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SYSTEMS & CONTROL

Grid connected photovoltaic system impression on power quality of low voltage distribution system

, , ORCID Icon & | (Reviewing editor)
Article: 2044576 | Received 08 Dec 2021, Accepted 13 Feb 2022, Published online: 10 Mar 2022

References

  • Abokhalil, A. G., Awan, A. B., & Al-Qawasmi, A. R. (2018). “Comparative study of passive and active islanding detection methods for PV grid-connected systems. Sustain, 10(6), 1–18. https://doi.org/10.3390/su10061798
  • Adak, S., Cangi, H., & Yilmaz, A. S. (2019). Design of an LLCL type filter for stand-alone PV systems’ harmonics. Journal of Energy Systems, 3(1), 36–50. https://doi.org/10.30521/jes.506076
  • Ali, A., Almutairi, K., Padmanaban, S., Tirth, V., Algarni, S., Irshad, K., Islam, S., Zahir, M. H., Shafiullah, M., & Malik, M. Z. (2020). Investigation of MPPT techniques under uniform and non-uniform solar irradiation Condition-A retrospection. IEEE Access, 8, 127368–127392. https://doi.org/10.1109/ACCESS.2020.3007710
  • Andela, M., Shaik, A., Beemagoni, S., Kurimilla, V., Veramalla, R., Kodakkal, A., & Salkuti, S. R. (2022). Solar photovoltaic system-based reduced switch multilevel inverter for improved power quality. Clean Technologies, 4(1), 1–13. https://doi.org/10.3390/cleantechnol4010001
  • Anzalchi, A., Pour, M. M., & Sarwat, A. (2016). A combinatorial approach for addressing intermittency and providing inertial response in a grid-connected photovoltaic system. IEEE Power and Energy Society General Meeting, 2016-Novem, 1–5. https://doi.org/10.1109/PESGM.2016.7742056
  • Badea, N., & Ștefănescu, V. (2020). Evaluation of harmonic effects on the power system distribution. Ann. “Dunarea Jos” Univ. Galati. Fascicle III, Electrotech. Electron. Autom. Control Informatics, 43(1), 10–18. https://doi.org/10.35219/eeaci.2020.1.02
  • Bahari, M. I., Tarassodi, P., Naeini, Y. M., Khalilabad, A. K., & Shirazi, P. (2016). 2016 international symposium on power electronics, electrical drives, automation and motion, SPEEDAM 2016. 2016 Int. Symp. Power Electron. Electr. Drives, Autom. Motion, SPEEDAM 2016, 1041–1044.
  • Bianchi, N., & Dai Pre, M. (2003). Active power filter control using neural network technologies. IEE Proceedings - Electric Power Applications, 150(2), 139–145. https://doi.org/10.1049/ip-epa:20030009
  • Biswas, S., & Kim, H. (2020). Solar cells for indoor applications: Progress and development. Polymers (Basel), 12(6), 1338. https://doi.org/10.3390/POLYM12061338
  • Bolduc, P., Lehmicke, D., & Smith, J. (1993). Performance of a grid-connected PV system with energy storage. Conf. Rec. IEEE Photovolt. Spec. Conf., 1159–1162. https://doi.org/10.1109/pvsc.1993.346959.
  • Bouchakour, S., Arab, A. H., Abdeladim, K., Amrouche, S. O., Semaoui, S., Taghezouit, B., Boulahchiche, S., & Razagui, A. (2017). Investigation of the voltage quality at PCC of grid connected PV system. Energy Procedia, 141, 66–70. https://doi.org/10.1016/j.egypro.2017.11.013
  • De Oliveira, P. S., Lima, M. A. A., Cerqueira, A. S., Duque, C. A., & Ferreira, D. D. (2018, May). Harmonic analysis based on scica at PCC of a grid-connected micro solar PV power plant. Proceeding of International Conference on Harmonics and Quality of Power, ICHQP, 2018, 1–6. https://doi.org/10.1109/ICHQP.2018.8378875
  • Dey, P., Ahmad, S., Mekhilef, S., & Albatsh, F. M. (2017). Real time implementation of 3-phase 4-wire shunt hybrid active power filter based on pi controller. Journal of Testing and Evaluation, 45(2), 648–663. https://doi.org/10.1520/JTE20150168
  • Di, X., Yundong, M., & Qianhong, C. (2014). A global maximum power point tracking method based on interval short-circuit current. 2014 16th Eur. Conf. Power Electron. Appl. EPE-ECCE Eur. 2014, https://doi.org/10.1109/EPE.2014.6910724.
  • El Wahid Hamza, K. A., Hassaine, L., & Cherif, L. (2015). LCL filter design with passive damping for photovoltaic grid connected systems. 2015 6th Int. Renew. Energy Congr. IREC 2015, 2, 1–4. https://doi.org/10.1109/IREC.2015.7110945.
