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Published in: Electrical Engineering 3/2018

26-03-2018 | Original Paper

Analysis of faults in active distribution network with and without synchronous generator using instantaneous symmetrical components in time domain

Authors: Vladica Mijailović, Dragan Ćetenović, Aleksandar Ranković, Predrag Petrović, Dimitrije Rozgić

Published in: Electrical Engineering | Issue 3/2018

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Abstract

The paper demonstrates the application of instantaneous symmetrical components method for the analytical calculation of all types of short-circuit currents in faulted distribution feeder with and without three-phase synchronous distributed generation (DG) connected. In active distribution systems, time-domain short-circuit current analysis is required in the processes of protective devices coordination and fault localization. In terms of the impact on the fault current, synchronous generator is the most critical DG type. The method enables encompassing initial conditions (load currents and voltages) before the fault occurs, critical conditions at the moment of fault occurrence, shunt parameters of network elements and the degree of voltage unbalance present in the feeder. Also, the procedure that we propose enables calculation of short-circuit current when the fault arc resistance cannot be neglected. Comparison with results of the fault current calculations based on the IEC methodology was performed through simulation tests and results.

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Literature
1.
go back to reference Rosolowski E, Michalik M (1994) Fast identification of symmetrical components by use of a state observer. IEE Proc Gener Transm Distrib 141(6):617–622CrossRef Rosolowski E, Michalik M (1994) Fast identification of symmetrical components by use of a state observer. IEE Proc Gener Transm Distrib 141(6):617–622CrossRef
2.
go back to reference Paap GC (2000) Symmetrical components in the time domain and their application to power network calculations. IEEE Trans Power Syst 15(2):522–528CrossRef Paap GC (2000) Symmetrical components in the time domain and their application to power network calculations. IEEE Trans Power Syst 15(2):522–528CrossRef
3.
go back to reference Tenti P, Willems JL, Mattaveli P, Tedeschi E (2007) Generalized symmetrical components for periodic non-sinusoidal three-phase signals. Electr Power Qual Util 13(1):9–15 Tenti P, Willems JL, Mattaveli P, Tedeschi E (2007) Generalized symmetrical components for periodic non-sinusoidal three-phase signals. Electr Power Qual Util 13(1):9–15
4.
go back to reference Leva S (2009) Power network asymmetrical faults analysis using instantaneous symmetrical components. J Electromagn Anal Appl 1:205–2013 Leva S (2009) Power network asymmetrical faults analysis using instantaneous symmetrical components. J Electromagn Anal Appl 1:205–2013
5.
go back to reference Liao H, Milanovic JV (2017) Methodology for the analysis of voltage unbalance in networks with single-phase distributed generation. IET Gener Transm Distrib 11(2):550–559CrossRef Liao H, Milanovic JV (2017) Methodology for the analysis of voltage unbalance in networks with single-phase distributed generation. IET Gener Transm Distrib 11(2):550–559CrossRef
6.
go back to reference Abdel-Akher M, Mohamed NK (2010) Fault analysis of multiphase distribution systems using symmetrical components. IEEE Trans Power Deliv 25(4):2931–2939CrossRef Abdel-Akher M, Mohamed NK (2010) Fault analysis of multiphase distribution systems using symmetrical components. IEEE Trans Power Deliv 25(4):2931–2939CrossRef
7.
go back to reference Gandelli A, Leva S, Morando AP (2000) Topological considerations on the symmetrical components transformation. IEEE Trans Circuits Syst I Fundam Theory Appl 47(8):1202–1211CrossRef Gandelli A, Leva S, Morando AP (2000) Topological considerations on the symmetrical components transformation. IEEE Trans Circuits Syst I Fundam Theory Appl 47(8):1202–1211CrossRef
8.
go back to reference Jabr RA, Džafic I (2014) A Fortescue approach for real-time short circuit computation in multiphase distribution networks. IEEE Trans Power Syst 30(6):3276–3285CrossRef Jabr RA, Džafic I (2014) A Fortescue approach for real-time short circuit computation in multiphase distribution networks. IEEE Trans Power Syst 30(6):3276–3285CrossRef
