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Volume 2017,
Issue 1
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Laboratory infrastructure driven key performance indicator development using the smart grid architecture model
- Author(s): Mazheruddin H. Syed 1 ; Efren Guillo-Sansano 1 ; Steven M. Blair 1 ; Graeme M. Burt 1 ; Thomas I. strasser 2 ; Helfried Brunner 2 ; Oliver Gehrke 3 ; Jose E. Rodriguez-Seco 4
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View affiliations
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Affiliations:
1:
Institute for Energy and Environment, University of Strathclyde , Glasgow, UK ;
2: Electric Energy Systems, Center for Energy, AIT Austrian Institute of Technology GmbH , Vienna, Austria ;
3: Department of Electrical Engineering, Technical University of Denmark , Roskilde, Denmark ;
4: Energy and Environment Division, TECNALIA , Bizkaia, Spain
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Affiliations:
1:
Institute for Energy and Environment, University of Strathclyde , Glasgow, UK ;
- Source:
Volume 2017, Issue 1,
October
2017,
p.
1866 – 1870
DOI: 10.1049/oap-cired.2017.1051 , Online ISSN 2515-0855
This is an open access article published by the IET under the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/)
Published
01/10/2017

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Inspec keywords: power system control; smart power grids
Other keywords: smart grid architecture model; power system control architecture validation; power system control architecture testing; improved cooperation; key performance indicator development; laboratory infrastructure; control functions; laboratory experiments; round robin testing
Subjects: Control of electric power systems; Control engineering computing; Power system control
References
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8. Martini, L., Radaelli, L., Brunner, H., et al: ‘ELECTRA IRP approach to voltage and frequency control for future power systems with high DER penetrations’. Proc. of 23rd Int. Conf. on Electricity Distribution CIRED, Lyon, France, 2015, pp. 1–4.
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1. Strasser, T., Andren, F.P., Lauss, G., et al: ‘Towards holistic power distribution system validation and testing – an overview and discussion of different possibilities’, e & i Elecktrotechnik und Informationstechnik, 2017, 134, (1), pp. 71–77 (doi: 10.1007/s00502-016-0453-3).
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4. Buscher, M., Lehnhoff, S., Rohjans, S., et al: ‘Using large-scale local and cross-location experiments for smart grid system validation’. Proc. of 41st Annual Conf. of the IEEE Industrial Electronics Society IECON, Yokohama, 2015, pp. 4621–4626.
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7. Guillo-Sansano, E., Syed, M.H., Dambrauskas, P., et al: ‘Transitioning from centralized to distributed control: using SGAM to support a collaborative development of web if cells architecture for real time control’. Proc. of CIRED Workshop, Helsinki, Finland, 2016, pp. 1–4.
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