Transient Short-Circuit Behaviour of Distributed Energy Sources and Their Influence on Protection Coordination

This paper presents the results obtained by research on the influence of distributed generation (DG) on protection in the distribution network. Generation connected to the grid is subject to protection regulations. Applying the present regulations to distributed generation results in unnecessary dis...

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Published in41st International Universities Power Engineering Conference: UPEC 2006: 6th-8th September 2006, Northumbria University, Newcastle upon Tyne, UK: Conference Proceedings Vol. 2; pp. 536 - 539
Main Authors Geldtmeijer, D.A.M., Provoost, F., Myrzik, J.M.A., Kling, W.L.
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.09.2006
Subjects
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ISBN1861353421
9781861353429
DOI10.1109/UPEC.2006.367535

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Abstract This paper presents the results obtained by research on the influence of distributed generation (DG) on protection in the distribution network. Generation connected to the grid is subject to protection regulations. Applying the present regulations to distributed generation results in unnecessary disconnection of these distributed generators. This may lead to problems at a high penetration level of distributed generation, e.g. a long-term disturbed voltage level in the grid. Thus revision of the present protection coordination is necessary. To investigate the effect of different protection schemes, a dynamic model of a distribution network is designed. This model is implemented in DIgSILENT PowerFactory for dynamic studies. The research shows that it is possible for DG to ride-through a fault in an adjacent feeder. It is also provides a protection scheme for DG that distinguishes a fault in an adjacent feeder and a fault in the same feeder as the DG. By applying this scheme unnecessary disconnection of DG will be avoided
AbstractList This paper presents the results obtained by research on the influence of distributed generation (DG) on protection in the distribution network. Generation connected to the grid is subject to protection regulations. Applying the present regulations to distributed generation results in unnecessary disconnection of these distributed generators. This may lead to problems at a high penetration level of distributed generation, e.g. a long-term disturbed voltage level in the grid. Thus revision of the present protection coordination is necessary. To investigate the effect of different protection schemes, a dynamic model of a distribution network is designed. This model is implemented in DIgSILENT PowerFactory for dynamic studies. The research shows that it is possible for DG to ride-through a fault in an adjacent feeder. It is also provides a protection scheme for DG that distinguishes a fault in an adjacent feeder and a fault in the same feeder as the DG. By applying this scheme unnecessary disconnection of DG will be avoided
Author Myrzik, J.M.A.
Geldtmeijer, D.A.M.
Provoost, F.
Kling, W.L.
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  organization: Eindhoven Univ. of Technol
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Snippet This paper presents the results obtained by research on the influence of distributed generation (DG) on protection in the distribution network. Generation...
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StartPage 536
SubjectTerms Cables
Distributed control
Joining processes
Mesh generation
Power quality
Power system stability
Protective relaying
Substation protection
Synchronous generators
Voltage
Title Transient Short-Circuit Behaviour of Distributed Energy Sources and Their Influence on Protection Coordination
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