9.
go back to reference Strezoski LV, Prica M (2016) Real-time short-circuit analysis of active distribution systems. In: Proceedings of 2016 IEEE power and energy conference (PECI), 19–20 Feb 2016, pp 1–6 Strezoski LV, Prica M (2016) Real-time short-circuit analysis of active distribution systems. In: Proceedings of 2016 IEEE power and energy conference (PECI), 19–20 Feb 2016, pp 1–6
10.
go back to reference Muljadi E, Gevorgian V (2011) Short-circuit modeling of a wind power plant. In: Proceedings of 2011 IEEE power and energy society general meeting Detroit, MI, 24–29 July 2011, pp 1–8 Muljadi E, Gevorgian V (2011) Short-circuit modeling of a wind power plant. In: Proceedings of 2011 IEEE power and energy society general meeting Detroit, MI, 24–29 July 2011, pp 1–8
11.
go back to reference Walling RA, Reichard ML (2009) Short circuit behavior of wind turbine generators. In: Proceedings of 2009 62nd IEEE annual conference for protective relay engineers, College Station, TX, 29 March–2 April 2009, pp 1–11 Walling RA, Reichard ML (2009) Short circuit behavior of wind turbine generators. In: Proceedings of 2009 62nd IEEE annual conference for protective relay engineers, College Station, TX, 29 March–2 April 2009, pp 1–11
12.
go back to reference Sulla F, Svensson J, Samuelsson O (2011) Symmetrical and unsymmetrical short-circuit current of squirrel-cage and doubly fed induction generators. Electr Power Syst Res 81:1610–1618CrossRef Sulla F, Svensson J, Samuelsson O (2011) Symmetrical and unsymmetrical short-circuit current of squirrel-cage and doubly fed induction generators. Electr Power Syst Res 81:1610–1618CrossRef
13.
go back to reference Howard DF, Smith TM, Starke M, Harley RG (2012) Short circuit analysis of induction machines—wind application. In: Proceedings of 2012 IEEE transmission and distribution conference and exposition, Orlando, FL, 7–10 May 2012, pp 1–8 Howard DF, Smith TM, Starke M, Harley RG (2012) Short circuit analysis of induction machines—wind application. In: Proceedings of 2012 IEEE transmission and distribution conference and exposition, Orlando, FL, 7–10 May 2012, pp 1–8
14.
go back to reference Howard DF (2013) Short-circuit currents in wind-turbine generator networks. Dissertation, Department of Electrical Engineering, Georgia Institute of Technology, Atlanta, GA, Dec 2013, pp 1–273 Howard DF (2013) Short-circuit currents in wind-turbine generator networks. Dissertation, Department of Electrical Engineering, Georgia Institute of Technology, Atlanta, GA, Dec 2013, pp 1–273
15.
go back to reference Williams JR, Karlson B (2012) Wind power plant short-circuit modeling guide. Sandia Nat Lab, Sandia Report SAND2012-6664, Albuquerque, NM, August 2012, pp 1–31 Williams JR, Karlson B (2012) Wind power plant short-circuit modeling guide. Sandia Nat Lab, Sandia Report SAND2012-6664, Albuquerque, NM, August 2012, pp 1–31
17.
go back to reference International Electrotechnical Commission (2016) Short-circuit currents in three-phase AC systems—Part 0: calculation of currents. IEC 60909-0, Ed 2, Geneva, Switzerland, pp 10–11 International Electrotechnical Commission (2016) Short-circuit currents in three-phase AC systems—Part 0: calculation of currents. IEC 60909-0, Ed 2, Geneva, Switzerland, pp 10–11
18.
go back to reference Strezoski L, Prica M (2016) Calculation of relay currents in active weakly-meshed distribution systems. In: Proceedings of 2016 Clemson University power system conference (PSC), Clemson, SC, 8–11 March 2016, pp 1–8 Strezoski L, Prica M (2016) Calculation of relay currents in active weakly-meshed distribution systems. In: Proceedings of 2016 Clemson University power system conference (PSC), Clemson, SC, 8–11 March 2016, pp 1–8
19.
go back to reference Milanovic JV, Preece R (2014) Investigation of fault current contribution and management of AC machines. School of Electrical and Electronic Engineering, The University of Manchester, Ref: UM_EEPS_ENW4.2-7/14, 16 July 2016, pp 1–53 Milanovic JV, Preece R (2014) Investigation of fault current contribution and management of AC machines. School of Electrical and Electronic Engineering, The University of Manchester, Ref: UM_EEPS_ENW4.2-7/14, 16 July 2016, pp 1–53
20.
