Sesión 1:
Lunes 27 de diciembre de 2021, de 09:00 a 13:00 horas.
·        
Course
presentation and technical notes.
·        
The
modern energy scenario: from centralized to distributed generation. 
o  
Description
of the latest changes in the electric power systems. 
o  
Data on
electricity production in Europe. 
o  
Distributed
generation technologies and microgrids.
 
Sesión 2:
Martes 28 de diciembre de 2021, de 09:00 a 13:00 horas.
·        
Types of electric vehicles. 
o  
Description
of Hybrid Electric Vehicles, Plug-in Hybrid Electric Vehicles and Full Electric
Vehicles. 
o  
The
market of electric vehicles in Europe. 
o  
Technical
data of electric vehicles. 
o  
Main
characteristics of storage batteries.
 
Sesión 3:
Miércoles 29 de diciembre de 2021, de 09:00 a 13:00 horas.
·        
Electric vehicle charging infrastructures. 
o  
Conductive
charging, wireless charging and battery swapping. 
o  
AC vs DC charging. 
o  
Types of connectors. 
o  
Types of
wall-boxes and charging stations. 
o  
The
spread of charging stations in Europe. 
Sesión 4:
Lunes 03 de enero de 2022, de 15:00 a 19:00 horas.
·        
Impact of
electric mobility on the power system.
o  
The power
demand curve in presence of numerous electric vehicles.
o  
Integration
of the electric mobility with renewable energy sources. 
o  
Electric
vehicles as storage systems: vehicle-to-grid (V2G), vehicle-to-building (V2B)
and vehicle-to-home (V2H) technologies. 
o  
Participation
of electric vehicle fleets to the Ancillary Services Market.
o  
Smart
charging of electric vehicles.
 
Sesión 5:
Martes 04 de enero de 2022, de 15:00 a 19:00 horas.
·        
Energy
Management Systems (Part I/II).
o   Development of optimization
models to daily operate a microgrid or a portion of the public distribution
network with the presence of renewable energy power plants and electric mobility
infrastructures. Examples in the Matlab/Yalmip
environment.
 
Sesión 6:
Miércoles 05 de enero de 2022, de 15:00 a 19:00 horas.
·        
Energy
Management Systems (Part II/II).
o   Development of optimization
models to daily operate a microgrid or a portion of the public distribution
network with the presence of renewable energy power plants and electric
mobility infrastructures. Examples in the
Matlab/Yalmip environment.
·        
Evaluation.
·        
Course clousure. 
o  
Charging
infrastructures for electric buses.