Hier finden Sie wissenschaftliche Publikationen aus den Fraunhofer-Instituten.

Design criteria for robust and secure next generation CPV control systems

: Benoit, P.; Fey, S.; Rohbogner, G.; Kohrs, R.; Wittwer, C.; Georg, D.; Wüllner, J.; Gombert, A.

Energietechnische Gesellschaft -ETG-:
Internationaler ETG-Kongress 2013. Energieversorgung auf dem Weg nach 2050. CD-ROM : Beiträge des Internationalen ETG-Kongresses vom 5. - 6. November 2013 in Berlin
Berlin: VDE-Verlag, 2013 (ETG-Fachbericht 139)
ISBN: 978-3-8007-3550-1
8 pp.
Internationaler ETG-Kongress <2013, Berlin>
Conference Paper
Fraunhofer ISE ()
Elektrische Energiesysteme; III-V und Konzentrator-Photovoltaik; Photovoltaische Module und Kraftwerke; Systemintegration und Netze – Strom; Wärme; Gas; Hochkonzentrierende Systeme (HCPV); Photovoltaische Kraftwerke; IKT für Komponenten im Smart Grid; CPV; ICT; System

The design of control systems of concentrator photovoltaic power plants will be more challenging in the future. Reasons are cost pressure, the increasing size of power plants, and new applications for operation, monitoring and maintenance required by grid operators, manufacturers and plant operators. Concepts and products for fixed-mounted photovoltaic can only partly be adapted since control systems for concentrator photovoltaic are considerable more complex due to the required high accurate sun-tracking. In order to assure reliable operation during a lifetime of more than 20 years, robustness of the control system is one crucial design criteria. This work considers common engineering technics for robustness, safety and security. Potential failures of the control system are identified and their effects are analyzed. Different attack scenarios are investigated. Outcomes are design criteria that encounter both: failures of system components and malicious attacks on the control system of future concentrator photovoltaic power plants. Such design criteria are a transparent state management through all system layers, self-tests and update capabilities for security concerns. The findings enable future research to develop a more robust and secure control system for concentrator photovoltaics when implementing new functionalities in the next generation.