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An OMNeT++ model of the control system of large-scale concentrator photovoltaic power plants

Poster abstract
: Benoit, P.; Fey, S.; Rohbogner, G.; Kreifels, N.; Kohrs, R.

Fulltext urn:nbn:de:0011-n-2756252 (194 KByte PDF)
MD5 Fingerprint: 95401f2ff4ec9d1dbd2d1eed9b33805c
Created on: 1.2.2014

Himmelspach, J. ; Association for Computing Machinery -ACM-; Institute for Computer Sciences, Social-Informatics and Telecommunications Engineering -ICST-, Brussels:
SimuTools 2013, 6th International ICST Conference on Simulation Tools and Techniques. Proceedings : 5 - 7 March 2013, Cannes, France
Brüssel: ICST, 2013
ISBN: 978-1-4503-2464-9
International Conference on Simulation Tools and Techniques (SIMUTools) <6, 2013, Cannes>
Conference Paper, Electronic Publication
Fraunhofer ISE ()
Elektrische Energiesysteme; Systemintegration und Netze – Strom; Wärme; Gas; Regenerative Stromversorgung; Elektrische Verteilnetze und Betriebsmittel; Dezentrale; netzgekoppelte Energiesysteme (Smart Grids); Solare Kraftwerke; OMNeT++; Framework; Photovoltaic Power (CPV)

The communication system of a large-scale concentrator photovoltaic power plant is very challenging. Manufacturers are building power plants having thousands of sun tracking systems equipped with communication and distributed over a wide area. Research is necessary to build a scalable communication system enabling modern control strategies. This poster abstract describes the ongoing work on the development of a simulation model of such power plants in OMNeT++. The model uses the INET Framework to build a communication network based on Ethernet. First results and problems of timing and data transmission experiments are outlined. The model enables research on new communication and control approaches to improve functionality and efficiency of power plants based on concentrator photovoltaic technology.