SMART GRID ISLANDING, FAULT DETECTION AND CLASSIFICATION WITH DISTRIBUTED GENERATION BASED ON WAVELET ALIENATION CURRENT SIGNALS APPROACH

Authors

  • Kamala Devi Kolavennu Department of Electrical and Electronics Engineering, Bapatla Engineering College, Bapatla, Andrapradesh, India. Author
  • Abdul Gafoor Shaik Department of Electrical Engineering, Indian Institute of Technology, Jodhpur, Rajasthan, India. Author

Keywords:

Distributed Generation, Alienation Coefficients, Distribution Network, Load Change, Islanding Index, Wavelet Transform

Abstract

The Distributed generation (DG) is gaining significant attention due to increase in the demand for electricity. Distributed generations are mostly used with the association of power distribution systems to energize local loads and network. Islanding is technically an undesirable condition that demands necessary steps to reduce negative effects in maintaining stability of the system. In the present work, alienation technique has been applied to detect and differentiate islanding, faults and sudden load change and faults have been classified. A radial system with four Distributed Generations (DFIG wind generator) connected to the source through common coupling point (PCC) has been used for comprehensive study of this technique. Current signals were decomposed with Daubechies (db1) wavelet in order to get approximate coefficients at each bus. Coefficients of Alienation are computed by using the wavelet based approximations over a length of half cycle moving window . The alienation coefficients were used to compute Islanding index and fault index. The same indices were compared with threshold to differentiate Islanding, faults and sudden load change. The proposed algorithm has been tested for various incidence angles for both islanding condition and faults. This technique is established to be robust in detecting islanding condition, faults and impact of sudden load change.

 

References

Dulău, Lucian Ioan, MihailAbrudean, and DorinBică "Effects of distributed generation on electric power systems" Procedia Technology 12 (2014): 681-686.

Kroposki, Benjamin, Thomas Basso, and Richard DeBlasio "Microgrid standards and technologies’’ In Power and Energy Society General Meeting-Conversion and Delivery of Electrical Energy in the 21st Century, 2008 IEEE, pp.1-4. IEEE, 2008.

Conti, Stefania "Analysis of distribution network protection issues in presence of dispersed generation" Electric Power Systems Research 79, no. 1 (2009): 49-56.

Ropp, Michael E., MiroslavBegovic, AjeetRohatgi, Gregory A. Kern, R. H. Bonn, and S. Gonzalez "Determining the relative effectiveness of islanding detection methods using phase criteria and nondetection zones" IEEE transactions on energy conversion 15,(2000): 290-29.

Recommended “Practice for Utility Interconnected Photovoltaic (PV) Systems”, IEEE Standard 929-2000, 2000.

IEEE “Standard for Interconnecting Distributed Resources into Electric Power Systems”, IEEE Standard 1547TM, June 2003.

Khamis, Aziah, HussainShareef, ErdalBizkevelci, and Tamer Khatib "A review of islanding detection techniques for renewable distributed generation systems" Renewable and sustainable energy reviews 28 (2013): 483-493.

Mahat, Pukar, Zhe Chen, and BirgitteBak-Jensen. "A hybrid islanding detection technique using average rate of voltage change and real power shift." IEEE Transactions on Power delivery 24, no. 2 (2009): 764-771

Trujillo, César, David Velasco, Emilio Figures, and Gabriel Garcerá. "Local and remote techniques for islanding detection in distributed generators" In Distributed Generation. InTech, 2010.

P. Deshbhratar, R. Somalwar and S. G. Kadwane, "Comparative analysis of islanding detection methods for multiple DG based system," 2016 International Conference on Electrical, Electronics, and Optimization Techniques (ICEEOT), Chennai,2016,pp.1525- 1530.

Funabashi, Toshihisa, KaoruyKoyanagi, and R. Yokoyama. "A review of islanding detection methods for distributed resources." In Power Tech Conference Proceedings, 2003 IEEE Bologna, vol. 2, pp. 6-pp. IEEE, 2003.

Mahat, Pukar, Zhe Chen, and BirgitteBak-Jensen. "Review of islanding detection methods for distributed generation." In Electric Utility Deregulation and Restructuring and Power Technologies, 2008. DRPT 2008. Third International Conference on, pp. 2743-2748. IEEE, 2008.

J. Yin, L. Chang, and C. Diduch. “Recent development in islanding detection for distributed power generation,” Large engineering Systems Conference on Power Engineering” (LESCOPE), pp. 124-128, 28-30 July2004.

S.R.Samantaray, TruptiMayeePujhari, B.D.Subudhi. "A new approach to Islanding detection in Distributed Generations",2009 Third International Conference on Power Systems, Kharagpur,27-29, 978-1-4244-4331.

Narayanan, K., Shahbaz A. Siddiqui, and ManojFozdar. "An Improved Islanding Detection Technique and priority based load shedding for distribution system with multiple DGs." In Power Systems Conference (NPSC), 2016 National, pp. 1-6. IEEE, 2016.

Abd-Elkader, Ahmad G., Dalia F. Allam, and ElsayedTageldin. "Islanding detection method for DFIG wind turbines using artificial neural networks" International Journal of Electrical Power & Energy Systems 62 (2014): 335-343.

Ray, Prakash K., NandKishor, and Soumya R. Mohanty. "Islanding and Power Quality Disturbance Detection in Grid-Connected Hybrid Power System Using Wavelet and $ S $- Transform." IEEE Transactions on Smart Grid 3, no. 3 (2012): 1082-1094.

Laghari, J. A., H. Mokhlis, M. Karimi, A. H. A. Bakar, and Hasmaini Mohamad. "An islanding detection strategy for distribution network connected with hybrid DG resources." Renewable and Sustainable Energy Reviews 45 (2015): 662-676.

Gururajapathy, S. S., H. Mokhlis, and H. A. Illias. "Fault location and detection techniques in power distribution systems with distributed generation: A review." Renewable and Sustainable Energy Reviews 74 (2017): 949-958.

Abdul GafoorShaik, P.V. RamanaRao, Wavelet based fault detection, classification and locationin transmission lines, Proc. 2006 IEEE Power and Energy Conference (2018) 114– 118.

BhuvneshRathore, Abdul GafoorShaik, Fault detection and classification on transmission line using wavelet based alienation algorithm, Smart Grid Technologies-Asia (ISGT ASIA), 2015 IEEE Innovative, IEEE (2015) 1–6.

Bhuvnesh Rathore, Abdul Gafoor Shaik, Wavelet-alienation based transmission line protection scheme, IET Gener. Transm. Distrib. 11 (4) (2017)995–1003.

Masoud, M. E., and M. M. A. Mahfouz. "Protection scheme for transmission lines based on alienation coefficients for current signals." IET generation, transmission & distribution 4, no. 11 (2010): 1236-1244.

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Published

2020-04-24

How to Cite

SMART GRID ISLANDING, FAULT DETECTION AND CLASSIFICATION WITH DISTRIBUTED GENERATION BASED ON WAVELET ALIENATION CURRENT SIGNALS APPROACH. (2020). INTERNATIONAL JOURNAL OF APPLIED ELECTRONICS (IJAE), 1(1), 11-23. https://lib-index.com/index.php/IJAE/article/view/IJAE_01_01_002