  • Fangrui Liu, Shanxu Duan, Fei Liu, Bangyin Liu and Yong Kang. A Variable Step Size INC MPPT Method for PV Systems. IEEE Trans. Ind. Electron., 55(7), 2622–2628. 10.1109/TIE.2008.920550
  • Farhoodnea, M., Mohamed, A., Shareef, H., & Zayandehroodi, H. (2012). Power quality impact of grid-connected photovoltaic generation system in distribution networks. SCOReD 2012 - 2012 IEEE Student Conf. Res. Dev., 1–6, https://doi.org/10.1109/SCOReD.2012.6518600.
  • Fekik, A., Hamida, M. L., Houassine, H., Azar, A. T., Kamal, N. A., Denoun, H., … Sambas, A. (2022). Power quality improvement for grid-connected photovoltaic panels using direct power control. In Modeling and Control of Static Converters for Hybrid Storage Systems (pp. 107–142). IGIGlobal.
  • Ferdowsi, F., Sadeghi Yazdankhah, A., & Rohani, H. (2014). A combinative method to control output power fluctuations of large grid-connected photovoltaic systems. 2014 14th Int. Conf. Environ. Electr. Eng. EEEIC 2014 - Conf. Proc., 260–264. https://doi.org/10.1109/EEEIC.2014.6835875.
  • Figueira, H. H., Hey, H. L., Schuch, L., Rech, C., & Michels, L. (2015). Standards : A Comparison with IEC and IEEE. 1104–1109.
  • Gabr, W. I., & Salem, W. A. (2019). Impact of grid connected photovoltaic system on total harmonics distortion (THD) of low voltage distribution network: A CASE STUDy. 2018 20th Int. Middle East Power Syst. Conf. MEPCON 2018 - Proc, January 2020, 608–614. https://doi.org/10.1109/MEPCON.2018.8635216.
  • Goetzberger, A., & Hoffmann, V. U. (2005). Photovoltaic Solar Energy Generation. Series: Springer Series in Optical Sciences.
  • Gupta, P. N., Gupta, N. P., & Chovatia, C. M. (2012). Harmonic mitigation using shunt active filter at utility end in grid connected to renewable source of energy.
  • Joisher, M., Singh, D., Taheri, S., Espinoza-Trejo, D. R., Pouresmaeil, E., & Taheri, H. (2020). A hybrid evolutionary-based MPPT for photovoltaic systems under partial shading conditions. IEEE Access, 8, 38481–38492. https://doi.org/10.1109/ACCESS.2020.2975742
  • Kahlane, A. E. W. H., Hassaine, L., & Kherchi, M. (2014). LCL filter design for photovoltaic grid connected systems. The 3 Nd International Seminar on New and Renewable Energies, 8(2), 227–232.
  • Kollimalla, S. K., & Mishra, M. K. (2014). Variable perturbation size adaptive P&O MPPT algorithm for sudden changes in irradiance. IEEE Transactions on Sustainable Energy, 5(3), 718–728. https://doi.org/10.1109/TSTE.2014.2300162
  • Lei, Y., Xu, W., Mu, C., Zhao, Z., Li, H., & Li, Z. (2014). New hybrid damping strategy for grid-connected photovoltaic inverter with LCL filter. IEEE Transactions on Applied Superconductivity, 24(5), 1–6. https://doi.org/10.1109/TASC.2014.2351237
  • Mortezaei, A., Lute, C., Simões, M. G., Marafão, F. P., & Boglia, A. (2014). PQ, DQ and CPT control methods for shunt active compensators - A comparative study. 2014 IEEE Energy Convers. Congr. Expo. ECCE 2014, 2994–3001, https://doi.org/10.1109/ECCE.2014.6953807.
  • Omran, W. A., Kazerani, M., & Salama, M. M. A. (2011). Investigation of methods for reduction of power fluctuations generated from large grid-connected photovoltaic systems. IEEE Transactions on Energy Conversion, 26(1), 318–327. https://doi.org/10.1109/TEC.2010.2062515
  • Pakonen, P., Hilden, A., Suntio, T., & Verho, P. (2016). Grid - Connected PV - Power - Plant - Induced Power Quality Problems – Experimental Evidence Keywords.
  • Prasad, D., Kumar, N., & Sharma, R. (2022). Shunt active power filter based on synchronous reference frame theory connected to SPV for power quality enrichment. In Machine learning, advances in computing, renewable energy and communication (pp. 281–292). Springer, Singapore.
  • Rasul, M. J. M. A., Khang, H. V., & Kolhe, M. (2017). Harmonic mitigation of a grid-connected photovoltaic system using shunt active filter. 2017 20th Int. Conf. Electr. Mach. Syst. ICEMS 2017, https://doi.org/10.1109/ICEMS.2017.8056401.