go back to reference Karaliolios P, Ischenko A, Coster E, Myrzik J, Kling W (2008) Overview of short-circuit contribution of various distributed generators on the distribution network. In: Proceedings of 2008 43rd international universities power engineering conference UPEC, 1–4 Sept 2008. https://doi.org/10.1109/UPEC.2008.4651553 Karaliolios P, Ischenko A, Coster E, Myrzik J, Kling W (2008) Overview of short-circuit contribution of various distributed generators on the distribution network. In: Proceedings of 2008 43rd international universities power engineering conference UPEC, 1–4 Sept 2008. https://​doi.​org/​10.​1109/​UPEC.​2008.​4651553
21.
go back to reference Bollen M, Hassan F (2011) Integration of distributed generation in the power system. IEEE Press & Wiley, New YorkCrossRef Bollen M, Hassan F (2011) Integration of distributed generation in the power system. IEEE Press & Wiley, New YorkCrossRef
22.
go back to reference Chen TH, Chen MS, Lee WJ, Kotas P, Van Olinda P (1992) Distribution system short-circuit analysis—a rigid approach. IEEE Trans Power Syst 7(1):444–450CrossRef Chen TH, Chen MS, Lee WJ, Kotas P, Van Olinda P (1992) Distribution system short-circuit analysis—a rigid approach. IEEE Trans Power Syst 7(1):444–450CrossRef
23.
go back to reference Halpin SM, Grigsby LL, Gross CA, Newls RM (1994) An improved fault analysis algorithm for unbalanced multi-phase power distribution systems. IEEE Trans Power Deliv 9(3):1332–1338CrossRef Halpin SM, Grigsby LL, Gross CA, Newls RM (1994) An improved fault analysis algorithm for unbalanced multi-phase power distribution systems. IEEE Trans Power Deliv 9(3):1332–1338CrossRef
24.
go back to reference Iravani MR, Karimi-Ghartemani M (2003) Online estimation of steady state and instantaneous symmetrical components. IEE Proc Gener Trans Distr 150(5):616–622CrossRef Iravani MR, Karimi-Ghartemani M (2003) Online estimation of steady state and instantaneous symmetrical components. IEE Proc Gener Trans Distr 150(5):616–622CrossRef
25.
go back to reference Marvik JI (2011) Fault Localization in Medium Voltage Distribution Networks with Distributed Generation. Dissertation, Norwegian University of Science and Technology, Faculty of Information Technology, Mathematics and Electrical Engineering, Department of Electric Power Engineering, Trondheim, Norway, June 2011, pp 1–166 Marvik JI (2011) Fault Localization in Medium Voltage Distribution Networks with Distributed Generation. Dissertation, Norwegian University of Science and Technology, Faculty of Information Technology, Mathematics and Electrical Engineering, Department of Electric Power Engineering, Trondheim, Norway, June 2011, pp 1–166
26.
go back to reference Marx S, Bender D (2016) An Introduction to Symmetrical Components, System Modeling and Fault Calculation. In: Proc 33th Annual HANDS-ON Relay School, Washington State University Pullman, Washington, USA, 16–20 March 2016, pp 1–74 Marx S, Bender D (2016) An Introduction to Symmetrical Components, System Modeling and Fault Calculation. In: Proc 33th Annual HANDS-ON Relay School, Washington State University Pullman, Washington, USA, 16–20 March 2016, pp 1–74
27.
go back to reference Gonen T (2013) Modern power system analysis, 2nd edn. Taylor&Francis Group, Abingdon Gonen T (2013) Modern power system analysis, 2nd edn. Taylor&Francis Group, Abingdon
29.
go back to reference Spetlik J, Tlusty J (2005) Analysis of distributed generation sources using abc synchronous machine model. In: Proceedings of 2005 international conference on future power systems, Amsterdam, Netherlands, 18 Nov 2005, pp 1–6 Spetlik J, Tlusty J (2005) Analysis of distributed generation sources using abc synchronous machine model. In: Proceedings of 2005 international conference on future power systems, Amsterdam, Netherlands, 18 Nov 2005, pp 1–6
Metadata
Title
Analysis of faults in active distribution network with and without synchronous generator using instantaneous symmetrical components in time domain
Authors
Vladica Mijailović
Dragan Ćetenović
Aleksandar Ranković
Predrag Petrović
Dimitrije Rozgić
Publication date
26-03-2018
Publisher
Springer Berlin Heidelberg
Published in
Electrical Engineering / Issue 3/2018
Print ISSN: 0948-7921
Electronic ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-018-0689-5

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