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Harmonic Mitigation in Grid-Connected Distributed Energy Systems using PI and Fuzzy Logic Controller

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Abstract

In recent years, the distributed generation systems have been established swiftly with the benefits of zero pollution. But, the harmonics increase due to various loads connected to the distribution system and cause disturbances in the power lines. To overcome such issues, this paper proposes a grid interfacing control using Fuzzy logic-based PI controller. The main intention of the proposed approach is to mitigate the harmonics in an electric grid using fuzzy logic-based PI controller. In addition to this, the control for interfacing inverter is done utilizing the hysteresis current controller. The simulation results are performed to show the performance of the compensating device to reduce the harmonics. In order to evaluate and determine the total harmonic distortion, the fast Fourier transform has been carried out for certain waveforms. Therefore, from the analysis, it is proven that the power quality is enhanced by fuzzy logic-based PI controller when compared with the ordinary PI controller.

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References

  1. N. Babu, K.P. Panda, B. Chittibabu, P. Rangababu, G. Panda. A novel adaptive fuzzy-based controller design using field programmable gate arrays for grid-connected photovoltaic systems. in Advances in Smart Grid Power System, (2021) pp. 331–364. Academic Press

  2. M.A.K. BajajSingh, Hosting capacity enhancement of renewable-based distributed generation in harmonically polluted distribution systems using passive harmonic filtering. Sustain. Energy Technol. Assess. 44, 101030 (2021)

    Google Scholar 

  3. B.S.B.L. GoudRao, Power quality enhancement in grid-connected PV/wind/battery using UPQC: atom search optimization. J. Electr. Eng. Technol. 16(2), 821–835 (2021)

    Article  Google Scholar 

  4. J.P.C.P.C.D.R.V.S. RoselynChandranNithyaDevarajVenkatesanGopalMadhura, Design and implementation of fuzzy logic based modified real-reactive power control of inverter for low voltage ride through enhancement in grid-connected solar PV system. Control Eng. Pract. 101, 104494 (2020)

    Article  Google Scholar 

  5. M.M.S. Gowthul AlamBaulkani, Geometric structure information based multi-objective function to increase fuzzy clustering performance with artificial and real-life data. Soft Comput. 23(4), 1079–1098 (2019)

    Article  Google Scholar 

  6. W.R.S.A.A.M.M. RohoumaBalogPeerzadaBegovic, D-STATCOM for harmonic mitigation in low voltage distribution network with high penetration of nonlinear loads. Renew. Energy 145, 1449–1464 (2020)

    Article  Google Scholar 

  7. M.A.P.A. KademSemmahWiraSlimane, Artificial neural network active power filter with immunity in distributed generation. Periodica Polytech. Mech. Eng. 64(2), 109–119 (2020)

    Article  Google Scholar 

  8. A.T.N. KolliGhaffarzadeh, A novel phaselet-based approach for islanding detection in inverter-based distributed generation systems. Electr. Power Syst. Res. 182, 106226 (2020)

    Article  Google Scholar 

  9. Y.M. Abdalla, F.L. Mohammed, M.Y. Ibrahim. Grid Connected Photovoltaic System.International Conference on Communication, Control, Computing and Electronics Engineering (ICCCCEE), (2017)

  10. M.M.F.M.N.A.N. ParvezEliasRahimOsman, Current control techniques for three-phase grid interconnection of renewable power generation systems: a review. Sol. Energy 135, 29–42 (2016)

    Article  Google Scholar 

  11. Y.A.K.M. SureshPandaSuresh, Real-time implementation of adaptive fuzzy hysteresis-band current control technique for shunt active power filter. IET Power Electr. ISSN 5(7), 1188–1195 (2012)

    Article  Google Scholar 

  12. T.N. VigneyshKumarappan, Grid interconnection of renewable energy sources using multifunctional grid-interactive converters: a fuzzy logic based approach. Electr. PowerSyst. Res. 151, 359–368 (2017)

    Article  Google Scholar 

  13. Tsengenes Georgios, Adamidis Georgios. Shunt Active Power Filter Control Using Fuzzy Logic Controllers (2011)

  14. S.A.Z.S.E.N. El MarhraouiAbbouCabraneRhailiHichami, Fuzzy logic-integral backstepping control for PV grid-connected system with energy storage management. Int. J. Intell. Eng. Syst. 13(3), 359–372 (2020)

    Google Scholar 

  15. B.A. Hassan, CSCF: a chaotic sine cosine firefly algorithm for practical application problems. Neural Comput. Appl. 33(12), 7011–7030 (2020)

    Article  Google Scholar 

  16. D.S. KavithaRavikumar, IOT and context-aware learning-based optimal neural network model for real-time health monitoring. Trans. Emerg. Telecommun. Technol. 32(1), e4132 (2021)

    Google Scholar 

  17. M.R. Rejeesh, Interest point based face recognition using adaptive neuro fuzzy inference system. Multimed. Tools Appl. 78(16), 22691–22710 (2019)

    Article  Google Scholar 

  18. V. Sundararaj, An efficient threshold prediction scheme for wavelet based ECG signal noise reduction using variable step size firefly algorithm. Int. J. Intell. Eng. Syst. 9(3), 117–126 (2016)

    Google Scholar 

  19. V. Sundararaj, Optimised denoising scheme via opposition-based self-adaptive learning PSO algorithm for wavelet-based ECG signal noise reduction. Int. J. Biomed. Eng. Technol. 31(4), 325 (2019)

    Article  Google Scholar 

  20. V.V.P.A.U.P.M.R.R. SundararajAnoopDixitArjariaChourasiaBhambriRejeeshSundararaj, CCGPA-MPPT: cauchy preferential crossover-based global pollination algorithm for MPPT in photovoltaic system. Prog. Photovolt. Res. Appl. 28(11), 1128–1145 (2020)

    Article  Google Scholar 

  21. S. Vinu, Optimal task assignment in mobile cloud computing by queue based ant-bee algorithm. Wirel. Pers. Commun. 104(1), 173–197 (2019)

    Article  Google Scholar 

  22. J.N.M.T.A.V.M.R. JoseGautamTiwariTiwariSureshSundararajRejeesh, An image quality enhancement scheme employing adolescent identity search algorithm in the NSST domain for multimodal medical image fusion. Biomed. Signal Process. Control 66, 102480 (2021)

    Article  Google Scholar 

  23. A.S.R.A.A.E.S.K.M.M.F.D. AbbasEl-SehiemyEl-ElaAliMahmoudLehtonenMohamed, Optimal harmonic mitigation in distribution systems with inverter based distributed generation. Appl. Sci. 11(2), 774 (2021)

    Article  Google Scholar 

  24. R.U.S. RajkumarRagupathy, An ANN-based harmonic mitigation and power injection technique for solar-fed distributed generation system. Soft. Comput. 24(20), 15763–15772 (2020)

    Article  Google Scholar 

  25. N.M. Cm, S.B.Q. Naqvi, Y. Singh, B. Singh, & J. Pychadathil. A Cascaded Generalized Integral Control for Multi-Objective Grid-Connected Solar Energy Transfer System. IEEE Transactions on Industrial Electronics, (2021)

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Correspondence to Jenner Zahariah.

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Zahariah, J., Pon Symon, V.A.T. Harmonic Mitigation in Grid-Connected Distributed Energy Systems using PI and Fuzzy Logic Controller. J. Inst. Eng. India Ser. B 103, 461–468 (2022). https://doi.org/10.1007/s40031-021-00661-y

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