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Islanding Detection of Integrated DG with Phase Angle Between Voltage and Current

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Smart Energy and Advancement in Power Technologies

Abstract

The integration of renewable energy systems is enhancing in daily life for supplying the global demand of electric energy. The concerned problem with integration of such distributed generation (DG) is islanding. The islanding may damage the consumers and equipment. As per the IEEE 1547 DG integration specifications, it must be identified in 2 s. In this article, a novel passive recognition approach occupying on the rate of change of phase angle between positive sequence voltage and current is (RCPABPSVAC) proposed. The existing passive methods failed to detect balanced and low-power mismatch islanding cases. The suggested approach can do it and strongly classifies the non-islanding situations with the islanding situations. The simulations are implemented on MATLAB/Simulink environment.

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References

  1. Goud BS, Reddy CR (2020) Essentials for grid integration of hybrid renewable energy systems: a brief review. Int J Renew Energy Res (IJRER) 10(2):813–830

    Google Scholar 

  2. Bekhradian R, Davarpanah M, Sanaye Pasand M (2019) Novel approach for secure islanding detection in synchronous generator based microgrids. IEEE Trans Power Deliv 34(2):457–466

    Google Scholar 

  3. Cui Q, El-Arroudi K, Joós G (2018) Islanding detection of hybrid distributed generation under reduced non-detection zone. IEEE Trans Smart Grid 9(5):5027–5037

    Article  Google Scholar 

  4. Ch RR, Reddy KH (2019). Islanding detection techniques for grid integrated DG—A review. Int J Renew Energy Res (IJRER) 9(2):960–977

    Google Scholar 

  5. Raza S, Mokhlis H, Arof H, Laghari JA, Mohamad H (2016) A sensitivity analysis of different power system parameters on islanding detection. IEEE Trans Sustain Energy 7(2):461–470

    Article  Google Scholar 

  6. Reigosa DD, Briz F, Blanco Charro C, Guerrero JM (2017) Passive islanding detection using inverter nonlinear effects. In: IEEE Trans Power Electron 32(11):8434–8445

    Google Scholar 

  7. Marchesan G, Muraro MR, Cardoso G, Mariotto L, de Morais AP (2016) Passive method for distributed-generation island detection based on oscillation frequency. IEEE Trans Power Delivery 31(1):138–146

    Article  Google Scholar 

  8. Salles D, Freitas W, Vieira JCM, Venkatesh B (2015) A practical method for non detection zone estimation of passive anti-islanding schemes applied to synchronous distributed generators. IEEE Trans Power Delivery 30(5):2066–2076

    Article  Google Scholar 

  9. Saleh SA, Aljankawey AS, Meng R, Meng J, Chang L, Diduch CP (2016) Apparent power-based anti-islanding protection for distributed cogeneration systems. IEEE Trans Ind Appl 52(1):83–98

    Google Scholar 

  10. Wen B, Boroyevich D, Burgos R, Shen Z, Mattavelli P (2016) Impedance-based analysis of active frequency drift islanding detection for grid-tied inverter system. IEEE Trans Ind Appl 52(1):332–341

    Google Scholar 

  11. Murugesan S, Murali V (2020) Disturbance injection based decentralized identification of accidental islanding. IEEE Trans Ind Electron 67(5):3767–3775

    Article  Google Scholar 

  12. Sivadas D, Vasudevan K (2020) An active islanding detection strategy with zero non detection zone for operation in single and multiple inverter mode using GPS synchronized pattern. IEEE Trans Ind Electron 67(7):5554–5564

    Article  Google Scholar 

  13. Murugesan S, Murali V (2019) Hybrid analyzing technique based active islanding detection for multiple DGs. IEEE Trans Ind Inf 15(3):1311–1320

    Article  Google Scholar 

  14. Reddy C, Reddy KH (2018) A passive islanding detection method for neutral point clamped multilevel inverter based distributed generation using rate of change of frequency analysis. Int J Electr Comput Eng (2088-8708) 8(4)

    Google Scholar 

  15. Kermany SD, Joorabian M, Deilami S, Masoum MAS (2017) Hybrid islanding detection in microgrid with multiple connection points to smart grids using fuzzy-neural network. IEEE Trans Power Syst 32(4):2640–2651