  • Routimo, M., Salo, M., & Tuusa, H. (2003). A novel control method for wideband harmonic compensation. Proceeding of International Conference on Power Electronics and Drive Systems, 1, 799–804. https://doi.org/10.1109/PEDS.2003.1283012
  • Routimo, M., Salo, M., & Tuusa, H. (2007). Comparison of voltage-source and current-source shunt active power filters. IEEE Transactions on Power Electronics, 22(2), 636–643. https://doi.org/10.1088/1742-6596/1000/1/012119
  • Salam, Z., Tan, P. C., & Jusoh, A. (2006). Harmonics mitigation using active power filter: A technological review. Elektrika, 8(2), 17–26. http://eprints.utm.my/46/1/paper4dec06.pdf
  • Salas, V., Olías, E., Barrado, A., & Lázaro, A. (2006). Review of the maximum power point tracking algorithms for stand-alone photovoltaic systems. Solar Energy Materials and Solar Cells, 90(11), 1555–1578. https://doi.org/10.1016/j.solmat.2005.10.023
  • Schwanz, D., Bagheri, A., Bollen, M., & Larsson, A. (2016). Active harmonic filters: Control techniques review. Proceeding of International Conference on Harmonics and Quality of Power, ICHQP, 2016-Decem, 36–41. https://doi.org/10.1109/ICHQP.2016.7783423
  • Sharma, N., Sharma, M. P., Singh, S., & Vyas, B. (2019, July). Methodology for valuation of shunt capacitor bank in power grid. In 2019 10th International Conference on Computing, Communication and Networking Technologies (ICCCNT) (pp. 1–7). IEEE.
  • Simpson, R. H. (2004). Misapplication of power capacitors in distribution systems with non-linear loads-three case histories. IEEE Conf. Rec. Annu. Pulp Pap. Ind. Tech. Conf., 41( 1), 156–166. https://doi.org/10.1109/papcon.2004.1338376.
  • Srisaen, N., & Sangswang, A. (2006). Effects of PV grid-connected system location on a distribution system. IEEE Asia-Pacific Conf. Circuits Syst. Proceedings, APCCAS, 852–855. https://doi.org/10.1109/APCCAS.2006.342175.
  • Tali, M., Obbadi, A., Elfajri, A., & Errami, Y. (2014). Passive filter for harmonics mitigation in standalone PV system for non linear load. Proc. 2014 Int. Renew. Sustain. Energy Conf. IRSEC 2014, OCTOBER 2014, 499–504. https://doi.org/10.1109/IRSEC.2014.7059834.
  • Tareen, W. U., Mekhilef, S., Seyedmahmoudian, M., & Horan, B. (2017). Active power filter (APF) for mitigation of power quality issues in grid integration of wind and photovoltaic energy conversion system. Renewable & Sustainable Energy Reviews, 70(January 2016), 635–655. https://doi.org/10.1016/j.rser.2016.11.091
  • Tauseef, M., & Nowicki, E. (2012). A simple and cost effective maximum power point tracker for PV arrays employing a novel constant voltage technique. 2012 25th IEEE Can. Conf. Electr. Comput. Eng. Vis. a Greener Futur. CCECE 2012, 0–3, https://doi.org/10.1109/CCECE.2012.6334828.
  • Thamizh Thentral, T. M., Geetha, A., & Subramani, C. (2018). Study of LCL filter performance for inverter fed grid connected system. Journal of Physics: Conference Series, 1000(1), 012119. https://doi.org/10.1088/1742-6596/1000/1/012119
  • Tyagi, V. V., Rahim, N. A. A., Rahim, N. A., & Selvaraj, J. A. L. (2013). Progress in solar PV technology: Research and achievement. Renewable and Sustainable Energy Reviews, 20, 443461. https://doi.org/10.1016/j.rser.2012.09.028
  • Vinayagam, A., Aziz, A., Pm, B., Chandran, J., Veerasamy, V., & Gargoom, A. (2019). Harmonics assessment and mitigation in a photovoltaic integrated network. Sustainable Energy, Grids and Networks, 20, 100264. https://doi.org/10.1016/j.segan.2019.100264
  • Walker, G. (2001). Evaluating MPPT converter topologies using a matlab PV model. Journal of Electrical and Electronics Engineering Australia, 21(1), 49–55.
  • Wong, J., Lim, Y. S., Tang, J. H., & Morris, E. (2014). Grid-connected photovoltaic system in Malaysia: A review on voltage issues. Renewable and Sustainable Energy Reviews, 29, 535–545. https://doi.org/10.1016/j.rser.2013.08.087
  • Xu, R., Xia, L., Zhang, J., & Ding, J. (2013). Design and research on the LCL filter in three-phase PV grid-connected inverters. International Journal of Computer and Electrical Engineering, 5(3), 322–325. https://doi.org/10.7763/ijcee.2013.v5.723
  • Yu, H., Pan, J., & Xiang, A. (2005). A multi-function grid-connected PV system with reactive power compensation for the grid. Solar Energy, 79(1), 101–106. https://doi.org/10.1016/j.solener.2004.09.023
  • Zhang, X., Zhao, X., Smith, S., Xu, J., & Yu, X. (2012). Review of R&D progress and practical application of the solar photovoltaic/thermal (PV/T) technologies. Renewable and Sustainable Energy Reviews, 16(1), 599–617. https://doi.org/10.1016/j.rser.2011.08.026