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      Multi-site European framework for real-time co-simulation of power systems

      research-article
      1 , , 2 , 1 , 2 , 2 , 3 , 1
      IET Generation, Transmission & Distribution
      The Institution of Engineering and Technology
      power system simulation, real-time systems, virtual instrumentation, distribution networks, transmission networks, Internet, delays, software architecture, multisite European framework, real-time cosimulation, power systems, virtual laboratories integration, software resources, hardware resources, geographically distributed laboratories, geographically distributed real-time cosimulation, geographically distributed RT cosimulation, digital RT simulators, shared communication network, Internet, modular framework architecture, Web browser, cosimulation interface algorithm, dynamic phasors, time delay, phase shift, simulation fidelity, slow transients, European Commission Joint Research Centres, RWTH Aachen University, Politecnico di Torino, transmission systems, distribution systems

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          Abstract

          The framework for virtual integration of laboratories enables co-simulation and joint experiments that include hardware and software resources hosted at geographically distributed laboratories. The underlying concept of such framework is geographically distributed real-time (RT) co-simulation. To this end, digital RT simulators are interfaced over long distances via shared communication network such as the Internet. This study proposes an architecture for a modular framework supporting virtual integration of laboratories that enable flexible integration of digital RT simulators across Europe. In addition, the framework includes an interface that enables access for third parties via a web browser. A co-simulation interface algorithm adopted in this study is based on representation of interface quantities in form of dynamic phasors. Time delay between RT digital simulators is compensated by means of phase shift that enables simulation fidelity for slow transients. The proposed architecture is realised for the integration of laboratories across Europe that are located at RWTH Aachen University in Germany, Politecnico di Torino in Italy and at European Commission Joint Research Centres in Petten, Netherland and in Ispra, Italy. The framework for virtual integration of laboratories presented in this study is applied for co-simulation of transmission and distribution systems.

          Most cited references12

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          Synchronized Phasor Measurement Applications in Power Systems

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            A Review of Architectures and Concepts for Intelligence in Future Electric Energy Systems

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              Real-Time Simulation Technologies for Power Systems Design, Testing, and Analysis

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                Author and article information

                Contributors
                Journal
                IET-GTD
                IET Generation, Transmission & Distribution
                IET Gener. Transm. Distrib.
                The Institution of Engineering and Technology
                1751-8687
                1751-8695
                7 June 2017
                23 August 2017
                30 November 2017
                : 11
                : 17
                : 4126-4135
                Affiliations
                [1 ] Institute for Automation of Complex Power Systems, RWTH Aachen University , Mathieustrasse 10, Aachen, Germany
                [2 ] Department of Energy, Politecnico di Torino, Corso Duca degli Abruzzi 24 , Turin, Italy
                [3 ] Institute for Energy and Transport, European Commission Joint Research Centre , Westerduinweg 3, Petten, Netherlands
                Article
                IET-GTD.2016.1576 GTD.SI.2016.1576.R1
                10.1049/iet-gtd.2016.1576
                fa95a168-e8c3-4472-9efc-658759bb29de

                This is an open access article published by the IET under the Creative Commons Attribution-NonCommercial-NoDerivs License ( http://creativecommons.org/licenses/by-nc-nd/3.0/)

                History
                : 30 September 2016
                : 24 March 2017
                : 10 April 2017
                Page count
                Pages: 0
                Funding
                Funded by: National Science Foundation of Germany
                Award ID: VILLAS - Excellenz Initiative
                Funded by: Research Council of Norway
                Award ID: 215942/E20
                Categories
                Research Article

                Computer science,Engineering,Artificial intelligence,Electrical engineering,Mechanical engineering,Renewable energy
                European Commission Joint Research Centres,transmission systems,geographically distributed real-time cosimulation,slow transients,dynamic phasors,distribution systems,virtual laboratories integration,software architecture,geographically distributed RT cosimulation,time delay,power system simulation,software resources,multisite European framework,digital RT simulators,RWTH Aachen University,phase shift,real-time systems,hardware resources,real-time cosimulation,virtual instrumentation,distribution networks,transmission networks,Internet,delays,power systems,geographically distributed laboratories,shared communication network,modular framework architecture,Web browser,cosimulation interface algorithm,simulation fidelity,Politecnico di Torino

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