainly in their diversity, abundance and potential for use in any part...
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5.4.- CONVENTIONAL ENERGIES

Conventional or non-renewable energies are all those energies that are found in nature in a limited way. Two types of conventional energies can be distinguished: fossil fuels and nuclear fuels. Coal, oil and naturalgas are fossil fuels. They come from biomass formed millions of years ago, which...
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5.5.- ENERGY STORAGE

Today, energy storage is essential for conventional electricity grids to take a significant step in the decentralization of energy. The problem is that electrical power cannot be stored in its original form, that is, it is necessary to convert it to other forms of energy whose storage is...
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5.6.- HIGH VOLTAGE AND ELECTRICAL PROTECTION SYSTEMS

High voltage power systems can be considered as one of the largest connected systems in the world. Hundreds of kilometers of power lines interconnect from small towns and cities to entire countries. Even underground cables interconnect islands under the sea to cover the energy needs of their...
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5.7.- INSTALLATIONS AND MAINTENANCE

The needs of today's society are a challenge for any industry, since they have to be in continuous evolution and renewal to adapt to those needs.In recent years, as a result of the new industrial revolution or "Industry 4.0", the emergence of the "Industrial Internet of Things" ("IIoT") and the...
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ENERGY UNITS
Showing 37-48 of 137 item(s)
POWER ELECTRONICS APPLICATION, WITH SCADA - AEL-PWEC
  • AEL-PWEC
Available
5.1.3.2.- POWER TRANSMISSION
AEL-PWEC
Power Electronics Application, with SCADA
The Power Electronics Application, with SCADA, "AEL-PWEC", has been designed to study the most important applications related to DC power electronics, single-phase AC power electronics, three-phase AC power electronics and thyristor power...
SWITCHING IN TRANSMISSION AND DISTRIBUTION SUBSTATIONS APPLICATION - AEL-SST-01
  • AEL-SST-01
Available
5.1.3.3.- POWER DISTRIBUTION AND LOADS
AEL-SST-01
Switching in Transmission and Distribution Substations Application
The Switching in Transmission and Distribution Substations Application, "AEL-SST-01", has been developed by EDIBON to study the most common operations carried out in these substations, such as, transference of the electrical service from the first...
MANUAL REACTIVE POWER COMPENSATION APPLICATION - AEL-MRPC
  • AEL-MRPC
Available
5.1.3.3.- POWER DISTRIBUTION AND LOADS
AEL-MRPC
Manual Reactive Power Compensation Application
The Manual Reactive Power Compensation Application, "AEL-MRPC", has been designed by EDIBON to study the effects of reactive power consumption in AC circuits on energy efficiency, and the power factor compensation procedures that allow this...
REACTIVE POWER COMPENSATION APPLICATION - AEL-RPC
  • AEL-RPC
Available
5.1.3.3.- POWER DISTRIBUTION AND LOADS
AEL-RPC
Reactive Power Compensation Application
The Reactive Power Compensation Application, "AEL-RPC", has been designed to study the reactive power effects in AC circuits, due to reactive loads, and its compensation procedures.Reactive power can be described as the quantity of "unused" power...
ADVANCED POWER FACTOR COMPENSATION APPLICATION - AEL-EECFP
  • AEL-EECFP
Available
5.1.3.3.- POWER DISTRIBUTION AND LOADS
AEL-EECFP
Advanced Power Factor Compensation Application
Industrial customers use three-phase power consumption with different power factors. If their power factor drops below a prescribed value, power losses in transmission lines increase. For this reason, the customers have to pay a penalty. In order...
SINGLE-PHASE AUTOMATIC POWER FACTOR COMPENSATION APPLICATION - AEL-APFC
  • AEL-APFC
Available
5.1.3.3.- POWER DISTRIBUTION AND LOADS
AEL-APFC
Single-phase Automatic Power Factor Compensation Application
The Single-phase Automatic Power Factor Compensation Application, "AEL-APFC", has been designed by EDIBON is an application designed to study the single phase automatic power factor controllers installed in the energy utilization points. In some...
DYNAMIC LOADS APPLICATION - AEL-DLT
  • AEL-DLT
Available
5.1.3.3.- POWER DISTRIBUTION AND LOADS
AEL-DLT
Dynamic Loads Application
The Dynamic Loads Application, "AEL-DLT", has been designed to study the behavior of the dynamic loads in the field of power systems.The application consists of a squirrel cage induction motor which will be used as a dynamic electrical load. In...
COMPUTER CONTROLLED MARINE POWER GENERATION AND DISTRIBUTION SYSTEM - MPGDC
  • MPGDC
Available
5.1.1.- SMART GRIDS AND POWER SYSTEMS (UTILITIES)
MPGDC
Computer Controlled Marine Power Generation and Distribution System
The Computer Controlled Marine Power Generation and Distribution System, "MPGDC", has been designed by EDIBON for both theoretical and practical training in the field of ship power generation and distribution. This system provides several levels...
MICROGRID POWER SYSTEMS - AEL-MGP
  • AEL-MGP
Available
5.2.- MICROGRIDS
AEL-MGP
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...
CONVENTIONAL ENERGY POWER PLANT - PWP-CE
Available
5.2.- MICROGRIDS
PWP-CE
Conventional Energy Power Plant
Accessory of AEL-MGP
This power plant is required to work with any other power plant offered in this catalog. Its purpose is, as in a real microgrid, to create the basis of the structure of the micro grid and determine the frequency and voltage parameters of the...
HYDROELECTRIC ENERGY POWER PLANT - PWP-HE
Available
5.2.- MICROGRIDS
PWP-HE
Hydroelectric Energy Power Plant
Accessory of AEL-MGP
The purpose of this application is the study of hydroelectric power plants in the context of micro grids. Hydroelectric power plants have a great capacity to supply energy at certain times of maximum demand due to their rapid response. Therefore,...
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