EU Project Erasmus+ (South Africa)

Project start/finish: 15-10-2017 / 14-10-2020

European Union project ERASMUS+ "Direct Current Technology: Renewable Energy Education and Skill Development in South Africa" (DCT-REES) aims to develop a new educational program on Direct Current (DC) technologies for South African (SA) universities, in order to supply the country with adequately trained professionals it needs to overcome its challenges in the field of electrical engineering. 

 

DCT-REES is an EU project with 14 universities from four countries working together. The Hague University of Applied Sciences is the coordinator of DCT-REES.  A summary on DCT-REES EU Programme: DCT-REES Direct Current Technology: Renewable Energy Education and Skill Development in South Africa

More information on DCT-REES: DC as Future Energy Carrier

 

DC System

DC Systems B.V. supplies 350 V DC components and the system architecture:

  • Full DC protection
  • DC/DC converter 350V to 48V connected to prechargers
  • LED drivers
  • AM1L Amstel Rectifier 
  • DC components for connecting batteries to the microgrid (scheduled for implementation)

 

ERASMUS+ EU Project Direct Current Technology: Renewable Energy Education and Skill Development in South Africa

Photo: In November, at the Cape Peninsula University of Technology (CPUT), Jonathan van der Heiden from DC Systems B.V. installed DC components for a test setup and demonstrated the working of the Current/OS based DC microgrid. 

 

EU Project Partners

Fachhochschule Aachen (DE), Katholieke Universiteit Leuven (BE), Technische Hochschule Koln (DE), Rheinisch-Westfaelische Technische Hochschule Aachen (DE), University Of Johannesburg (ZA), Cape Peninsula University Of Technology (ZA), University Of South Africa (ZA), Nelson Mandela University (ZA), Tshwane University Of Technology (ZA), Noordwes-Universiteit (ZA), Durban University Of Technology (ZA), Uc Limburg (BE), Technische Universiteit Delft (NL).  

Note: DC Systems B.V. is not a partner in this EU project, but supplier of 350 V DC components and system architecture.

 

 

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