    Article  Google Scholar 

  16. Khodaparastan M, Vahedi H, Khazaeli F, Oraee H (2017) A novel hybrid islanding detection method for inverter-based DGs using SFS and ROCOF. IEEE Trans Power Delivery 32(5):2162–2170

    Article  Google Scholar 

  17. Chen X, Li Y, Crossley P (2019) A novel hybrid islanding detection method for grid-connected microgrids with multiple inverter-based distributed generators based on adaptive reactive power disturbance and passive criteria. IEEE Trans Power Electron 34(9):9342–9356

    Article  Google Scholar 

  18. Xu W, Zhang G, Li C, Wang W, Wang G, Kliber J (2007) A power line signaling based technique for anti-islanding protection of distributed generators—Part I: scheme and analysis. IEEE Trans Power Delivery 22(3):1758–1766

    Article  Google Scholar 

  19. Mohanty SR, Kishor N, Ray PK, Catalo JPS (2015) Comparative study of advanced signal processing techniques for islanding detection in a hybrid distributed generation system. IEEE Trans Sustain Energy 6(1):122–131

    Article  Google Scholar 

  20. Ray PK, Kishor N, Mohanty SR (2012) Islanding and Power quality disturbance detection in grid-connected hybrid power system using wavelet and S-transform. IEEE Trans Smart Grid 3(3):1082–1094

    Article  Google Scholar 

  21. Do HT, Zhang X, Nguyen NV, Li SS, Chu TT (2016) Passive-islanding detection method using the wavelet packet transform in grid-connected photovoltaic systems. IEEE Trans Power Electron 31(10):6955–6967

    Google Scholar 

  22. Khamis A, Xu Y, Dong ZY, Zhang R (2018) Faster Detection of microgrid islanding events using an adaptive ensemble classifier. IEEE Transactions on Smart Grid 9(3):1889–1899

    Google Scholar 

  23. Manikonda SKG, Gaonkar DN (2019) IDM based on image classification with CNN. J Eng 2019(10):7256–7262

    Article  Google Scholar 

  24. Ch RR, Reddy KH (2018) An efficient passive islanding detection method for integrated DG system with zero NDZ. Int J Renew Energy Res (IJRER) 8(4):1994–2002

    Google Scholar 

  25. Reddy CR, Reddy KH (2018) Islanding detection for inverter based distributed generation with Low frequency current harmonic injection through Q controller and ROCOF analysis. J Electr Syst 14(2):179–191

    Google Scholar 

  26. Reddy CR, Reddy KH (2019) Passive islanding detection technique for integrated distributed generation at zero power balanced islanding. Int J Integr Eng 11(6):126–137

    Article  Google Scholar 

  27. Reddy CR, Reddy KH (2019) A new passive islanding detection technique for integrated distributed generation system using rate of change of regulator voltage over reactive power at balanced islanding. J Electr Eng Technol 14(2):527–534

    Article  Google Scholar 

  28. Reddy JR, Pandian A, Reddy CR (2020) An efficient learning based RFMFA technique for islanding detection scheme in distributed generation systems. Appl Soft Comput 106638

    Google Scholar 

  29. Goud BS, Reddy BN, Pratyusha M, Kumar CV, Rekha R (2020) Review of islanding detection parameters in smart grids. In: 2020 8th International conference on smart grid (icSmartGrid). IEEE, pp 78–89

    Google Scholar 

  30. Reddy CR, Reddy KH. NDZ analysis of various passive islanding detection methods for integrated dg system over balanced islanding

    Google Scholar 

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Correspondence to B. Srikanth Goud .

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Srikanth Goud, B., Rami Reddy, C., Kondalu, M., Nagi Reddy, B., Srinivasa Rao, G., Naga Sai Kalyan, C. (2023). Islanding Detection of Integrated DG with Phase Angle Between Voltage and Current. In: Namrata, K., Priyadarshi, N., Bansal, R.C., Kumar, J. (eds) Smart Energy and Advancement in Power Technologies. Lecture Notes in Electrical Engineering, vol 926. Springer, Singapore. https://doi.org/10.1007/978-981-19-4971-5_21

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  • DOI: https://doi.org/10.1007/978-981-19-4971-5_21

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  • Publisher Name: Springer, Singapore

  • Print ISBN: 978-981-19-4970-8

  • Online ISBN: 978-981-19-4971-5

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